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Puberty is the stage when the reproductive organs become
mature and the body starts showing reproductive characteristics.
यौवनारंभ (Puberty) वह अवस्था है जब जनन अंग परिपक्व होने
लगते हैं और शरीर में लैंगिक परिवर्तन दिखाई देने लगते हैं।
Major changes during puberty:
Growth of reproductive organs.
Production of sperm in males.
Maturation and release of ova in females.
Development of secondary sexual characteristics.
Hormonal changes.
3. Male Reproductive System
The male reproductive system is specialised for:
Production of sperm.
Secretion of male sex hormones.
Transport and delivery of sperm.
Major Parts
Part
Function
हिंदी
Testes
Produce sperm and testosterone.
शुक्राणु तथा टेस्टोस्टेरोन का निर्माण।
Scrotum
Holds testes outside the abdominal cavity and helps maintain a suitable lower temperature for sperm formation.
वृषणों को शरीर के बाहर रखता है तथा उपयुक्त तापमान बनाए रखने में सहायता करता है।
Epididymis
Site where sperm mature and are stored.
शुक्राणुओं के परिपक्व होने और संग्रह में सहायता।
Vas deferens
Transports sperm.
शुक्राणुओं का परिवहन।
Seminal vesicles
Add fluid rich in nutrients to semen.
वीर्य में पोषक द्रव मिलाती हैं।
Prostate gland
Adds alkaline fluid to semen.
वीर्य में क्षारीय द्रव मिलाती है।
Urethra
Common passage for urine and semen at different times.
मूत्र तथा वीर्य के लिए मार्ग।
Penis
Transfers semen into the female reproductive tract.
वीर्य को मादा जनन मार्ग में पहुँचाता है।
Animated Simplified Male Reproductive System
Exam Tip: Testes are located in the scrotum because sperm formation
requires a temperature slightly lower than the normal body temperature.
4. Testes – Structure and Functions
The testes are the male reproductive organs.
They perform two important functions:
Production of sperm.
Production of testosterone.
Sperm are produced inside the seminiferous tubules of the testes.
Testosterone is the main male sex hormone. It contributes
to development of male reproductive organs and secondary sexual characteristics
and supports sperm production.
5. Structure of Sperm
A sperm is a microscopic male gamete specially adapted for reaching and
fertilising the ovum.
Part
Function
Head
Contains nucleus carrying genetic material.
Acrosome
Contains enzymes that help sperm penetrate the egg coverings.
Middle piece
Contains many mitochondria that provide energy.
Tail
Helps in movement of sperm.
6. Female Reproductive System
The female reproductive system produces ova, provides the site for
fertilisation and supports development of the embryo and foetus.
Part
Function
हिंदी
Ovaries
Produce ova and female sex hormones.
अंडाणु तथा महिला लैंगिक हार्मोन बनाती हैं।
Fallopian tubes / Oviducts
Carry ovum; fertilisation usually occurs here.
अंडाणु का परिवहन; सामान्यतः निषेचन यहीं होता है।
Uterus
Site where embryo implants and develops.
भ्रूण के आरोपण और विकास का स्थान।
Cervix
Lower narrow part of uterus opening into vagina.
गर्भाशय का निचला संकरा भाग।
Vagina
Receives semen and acts as the birth canal.
वीर्य ग्रहण करती है तथा जन्म मार्ग का कार्य करती है।
Animated Simplified Female Reproductive System
7. Ovaries and Ovum
The ovaries are the primary female reproductive organs.
They produce ova and secrete female sex hormones such as estrogen and progesterone.
Usually, one mature ovum is released from an ovary during a menstrual cycle.
This process is called ovulation.
Ovulation = release of a mature egg/ovum from an ovary.
8. Menstrual Cycle
The menstrual cycle is a cyclic series of changes in the female reproductive
system. A typical cycle is often described as about 28 days,
but the actual length can vary among individuals.
If fertilisation does not occur, the thickened uterine lining breaks down
and is discharged as menstrual flow.
This process is called menstruation.
Process
Meaning
Follicular phase
Follicle develops and the uterine lining begins to build up.
Ovulation
Release of mature ovum from ovary.
Luteal phase
Hormonal changes maintain the uterine lining.
Menstruation
Uterine lining is shed if pregnancy has not occurred.
9. Fertilisation in Human Beings
Fertilisation is the fusion of a male gamete (sperm)
with a female gamete (ovum) to form a zygote.
In humans, fertilisation normally occurs in the
fallopian tube / oviduct.
Sperm + Ovum → Zygote
The zygote contains genetic material from both parents.
10. Steps of Fertilisation
Sperm are released into the female reproductive tract.
Sperm travel towards the fallopian tube.
A sperm reaches the ovum.
The sperm penetrates the egg coverings.
The genetic material of sperm and ovum combines.
A diploid zygote is formed.
Animated Concept of Fertilisation
11. Zygote Formation and Development
After fertilisation, the zygote undergoes repeated cell divisions.
It develops into an embryo.
The embryo becomes attached to the uterine wall. This process is called
implantation.
12. Placenta and Foetal Nutrition
The placenta is a specialised temporary structure that
develops between the mother and the developing embryo/foetus.
It helps in:
Supply of oxygen to the developing foetus.
Supply of nutrients.
Removal of carbon dioxide.
Removal of certain metabolic wastes.
Exchange of substances between maternal and foetal blood systems.
Important:
Maternal and foetal blood do not normally mix directly; exchange occurs
across the placental tissues.
13. Embryo and Foetus
The developing organism is called an embryo during the
early stages of development. As body parts become more distinctly developed,
it is called a foetus.
The embryo/foetus receives oxygen and nutrients through the placenta.
14. Sex Determination in Human Beings
Humans have 46 chromosomes (23 pairs) in most body cells.
One pair is the sex chromosomes.
Individual
Sex Chromosomes
Gametes
Female
XX
Only X-bearing ova
Male
XY
X-bearing or Y-bearing sperm
The ovum always contributes an X chromosome.
A sperm contributes either X or Y.
X ovum + X sperm → XX
X ovum + Y sperm → XY
Therefore, the sperm determines the chromosomal sex of the child in the
XX–XY system.
15. Important Hormones
Hormone
Major Role
Testosterone
Male reproductive development, secondary sexual characteristics and support of sperm production.
Estrogen
Female reproductive development and regulation of reproductive processes.
Progesterone
Helps prepare and maintain the uterine lining, especially during pregnancy.
FSH
Helps regulate development of ovarian follicles and sperm production.
LH
Important in ovulation and reproductive hormone regulation; in males it supports testosterone production by stimulating Leydig cells.
16. Sexual and Asexual Reproduction – Comparison
Feature
Asexual Reproduction
Sexual Reproduction
Parents
Usually one
Usually involves two parents
Gametes
Not involved
Male and female gametes involved
Fertilisation
Absent
Present
Variation
Usually less
Generally greater
Genetic material
Usually from one parent
Combines from two parents
17. Importance of Sexual Reproduction
Produces genetic variation.
Combines genetic material from two parents.
Variation can help populations adapt to changing environments.
Q3. Fertilisation in humans normally occurs in the:
A) Uterus
B) Ovary
C) Fallopian tube
D) Vagina
Answer: C) Fallopian tube
Fusion of sperm and ovum normally takes place in the oviduct/fallopian tube.
Q4. The hormone mainly associated with male reproductive development is:
A) Testosterone
B) Estrogen
C) Insulin
D) Thyroxine
Answer: A) Testosterone
Q5. Which organ produces both sperm and testosterone?
A) Prostate gland
B) Testes
C) Urethra
D) Seminal vesicle
Answer: B) Testes
Q6. The scrotum helps sperm formation mainly by:
A) Increasing body temperature
B) Maintaining a suitable lower temperature for testes
C) Producing ova
D) Producing urine
Answer: B) Maintaining a suitable lower temperature for testes
Q7. Which structure carries sperm away from the epididymis?
A) Vas deferens
B) Ureter
C) Fallopian tube
D) Cervix
Answer: A) Vas deferens
Q8. Which female organ produces ova?
A) Uterus
B) Ovary
C) Vagina
D) Cervix
Answer: B) Ovary
Q9. The embryo becomes attached to the uterine wall by:
A) Ovulation
B) Menstruation
C) Implantation
D) Ejaculation
Answer: C) Implantation
Q10. The immediate product of fertilisation is:
A) Foetus
B) Embryo
C) Zygote
D) Placenta
Answer: C) Zygote
Q11. Which chromosome combination is normally associated with a human female?
A) XY
B) YY
C) XO
D) XX
Answer: D) XX
Q12. Which type of sperm can be produced by a normal human male?
A) Only X-bearing
B) Only Y-bearing
C) X-bearing or Y-bearing
D) X- and Y-bearing in the same sperm
Answer: C) X-bearing or Y-bearing
Q13. The organ that supports development of the embryo is:
A) Uterus
B) Ovary
C) Testis
D) Epididymis
Answer: A) Uterus
Q14. The placenta mainly helps in:
A) Producing sperm
B) Exchange of nutrients and gases
C) Producing urine
D) Producing ova
Answer: B) Exchange of nutrients and gases
Q15. Menstruation occurs when:
A) Fertilisation occurs
B) Pregnancy begins
C) Fertilisation does not occur and the uterine lining is shed
D) Sperm are produced
Answer: C)
Q16. Ovulation refers to:
A) Formation of sperm
B) Release of a mature ovum
C) Fusion of gametes
D) Implantation
Answer: B) Release of a mature ovum
Q17. Which structure receives sperm during sexual intercourse?
A) Vagina
B) Ovary
C) Uterus only
D) Kidney
Answer: A) Vagina
Q18. Which gland contributes fluid to semen?
A) Thyroid
B) Prostate gland
C) Pituitary only
D) Adrenal gland
Answer: B) Prostate gland
Q19. The genetic material of a zygote comes from:
A) Mother only
B) Father only
C) Both parents
D) Placenta only
Answer: C) Both parents
Q20. Sexual reproduction generally produces more variation because:
A) DNA is never copied
B) Genetic material from two parents combines
C) Only one parent contributes genes
D) Gametes do not form
Answer: B)
Q21. A human ovum normally contains:
A) 46 chromosomes
B) 23 chromosomes
C) 92 chromosomes
D) 44 chromosomes
Answer: B) 23 chromosomes
Q22. A normal human sperm contains:
A) 23 chromosomes
B) 46 chromosomes
C) 92 chromosomes
D) 44 pairs
Answer: A) 23 chromosomes
Q23. If an X-bearing sperm fertilises an ovum, the zygote will normally be:
A) XY
B) XX
C) YY
D) XO
Answer: B) XX
Q24. If a Y-bearing sperm fertilises an ovum, the zygote will normally be:
A) XX
B) YY
C) XY
D) XO
Answer: C) XY
Q25. Which statement about the uterus is correct?
A) It produces sperm
B) It is the usual site of implantation
C) It produces ova
D) It carries sperm from testes
Answer: B)
Q26. Which sequence is correct?
A) Ovum → zygote → sperm → embryo
B) Sperm + ovum → zygote → embryo
C) Embryo → sperm → zygote
D) Zygote → sperm → ovum
Answer: B)
Q27. Which of the following is a secondary sexual characteristic in males?
A) Production of urine
B) Deepening of voice
C) Formation of red blood cells
D) Digestion of food
Answer: B)
Q28. Which hormone is mainly secreted by the testes?
A) Testosterone
B) Estrogen
C) Progesterone
D) Thyroxine
Answer: A)
Q29. Which event directly restores the diploid chromosome number?
A) Ovulation
B) Sperm formation
C) Fertilisation
D) Menstruation
Answer: C) Fertilisation
Q30. The greatest significance of sexual reproduction is:
A) No genetic variation
B) Production of identical offspring
C) Generation of genetic variation
D) Absence of gametes
Answer: C) Generation of genetic variation
20. Subjective Questions with Answers
2 MarksQ1. What is sexual reproduction?
Sexual reproduction is a mode of reproduction involving male and female gametes.
Their fusion forms a zygote.
हिंदी: नर और मादा युग्मकों के संलयन द्वारा नए जीव के निर्माण की प्रक्रिया यौन जनन कहलाती है।
2 MarksQ2. Name the male and female gametes in humans.
Male gamete – Sperm.
Female gamete – Ovum/egg.
2 MarksQ3. What is fertilisation?
Fertilisation is the fusion of a sperm and an ovum to form a zygote.
2 MarksQ4. What is puberty?
Puberty is the stage when reproductive organs mature and secondary sexual
characteristics begin to develop.
2 MarksQ5. Name two functions of testes.
1. Production of sperm.
2. Secretion of testosterone.
3 MarksQ6. Write three functions of the female reproductive system.
Produces ova.
Provides the usual site for fertilisation.
Supports implantation and development of embryo/foetus.
3 MarksQ7. Why are testes located in the scrotum?
The scrotum keeps the testes outside the main body cavity and helps maintain
a temperature slightly lower than normal body temperature, which is suitable
for sperm formation.
3 MarksQ8. What is ovulation?
Ovulation is the release of a mature ovum from an ovary. It usually occurs
around the middle of a menstrual cycle, although its timing can vary.
3 MarksQ9. Explain implantation.
After fertilisation, the zygote divides and forms an embryo. The embryo
attaches to the lining of the uterus. This attachment is called implantation.
3 MarksQ10. What is the role of placenta?
Placenta helps in the exchange of oxygen, nutrients and waste substances
between the mother and developing foetus.
4 MarksQ11. Describe the functions of the male reproductive system.
Testes produce sperm.
Testes secrete testosterone.
Accessory glands add fluids to sperm to form semen.
Vas deferens and urethra help transport semen.
4 MarksQ12. Explain the functions of the ovary.
The ovary:
Produces ova.
Releases mature ova during ovulation.
Produces estrogen.
Produces progesterone, especially through ovarian tissues involved in the cycle.
4 MarksQ13. Differentiate between sperm and ovum.
Sperm
Ovum
Male gamete
Female gamete
Very small
Much larger
Motile due to tail
Non-motile in the usual sense
Produced in testes
Produced in ovaries
4 MarksQ14. Explain the menstrual cycle briefly.
The menstrual cycle involves maturation of an ovarian follicle,
ovulation and preparation of the uterine lining. If fertilisation does
not occur, the uterine lining breaks down and is shed as menstruation.
The timing and length can vary among individuals.
4 MarksQ15. Explain sex determination in humans.
Females normally have XX chromosomes and produce ova carrying X.
Males normally have XY chromosomes and produce X-bearing or Y-bearing sperm.
X sperm + X ovum produces XX, while Y sperm + X ovum produces XY.
5 MarksQ16. Describe the male reproductive system.
The male reproductive system consists of testes, scrotum, epididymis,
vas deferens, accessory glands, urethra and penis.
Testes produce sperm and testosterone. Sperm mature and are stored in the
epididymis. Vas deferens transports sperm. Seminal vesicles and prostate
add fluids to form semen. Urethra and penis help in transfer of semen.
5 MarksQ17. Describe the female reproductive system.
The female reproductive system consists mainly of ovaries, fallopian tubes,
uterus, cervix and vagina. Ovaries produce ova and hormones. Fallopian tubes
carry ova and are the usual site of fertilisation. The uterus supports
implantation and development of the embryo. The cervix connects the uterus
to the vagina, which receives semen and also acts as the birth canal.
5 MarksQ18. Explain fertilisation and development of the embryo.
A sperm fuses with an ovum in the fallopian tube to form a zygote.
The zygote undergoes repeated cell division and forms an embryo.
The embryo moves towards the uterus and implants in its lining.
It develops further and receives oxygen and nutrients through the placenta.
5 MarksQ19. Explain the importance of sexual reproduction.
Sexual reproduction combines genetic material from two parents.
This creates genetic variation among offspring. Such variation provides
the raw material for natural selection and can help populations adapt
to environmental changes.
5 MarksQ20. Explain the role of hormones in human reproduction.
Hormones regulate development and functioning of reproductive organs.
Testosterone supports male reproductive development and sperm production.
Estrogen and progesterone regulate important female reproductive processes,
including development of the reproductive system and preparation of the
uterine lining.
6 MarksQ21. Explain the complete process of sexual reproduction in human beings.
The process involves:
Puberty and maturation of reproductive organs.
Production of sperm and ova.
Transfer of sperm into the female reproductive tract.
Fertilisation in the fallopian tube.
Formation and division of the zygote.
Implantation of embryo in uterus and development through the foetal stage.
6 MarksQ22. Explain the structure and functions of the male reproductive system.
Testes produce sperm and testosterone. The scrotum maintains suitable
temperature. Epididymis helps sperm maturation and storage. Vas deferens
transports sperm. Seminal vesicles and prostate gland add fluids to form
semen. Urethra provides a passage for semen, and the penis transfers semen
into the female reproductive tract.
6 MarksQ23. Explain the structure and functions of the female reproductive system.
Ovaries produce ova and hormones. Fallopian tubes transport ova and are
the usual site of fertilisation. The uterus receives the embryo and supports
its development. The cervix is the lower part of the uterus. The vagina
receives semen and serves as the birth canal.
6 MarksQ24. Describe the events from fertilisation to formation of foetus.
Sperm and ovum fuse to form a zygote. The zygote divides repeatedly,
forming an embryo. The embryo reaches the uterus and implants in its lining.
The developing organism receives nutrients and oxygen through the placenta.
As development progresses and body parts become more distinctly developed,
it is referred to as a foetus.
6 MarksQ25. Explain sex determination using a suitable cross.
Female = XX → ova contain X.
Male = XY → sperm contain X or Y.
X sperm
Y sperm
X ovum
XX
XY
Thus, the sperm contributes either X or Y chromosome, while the ovum
contributes X.
6 MarksQ26. Explain the importance of placenta in human reproduction.
Placenta provides a large exchange surface between maternal and foetal
circulations. It allows nutrients and oxygen to reach the developing foetus
and helps remove carbon dioxide and certain wastes. It also acts as an
important endocrine tissue during pregnancy by producing hormones that
support pregnancy.
6 MarksQ27. Differentiate between sexual and asexual reproduction.
Sexual Reproduction
Asexual Reproduction
Gametes involved
Gametes generally not involved
Fertilisation may occur
Fertilisation absent
Usually involves genetic contribution from two parents
Usually one parent
Generally produces more variation
Usually produces less variation
6 MarksQ28. Why is sexual reproduction important for evolution?
Sexual reproduction combines genetic material from two individuals.
Recombination and other genetic processes generate variation in offspring.
Some variations may provide advantages in particular environments.
Over generations, natural selection can increase advantageous variations,
contributing to evolutionary change.
6 MarksQ29. Explain the role of testes, ovaries and reproductive hormones.
Testes produce sperm and testosterone. Ovaries produce ova and female
reproductive hormones such as estrogen and progesterone. These hormones
regulate reproductive development, secondary sexual characteristics,
gamete-related processes and preparation of the female reproductive system
for possible pregnancy.
6 MarksQ30. Draw and label the male and female reproductive systems and state their major functions.
Male labels: Testis, scrotum, epididymis, vas deferens,
seminal vesicle, prostate gland, urethra and penis.
Female labels: Ovary, fallopian tube, uterus, cervix and vagina.
Major functions:
Male system produces and transports sperm; female system produces ova,
provides the usual site of fertilisation and supports embryo development.
21. HOTS / Competency-Based Questions
HOTS 1:
If the vas deferens is blocked, which reproductive process will be directly affected?
Answer: Transport of sperm from the epididymis towards the urethra
will be affected.
HOTS 2:
Why can a female ovum be fertilised only after reaching the appropriate region of the oviduct?
The oviduct provides the normal location where sperm and ovum can meet
and fertilisation can occur.
HOTS 3:
Why does sexual reproduction generally create more variation than asexual reproduction?
Because genetic material from two parents combines and genetic variation
can arise during gamete formation and fertilisation.
HOTS 4:
A child has an XX chromosome combination. What type of sperm fertilised the ovum?
An X-bearing sperm fertilised the X-bearing ovum.
HOTS 5:
Why is implantation necessary?
Implantation establishes the embryo within the uterine lining so that
it can receive support and nutrients through the developing placenta.
Human sexual reproduction involves formation of sperm and ova,
fertilisation in the fallopian tube, zygote formation, implantation in
the uterus and development of the embryo/foetus with support from the placenta.
26. Final Summary
Sexual reproduction involves male and female gametes.
Sperm are produced in the testes.
Ova are produced in the ovaries.
Testes secrete testosterone.
Ovaries secrete estrogen and progesterone.
Fertilisation normally occurs in the fallopian tube.
Fusion of sperm and ovum forms a zygote.
The zygote develops into an embryo.
The embryo implants in the uterine wall.
Placenta provides exchange of oxygen, nutrients and wastes.
XX is the usual chromosomal combination in females.
XY is the usual chromosomal combination in males.
The sperm determines whether the zygote receives X or Y from the father.
How Do Organisms Reproduce? | Pollination and Fertilisation in Plants
🌸 How Do Organisms Reproduce?
Pollination and Fertilisation in Plants | पौधों में परागण एवं निषेचन
Class 10 Science | CBSE + Foundation + Competitive
🌺 Pollination and Fertilisation in Plants
1. Introduction – परिचय
English:
Sexual reproduction in flowering plants involves the formation and transfer of male reproductive cells, their delivery to the female reproductive structure, and fusion of male and female gametes.
In flowering plants, pollination transfers pollen grains from the anther to the stigma. After successful pollen germination, a pollen tube grows towards an ovule. Fertilisation occurs when the male and female gametes fuse.
हिन्दी:
पुष्पीय पौधों में लैंगिक जनन में नर जनन कोशिकाओं का निर्माण, उनका मादा जनन संरचना तक पहुँचना तथा नर एवं मादा युग्मकों का संलयन शामिल है।
परागण में परागकण परागकोष से वर्तिकाग्र तक पहुँचते हैं। इसके बाद परागकण अंकुरित होकर परागनलिका बनाता है, जो बीजांड की ओर बढ़ती है। नर और मादा युग्मक के संलयन को निषेचन कहते हैं।
Definition:
Pollination is the transfer of pollen grains from the anther to the stigma.
परिभाषा:
परागण वह प्रक्रिया है जिसमें परागकण परागकोष से वर्तिकाग्र तक पहुँचते हैं।
Pollination = Transfer of Pollen from Anther → Stigma
परागण = परागकोष → वर्तिकाग्र
Important CBSE Point:
Pollination is NOT fertilisation. Pollination is only the transfer of pollen grains.
4. Types of Pollination – परागण के प्रकार
① Self-Pollination – स्व-परागण
Pollen grains are transferred to the stigma of the same flower or another flower on the same plant.
परागकण उसी फूल या उसी पौधे के दूसरे फूल के वर्तिकाग्र तक पहुँचते हैं।
② Cross-Pollination – पर-परागण
Pollen grains are transferred to the stigma of a flower on another plant of the same species.
परागकण उसी प्रजाति के दूसरे पौधे के फूल के वर्तिकाग्र तक पहुँचते हैं।
Self-Pollination
Cross-Pollination
Same flower or same plant
Different plants of same species
Usually less pollen wastage
May involve greater pollen transfer distance
Generally maintains existing genetic combination
Generally promotes genetic variation
5. Agents of Pollination – परागण के माध्यम
Pollination may occur through different agents:
Wind / वायु – pollen carried by air.
Water / जल – occurs in some aquatic plants.
Insects / कीट – bees, butterflies, etc.
Birds / पक्षी – may transfer pollen between flowers.
Other animals / अन्य जन्तु – some animals can act as pollinators.
Flowers pollinated by insects often have attractive colours, scent or nectar.
6. Germination of Pollen Grain – परागकण का अंकुरण
After a compatible pollen grain lands on the stigma, it may absorb moisture and germinate. A pollen tube develops and grows through the style towards the ovary and an ovule.
वर्तिकाग्र पर उपयुक्त परागकण पहुँचने के बाद वह नमी ग्रहण करके अंकुरित हो सकता है। इससे परागनलिका बनती है जो वर्तिका से होकर अंडाशय तथा बीजांड की ओर बढ़ती है।
English:
Fertilisation is the fusion of a male gamete with a female gamete. In flowering plants, the male gamete is delivered through the pollen tube to the female reproductive structure inside the ovule.
हिन्दी:
निषेचन नर युग्मक और मादा युग्मक के संलयन की प्रक्रिया है। पुष्पीय पौधों में परागनलिका नर युग्मक को बीजांड के अंदर स्थित मादा जनन संरचना तक पहुँचाती है।
Male Gamete + Female Gamete → Zygote
नर युग्मक + मादा युग्मक → युग्मनज
9. Pollination vs Fertilisation
Pollination / परागण
Fertilisation / निषेचन
Transfer of pollen from anther to stigma.
Fusion of male and female gametes.
Occurs before fertilisation.
Occurs after successful pollen delivery.
No zygote is formed directly.
Zygote is formed.
Involves pollen transfer.
Involves gamete fusion.
10. Double Fertilisation – द्विनिषेचन
Double fertilisation is a special feature of flowering plants.
Two male gametes participate:
One male gamete fuses with the egg to form the zygote.
The second male gamete fuses with the polar nuclei to form the primary endosperm nucleus.
This special occurrence is called double fertilisation.
हिन्दी:
पुष्पीय पौधों में दो नर युग्मक भाग लेते हैं:
एक नर युग्मक अंड कोशिका से मिलकर युग्मनज बनाता है।
दूसरा नर युग्मक ध्रुवीय नाभिकों से मिलकर प्राथमिक एण्डोस्पर्म नाभिक बनाता है।
इसे द्विनिषेचन कहते हैं।
Male Gamete 1 + Egg → Zygote
Male Gamete 2 + Polar Nuclei → Primary Endosperm Nucleus
11. Concept Diagram – Double Fertilisation
12. Changes After Fertilisation
Structure
Usually develops into
Zygote / युग्मनज
Embryo / भ्रूण
Ovule / बीजांड
Seed / बीज
Ovary / अंडाशय
Fruit / फल
Endosperm
Nourishes developing embryo in many flowering plants
Golden Rule:
Ovule → Seed | Ovary → Fruit | Zygote → Embryo
13. Importance of Pollination
Pollination is important because it:
Brings pollen to the stigma.
Allows pollen germination.
Enables pollen tube formation.
Allows male gametes to reach the female reproductive structure.
Makes sexual reproduction possible in flowering plants.
Cross-pollination can contribute to genetic variation.
14. Role of Pollinators
English:
Pollinators such as bees, butterflies, birds and other animals may carry pollen between flowers. Their movement can help achieve pollination.
हिन्दी:
मधुमक्खियाँ, तितलियाँ, पक्षी तथा अन्य जन्तु फूलों के बीच परागकणों को स्थानांतरित कर सकते हैं। इस प्रकार वे परागण में सहायता करते हैं।
15. Conditions for Successful Fertilisation
For successful fertilisation:
Pollen must reach a suitable stigma.
The pollen grain must germinate.
A pollen tube must grow towards an ovule.
Male gamete must reach the female reproductive structure.
Male and female gametes must fuse.
16. 30 MCQs – CBSE + Foundation + Competitive
Q1. Pollination is the transfer of pollen from:
A) Ovary to ovule
B) Anther to stigma
C) Stigma to anther
D) Ovule to ovary
Answer: B
Pollination is transfer of pollen grains from anther to stigma.
Q2. The male reproductive structure of a flower is:
A) Stamen
B) Pistil
C) Ovary
D) Stigma
Answer: A
Q3. Which part receives pollen grains?
A) Anther
B) Filament
C) Stigma
D) Ovary
Answer: C
Q4. Fertilisation is:
A) Pollen transfer
B) Seed dispersal
C) Germination of seed
D) Fusion of male and female gametes
Answer: D
Q5. The product of fertilisation is:
A) Zygote
B) Pollen
C) Stigma
D) Ovule
Answer: A
Q6. Self-pollination occurs when pollen reaches:
A) A root
B) A leaf
C) The stigma of the same flower or same plant
D) A different species
Answer: C
Q7. Cross-pollination occurs between:
A) Roots of two plants
B) Different plants of the same species
C) Different organs of a flower
D) Different species only
Answer: B
Q8. The pollen tube generally grows through the:
A) Style
B) Petal
C) Filament
D) Sepal
Answer: A
Q9. The ovary contains:
A) Pollen grains
B) Filaments
C) Petals
D) Ovules
Answer: D
Q10. Which structure generally develops into a seed?
A) Stigma
B) Ovule
C) Anther
D) Style
Answer: B
Q11. Which structure generally develops into a fruit?
A) Ovary
B) Ovule
C) Stigma
D) Pollen
Answer: A
Q12. Which is an agent of pollination?
A) Root
B) Leaf
C) Insect
D) Stem
Answer: C
Q13. Which of the following is NOT pollination?
A) Transfer of pollen to stigma
B) Pollen transfer by insects
C) Pollen transfer by wind
D) Fusion of gametes
Answer: D
Q14. Pollen grains are produced in the:
A) Ovary
B) Anther
C) Stigma
D) Ovule
Answer: B
Q15. After pollination, a pollen grain may form a:
A) Pollen tube
B) Seed coat
C) Fruit
D) Sepal
Answer: A
Q16. Which statement is correct?
A) Fertilisation occurs before pollination.
B) Pollination directly forms a zygote.
C) Pollination generally precedes fertilisation.
D) Anther contains ovules.
Answer: C
Q17. Double fertilisation is characteristic of:
A) Flowering plants
B) Bacteria
C) All fungi
D) All algae
Answer: A
Q18. In double fertilisation, one male gamete fuses with:
A) Petal
B) Egg
C) Sepal
D) Filament
Answer: B
Q19. The second male gamete in double fertilisation fuses with:
A) Stigma
B) Ovary wall
C) Polar nuclei
D) Petal
Answer: C
Q20. Fusion of the male gamete with the egg forms:
A) Endosperm
B) Pollen
C) Fruit
D) Zygote
Answer: D
Q21. Which sequence is correct?
A) Anther → Pollen → Stigma → Pollen tube
B) Ovule → Anther → Pollen
C) Stigma → Petal → Anther
D) Ovary → Sepal → Pollen
Answer: A
Q22. Which process generally increases genetic variation?
A) Self-pollination only
B) Cross-pollination
C) Vegetative propagation
D) Budding
Answer: B
Q23. Which is a common pollinating insect?
A) Earthworm
B) Fish
C) Bee
D) Snake
Answer: C
Q24. The pollen tube is important because it:
A) Produces petals
B) Forms roots
C) Produces fruit directly
D) Carries male gametes towards the female reproductive structure
Answer: D
Q25. Which statement about the stigma is correct?
A) It receives pollen.
B) It produces seeds directly.
C) It produces roots.
D) It contains the anther.
Answer: A
Q26. Which sequence represents the correct reproductive pathway?
A) Ovule → Pollen → Anther
B) Anther → Stigma → Pollen tube → Ovule
C) Ovary → Stigma → Petal
D) Petal → Ovule → Anther
Answer: B
Q27. The zygote develops into:
A) Pollen
B) Anther
C) Embryo
D) Stigma
Answer: C
Q28. Which pair is correctly matched?
A) Anther – pollen production
B) Ovary – pollen production
C) Stigma – seed formation directly
D) Filament – ovule production
Answer: A
Q29. Which event occurs first?
A) Zygote formation
B) Embryo formation
C) Pollination
D) Seed formation
Answer: C
Q30. Which statement best distinguishes pollination from fertilisation?
A) Both are exactly the same.
B) Pollination involves pollen transfer; fertilisation involves gamete fusion.
C) Pollination forms zygote directly.
D) Fertilisation is only pollen transfer.
Answer: B
17. 30 Subjective Questions with Answers
2 MarksQ1. Define pollination.
Pollination is the transfer of pollen grains from the anther to the stigma of a flower.
2 MarksQ2. Define fertilisation.
Fertilisation is the fusion of male and female gametes to form a zygote.
2 MarksQ3. Name two types of pollination.
Self-pollination and cross-pollination.
2 MarksQ4. What is the role of stigma?
The stigma receives pollen grains and provides a surface on which compatible pollen can germinate.
2 MarksQ5. What is formed after fusion of male and female gametes?
A zygote is formed.
3 MarksQ6. Differentiate between self-pollination and cross-pollination.
Self-pollination occurs in the same flower or same plant. Cross-pollination occurs between different plants of the same species.
3 MarksQ7. What happens when pollen lands on a suitable stigma?
The pollen may germinate, form a pollen tube and the tube grows through the style towards an ovule.
3 MarksQ8. Name three agents of pollination.
Wind, insects and birds are examples of pollinating agents.
3 MarksQ9. What is the role of pollen tube?
The pollen tube grows through the style towards the ovule and provides a pathway for the male gametes.
3 MarksQ10. Distinguish between pollination and fertilisation.
Pollination is transfer of pollen from anther to stigma. Fertilisation is fusion of male and female gametes. Pollination occurs before fertilisation.
4 MarksQ11. Explain the process of pollination.
Pollen grains produced in the anther are transferred to the stigma by wind, water, insects, birds or other agents. This transfer is called pollination.
4 MarksQ12. Explain the events following pollination.
After pollen reaches a suitable stigma, it germinates and forms a pollen tube. The tube grows through the style towards the ovary and reaches an ovule. Male gametes are delivered through the pollen tube.
4 MarksQ13. What is cross-pollination? Why is it important?
Cross-pollination is transfer of pollen between flowers on different plants of the same species. It can promote genetic variation in offspring.
4 MarksQ14. Explain fertilisation in flowering plants.
The pollen tube reaches the ovule and delivers the male gamete. The male gamete fuses with the female gamete. This fusion forms a zygote and is called fertilisation.
4 MarksQ15. What happens to the ovule and ovary after fertilisation?
The ovule generally develops into a seed and the ovary generally develops into a fruit.
5 MarksQ16. Explain self-pollination and cross-pollination with examples or situations.
Self-pollination occurs when pollen reaches the stigma of the same flower or another flower on the same plant. Cross-pollination occurs when pollen reaches a flower on another plant of the same species. Cross-pollination generally promotes greater genetic variation.
5 MarksQ17. Explain the complete pathway of pollen from anther to ovule.
Anther produces pollen → pollen is transferred to stigma → pollen germinates → pollen tube develops → pollen tube grows through style → reaches ovary and an ovule → male gametes are delivered.
5 MarksQ18. Explain the role of insects in pollination.
Insects such as bees and butterflies visit flowers for nectar or other resources. Pollen may stick to their bodies and be carried to another flower, thereby helping transfer pollen to the stigma.
5 MarksQ19. Explain the importance of pollination in sexual reproduction.
Pollination brings pollen grains to the stigma. It allows pollen germination and pollen tube formation. The pollen tube delivers male gametes towards the female reproductive structure, making fertilisation possible.
5 MarksQ20. Explain the changes after fertilisation.
The zygote develops into an embryo. The ovule generally develops into a seed and the ovary generally develops into a fruit. The developing embryo is nourished by stored or developing food tissues such as endosperm in many flowering plants.
6 MarksQ21. Explain pollination and fertilisation in flowering plants in sequence.
Pollen grains are produced in the anther. During pollination, pollen is transferred to the stigma. A compatible pollen grain germinates and forms a pollen tube. The tube grows through the style and reaches an ovule. Male gametes are delivered and one fuses with the female gamete to form a zygote. This fusion is fertilisation.
6 MarksQ22. Explain double fertilisation.
In flowering plants, two male gametes participate. One male gamete fuses with the egg to form a zygote. The second male gamete fuses with the polar nuclei to form the primary endosperm nucleus. This is called double fertilisation.
6 MarksQ23. Describe the role of stigma, style and ovule in fertilisation.
Stigma receives pollen. The style provides the pathway for pollen tube growth. The pollen tube reaches an ovule, where the male gamete is delivered to the female reproductive structure for fertilisation.
6 MarksQ24. Explain the difference between pollination and fertilisation with a suitable sequence.
Pollination is pollen transfer from anther to stigma. Fertilisation is fusion of male and female gametes. The sequence is: anther → pollen → stigma → pollen tube → ovule → gamete fusion → zygote.
6 MarksQ25. Explain the importance of cross-pollination.
Cross-pollination transfers pollen between different plants of the same species. It promotes mixing of genetic material from different plants and can increase genetic variation in offspring. Variation is important for adaptation and evolution.
6 MarksQ26. Explain how pollen tube formation helps fertilisation.
After pollen lands on a suitable stigma, it germinates and produces a pollen tube. The tube grows through the style towards an ovule. It provides a route for male gametes to reach the female reproductive structure, allowing gamete fusion.
6 MarksQ27. Explain the role of pollinating agents.
Wind, water in some aquatic plants, insects, birds and other animals can transfer pollen between flowers. Insects may be attracted by colour, scent or nectar. These agents help pollen reach a suitable stigma.
6 MarksQ28. Explain the sequence from pollination to seed formation.
Pollination occurs → pollen germinates → pollen tube grows → male gamete reaches ovule → fertilisation occurs → zygote forms → embryo develops → ovule generally develops into seed.
6 MarksQ29. Why is fertilisation important for sexual reproduction?
Fertilisation combines genetic material from male and female gametes. It produces a zygote, which develops into an embryo and ultimately a new organism. Thus, it is a central event in sexual reproduction.
6 MarksQ30. Describe the complete reproductive process in a flowering plant from pollen production to fruit formation.
Anther produces pollen → pollen reaches stigma by pollination → pollen germinates → pollen tube grows through style → male gamete reaches ovule → fertilisation forms zygote → zygote develops into embryo → ovule becomes seed → ovary generally develops into fruit.
18. HOTS / Competency-Based Questions
HOTS 1. If pollen reaches the stigma but no pollen tube develops, what is likely to happen?
The male gamete may not reach the female reproductive structure, so successful fertilisation may not occur.
HOTS 2. Why is pollination necessary before normal fertilisation in flowering plants?
Pollen contains the male reproductive cells. It must reach the stigma so that a pollen tube can form and deliver male gametes towards the female reproductive structure.
HOTS 3. A bee visits Flower A and then Flower B of the same species. How can this help reproduction?
Pollen from Flower A may be carried on the bee and deposited on the stigma of Flower B, causing cross-pollination.
HOTS 4. A flower undergoes pollination but fertilisation does not occur. Will a zygote form?
No. A zygote forms only after successful fusion of male and female gametes.
HOTS 5. Why can cross-pollination be advantageous for a plant population?
It can bring genetic material from different plants together and therefore increase genetic variation among offspring.
19. Diagram Labelling Practice
Label the following structures in a pollen tube diagram:
English:
Pollination is the transfer of pollen grains from anther to stigma. It may be self-pollination or cross-pollination. After reaching a suitable stigma, pollen can germinate and produce a pollen tube. The pollen tube grows through the style towards an ovule and carries male gametes. Fertilisation occurs when a male gamete fuses with the female gamete, producing a zygote. In flowering plants, double fertilisation involves the formation of a zygote and the primary endosperm nucleus. The zygote develops into an embryo, the ovule generally becomes a seed and the ovary generally becomes a fruit.
हिन्दी:
परागण में परागकण परागकोष से वर्तिकाग्र तक पहुँचते हैं। यह स्व-परागण या पर-परागण हो सकता है। उपयुक्त वर्तिकाग्र पर परागकण अंकुरित होकर परागनलिका बनाता है। परागनलिका वर्तिका से होकर बीजांड की ओर बढ़ती है और नर युग्मक को पहुँचाती है। नर एवं मादा युग्मकों के संलयन से युग्मनज बनता है, जिसे निषेचन कहते हैं। पुष्पीय पौधों में द्विनिषेचन एक विशेष प्रक्रिया है। निषेचन के बाद युग्मनज भ्रूण, बीजांड सामान्यतः बीज और अंडाशय सामान्यतः फल में विकसित होता है।
How Do Organisms Reproduce? | Reproductive Parts of a Flower
🌸 How Do Organisms Reproduce?
Reproductive Parts of a Flower | पुष्प के जनन भाग
Class 10 Science | CBSE + Foundation + Competitive
🌺 Reproductive Parts of a Flower | पुष्प के जनन भाग
1. Introduction to Reproductive Parts of a Flower
English:
A flower is the reproductive structure of a flowering plant. It contains specialised reproductive organs that take part in sexual reproduction. The male reproductive part is the stamen, while the female reproductive part is the pistil or carpel.
हिन्दी:
फूल (Flower) पुष्पीय पौधों की जनन संरचना है। इसमें ऐसे विशेष जनन अंग पाए जाते हैं जो लैंगिक जनन में भाग लेते हैं। फूल का नर जनन भाग पुंकेसर (Stamen) तथा मादा जनन भाग स्त्रीकेसर/कार्पेल (Pistil/Carpel) कहलाता है।
Flower → Male Reproductive Part + Female Reproductive Part
फूल → नर जनन भाग + मादा जनन भाग
2. Structure of a Typical Flower – Labelled Diagram
Diagram Focus: Stamen + Pistil are the main reproductive parts.
3. Four Main Parts / Whorls of a Flower
Part / भाग
Main Structure / मुख्य संरचना
Function / कार्य
Sepals / बाह्यदल
Calyx
Protect the developing flower bud / कली की सुरक्षा
Petals / पंखुड़ियाँ
Corolla
Attract pollinators / परागणकर्ताओं को आकर्षित करना
Stamen / पुंकेसर
Filament + Anther
Male reproductive part; produces pollen / नर जनन भाग, परागकण बनाता है
Pistil/Carpel / स्त्रीकेसर
Stigma + Style + Ovary
Female reproductive part / मादा जनन भाग
4. Stamen – Male Reproductive Part
English:
The stamen is the male reproductive part of a flower. It consists of two main parts:
Filament – a thin stalk that supports the anther.
Anther – produces pollen grains containing the male reproductive cells/gametophytes.
हिन्दी: पुंकेसर (Stamen) फूल का नर जनन भाग है। इसके दो मुख्य भाग होते हैं:
तंतु (Filament) – परागकोष को सहारा देने वाला पतला डंठल।
CBSE Point: Anther is the part of the stamen that produces pollen grains.
महत्वपूर्ण: परागकण परागकोष (Anther) में बनते हैं।
5. Pollen Grains – परागकण
English:
Pollen grains are tiny structures produced in the anther. They carry the male reproductive cells. During pollination, pollen grains are transferred from the anther to the stigma.
हिन्दी:
परागकण परागकोष में बनने वाली सूक्ष्म संरचनाएँ हैं। इनमें नर जनन कोशिकाएँ होती हैं। परागण के समय परागकण परागकोष से वर्तिकाग्र तक पहुँचते हैं।
Contains the female reproductive structure; after fertilisation it generally develops into a seed.
8. Male vs Female Reproductive Parts
Male Part / नर भाग
Female Part / मादा भाग
Stamen / पुंकेसर
Pistil/Carpel / स्त्रीकेसर
Filament + Anther
Stigma + Style + Ovary
Anther produces pollen
Ovary contains ovules
Associated with male gametes
Associated with female gamete
9. Pollination and Reproductive Parts
Pollination / परागण: English: Pollination is the transfer of pollen grains from the anther to the stigma of a flower.
हिन्दी: परागण वह प्रक्रिया है जिसमें परागकण परागकोष से वर्तिकाग्र तक पहुँचते हैं।
Self-pollination: Pollen reaches the stigma of the same flower or another flower on the same plant.
Cross-pollination: Pollen is transferred to a flower on another plant of the same species.
परागण के प्रकार:
स्व-परागण: उसी फूल या उसी पौधे के दूसरे फूल के वर्तिकाग्र तक परागकण पहुँचना।
पर-परागण: उसी प्रजाति के दूसरे पौधे के फूल तक परागकण पहुँचना।
10. From Pollination to Fertilisation
After a pollen grain reaches the stigma, it may germinate and form a pollen tube. The pollen tube grows through the style towards the ovary and reaches an ovule. The male gamete is delivered to the female reproductive structure where fertilisation can occur.
परागकण वर्तिकाग्र पर पहुँचने के बाद अंकुरित होकर परागनलिका बनाता है। परागनलिका वर्तिका से होकर अंडाशय की ओर बढ़ती है और बीजांड तक पहुँचती है। नर युग्मक मादा जनन संरचना तक पहुँचता है जहाँ निषेचन होता है।
Male Gamete + Female Gamete → Zygote
नर युग्मक + मादा युग्मक → युग्मनज
11. Animated Pollen Tube Pathway
12. Changes After Fertilisation
Before Fertilisation
After Fertilisation
Male + Female gametes
Zygote
Zygote
Embryo
Ovule / बीजांड
Seed / बीज
Ovary / अंडाशय
Fruit / फल – generally
Golden Point:
Ovule generally develops into a seed, while the ovary generally develops into a fruit after fertilisation.
13. Bisexual and Unisexual Flowers
Bisexual Flower / उभयलिंगी फूल:
A flower containing both stamens and pistil is called a bisexual flower.
Examples: Hibiscus, mustard.
Unisexual Flower / एकलिंगी फूल:
A flower containing either stamens or pistil is called a unisexual flower.
Examples: Papaya, watermelon.
14. Advanced Concept – Double Fertilisation
In flowering plants, two male gametes are involved in a special process called double fertilisation.
One male gamete fuses with the egg → Zygote.
The other male gamete fuses with the polar nuclei → Primary endosperm nucleus.
This is a characteristic feature of flowering plants (angiosperms).
Male Gamete 1 + Egg → Zygote
Male Gamete 2 + Polar Nuclei → Endosperm
15. Pollination vs Fertilisation
Pollination
Fertilisation
Transfer of pollen from anther to stigma.
Fusion of male and female gametes.
Occurs before fertilisation.
Occurs after successful pollen delivery.
Does not form a zygote.
Forms a zygote.
Involves pollen transfer.
Involves gamete fusion.
16. 30 MCQs – CBSE + Foundation + Competitive
Q1. Which is the male reproductive part of a flower?
A) Pistil
B) Stamen
C) Ovary
D) Stigma
Answer: B
The stamen is the male reproductive part of a flower.
Q2. A stamen consists of:
A) Stigma and style
B) Ovary and ovule
C) Filament and anther
D) Petal and sepal
Answer: C
Stamen = filament + anther.
Q3. Which part produces pollen grains?
A) Anther
B) Stigma
C) Ovary
D) Style
Answer: A
Q4. The female reproductive part of a flower is:
A) Stamen
B) Filament
C) Anther
D) Pistil
Answer: D
Q5. Which part of the pistil receives pollen grains?
A) Ovary
B) Stigma
C) Style
D) Ovule
Answer: B
Q6. The ovary contains:
A) Sepals
B) Petals
C) Ovules
D) Anthers
Answer: C
Q7. The transfer of pollen from anther to stigma is called:
A) Pollination
B) Fertilisation
C) Germination
D) Fragmentation
Answer: A
Q8. The stalk connecting stigma and ovary is called:
A) Filament
B) Anther
C) Sepal
D) Style
Answer: D
Q9. Which structure develops into a seed generally after fertilisation?
A) Petal
B) Ovule
C) Stigma
D) Filament
Answer: B
Q10. The ovary generally develops into:
A) Pollen
B) Embryo
C) Fruit
D) Anther
Answer: C
Q11. A flower containing both stamen and pistil is called:
A) Bisexual
B) Unisexual
C) Vegetative
D) Asexual
Answer: A
Q12. Which is an example of a unisexual flower?
A) Hibiscus
B) Mustard
C) Rose
D) Papaya
Answer: D
Q13. Which part supports the anther?
A) Style
B) Filament
C) Stigma
D) Ovary
Answer: B
Q14. Which structure carries the pollen tube towards the ovary?
A) Petal
B) Sepal
C) Style
D) Filament
Answer: C
Q15. Fusion of male and female gametes produces:
A) Zygote
B) Pollen grain
C) Ovule
D) Anther
Answer: A
Q16. Which part often attracts insects towards a flower?
A) Ovary
B) Style
C) Filament
D) Petal
Answer: D
Q17. Which of the following is NOT a part of pistil?
A) Stigma
B) Anther
C) Style
D) Ovary
Answer: B
Q18. Which sequence is correct?
A) Anther → Pollen → Stigma
B) Ovary → Pollen → Anther
C) Stigma → Petal → Pollen
D) Style → Anther → Sepal
Answer: A
Q19. Cross-pollination occurs between:
A) Different species only
B) Roots of plants
C) Different plants of the same species
D) Leaves of the same plant
Answer: C
Q20. The female gamete in a flowering plant is associated with the:
A) Anther
B) Ovule
C) Filament
D) Petal
Answer: B
Q21. What is the correct order after pollination?
A) Pollen germination → pollen tube growth → fertilisation
B) Fertilisation → pollination → pollen tube
C) Seed → pollen → fertilisation
D) Ovary → anther → stigma
Answer: A
Q22. A flower having only stamens is:
A) Bisexual
B) Complete
C) Perfect
D) Unisexual
Answer: D
Q23. Which floral part protects the flower bud?
A) Petal
B) Stigma
C) Sepal
D) Anther
Answer: C
Q24. Double fertilisation is characteristic of:
A) Flowering plants
B) All bacteria
C) Fungi only
D) All algae
Answer: A
Q25. In double fertilisation, one male gamete fuses with:
A) Petal
B) Egg
C) Sepal
D) Filament
Answer: B
Q26. The pollen tube normally grows through the:
A) Petal
B) Sepal
C) Filament
D) Style
Answer: D
Q27. Which statement is correct?
A) Pollination is fusion of gametes.
B) Fertilisation is transfer of pollen.
C) Pollination precedes fertilisation.
D) Stamen contains ovules.
Answer: C
Q28. Which combination is correctly matched?
A) Anther – pollen production
B) Ovary – pollen production
C) Stigma – ovule production
D) Filament – female gamete production
Answer: A
Q29. The zygote develops into:
A) Pollen
B) Embryo
C) Anther
D) Stigma
Answer: B
Q30. Which statement best describes the role of stigma?
A) Produces ovules
B) Produces petals
C) Supports the anther
D) Receives pollen grains
Answer: D
17. 30 Subjective Questions with Answers
2 MarksQ1. What is a flower?
Answer: A flower is the reproductive structure of a flowering plant. It contains male and/or female reproductive parts.
2 MarksQ2. Name the male reproductive part of a flower and its two components.
Answer: The male reproductive part is the stamen. It consists of filament and anther.
2 MarksQ3. Name the three parts of the pistil.
Answer: Stigma, style and ovary.
2 MarksQ4. What is the function of anther?
Answer: Anther produces pollen grains containing the male reproductive cells.
2 MarksQ5. What are ovules?
Answer: Ovules are structures present inside the ovary. They contain the female reproductive structure and generally develop into seeds after fertilisation.
3 MarksQ6. Differentiate between stamen and pistil.
Answer:
Stamen is the male reproductive part and consists of filament and anther. Pistil is the female reproductive part and consists of stigma, style and ovary.
3 MarksQ7. Write three functions of different floral parts.
Answer:
Sepals protect the flower bud.
Petals often attract pollinators.
Anther produces pollen grains.
3 MarksQ8. What is pollination? Name its two types.
Answer: Pollination is the transfer of pollen from anther to stigma. Its two types are self-pollination and cross-pollination.
3 MarksQ9. Explain the role of stigma, style and ovary.
Answer: Stigma receives pollen, style provides a pathway for pollen tube growth and ovary contains ovules.
3 MarksQ10. What happens to ovule and ovary after fertilisation?
Answer: The ovule generally develops into a seed and the ovary generally develops into a fruit.
4 MarksQ11. Explain the structure of a stamen.
Answer:
The stamen consists of:
Filament – slender stalk.
Anther – terminal part.
The filament supports the anther.
The anther produces pollen grains.
4 MarksQ12. Explain the structure of pistil.
Answer:
The pistil has three main parts:
Stigma – receives pollen.
Style – connects stigma with ovary.
Ovary – contains ovules.
After fertilisation, ovules generally become seeds.
4 MarksQ13. Explain the process from pollen deposition to fertilisation.
Answer:
Pollen lands on stigma → pollen germinates → pollen tube grows through style → reaches ovule → male gamete is delivered → fusion with female gamete forms zygote.
4 MarksQ14. Differentiate between self-pollination and cross-pollination.
Answer:
Self-pollination occurs within the same flower or same plant. Cross-pollination occurs between flowers on different plants of the same species.
4 MarksQ15. What are bisexual and unisexual flowers? Give examples.
Answer:
A bisexual flower contains both stamen and pistil, e.g. hibiscus. A unisexual flower contains either stamens or pistil, e.g. papaya.
5 MarksQ16. Explain the four main whorls of a flower.
Answer:
Sepals – protect the developing bud.
Petals – often attract pollinators.
Stamens – male reproductive structures.
Pistil/carpel – female reproductive structure.
5 MarksQ17. Describe the reproductive role of stamen.
Answer:
The stamen consists of filament and anther. Filament supports anther. Anther produces pollen grains. Pollen grains carry male reproductive cells and are transferred to stigma during pollination.
5 MarksQ18. Explain the reproductive role of pistil.
Answer:
Pistil consists of stigma, style and ovary. Stigma receives pollen, style provides a route for pollen tube and ovary contains ovules. Fertilisation occurs in association with the ovule, leading to zygote formation.
5 MarksQ19. Explain pollination and fertilisation in flowering plants.
Answer:
Pollination is pollen transfer from anther to stigma. The pollen germinates and forms a pollen tube. The tube grows through the style to an ovule. Male and female gametes fuse to form a zygote. This fusion is fertilisation.
5 MarksQ20. Explain the changes occurring after fertilisation.
Answer:
The zygote develops into an embryo. The ovule generally develops into a seed and the ovary generally develops into a fruit. Other floral parts may wither depending on the plant.
6 MarksQ21. Draw and explain the reproductive parts of a typical flower.
Answer:
The main reproductive parts are stamen and pistil. Stamen has filament and anther. Pistil has stigma, style and ovary. Anther produces pollen grains, while ovary contains ovules. The stigma receives pollen and the pollen tube grows through the style towards an ovule.
6 MarksQ22. Explain the complete pathway from anther to zygote.
6 MarksQ23. Explain the structure and functions of stamen and pistil in detail.
Answer:
Stamen is the male part and consists of filament and anther. Anther produces pollen grains. Pistil is the female part and consists of stigma, style and ovary. Stigma receives pollen, style provides a route for pollen tube and ovary contains ovules.
6 MarksQ24. Explain self-pollination and cross-pollination with differences.
Answer:
Self-pollination occurs within the same flower or same plant. Cross-pollination occurs between flowers on different plants of the same species. Cross-pollination generally promotes greater genetic variation than self-pollination.
6 MarksQ25. Why is a flower called the reproductive structure of a flowering plant?
Answer:
A flower contains reproductive organs. The stamen produces pollen carrying male reproductive cells, while the pistil contains ovules associated with female reproduction. Pollination and fertilisation occur through these structures, leading to seed formation.
6 MarksQ26. Explain double fertilisation in flowering plants.
Answer:
Two male gametes participate. One fuses with the egg to form the zygote. The second fuses with the polar nuclei to form the primary endosperm nucleus. This process is called double fertilisation and is characteristic of flowering plants.
6 MarksQ27. Differentiate between pollination and fertilisation.
Answer:
Pollination is transfer of pollen from anther to stigma. Fertilisation is fusion of male and female gametes. Pollination precedes fertilisation and does not itself form a zygote. Fertilisation results in zygote formation.
6 MarksQ28. Explain how pollen reaches the female reproductive structure.
Answer:
Pollen grains are produced in anthers. During pollination, they are transferred to the stigma. A compatible pollen grain germinates on the stigma and forms a pollen tube. The pollen tube grows through the style and reaches an ovule in the ovary.
6 MarksQ29. Explain the role of ovary and ovule in reproduction.
Answer:
The ovary is the swollen basal part of the pistil and contains ovules. The ovule contains the female reproductive structure. After fertilisation, the ovule generally becomes a seed and the ovary generally becomes a fruit.
6 MarksQ30. Describe the reproductive sequence of a flowering plant from flower formation to seed development.
HOTS 1. A flower has stamens but no pistil. Can it directly perform fertilisation within the same flower? Explain.
No. The flower lacks the female reproductive part (pistil), so it cannot provide the female reproductive structure required for fertilisation within that flower.
HOTS 2. If the anther is removed before pollen release, what reproductive event is directly affected?
Pollen production/release and therefore pollination by that flower will be affected.
HOTS 3. If the stigma is damaged, why may fertilisation be affected?
The stigma receives pollen. Damage to it may reduce successful pollen deposition and germination, thereby preventing normal pollen tube formation.
HOTS 4. Why is pollination not the same as fertilisation?
Pollination is pollen transfer from anther to stigma, whereas fertilisation is the fusion of male and female gametes.
HOTS 5. Why is the style important even though it does not itself produce gametes?
It provides the pathway through which the pollen tube grows from the stigma towards the ovary and ovule.
English Revision:
The flower is the reproductive structure of flowering plants. Stamen is the male part and pistil is the female part. Anther produces pollen. Stigma receives pollen. Pollen tube grows through the style towards an ovule. Fertilisation produces a zygote. The zygote develops into an embryo, the ovule generally becomes a seed and the ovary generally becomes a fruit.
हिन्दी पुनरावृत्ति:
फूल पुष्पीय पौधों की जनन संरचना है। पुंकेसर नर जनन भाग तथा स्त्रीकेसर मादा जनन भाग है। परागकोष परागकण बनाता है। वर्तिकाग्र परागकण ग्रहण करता है। परागनलिका वर्तिका से होकर बीजांड तक पहुँचती है। नर एवं मादा युग्मक के संलयन से युग्मनज बनता है। युग्मनज भ्रूण बनाता है, बीजांड सामान्यतः बीज तथा अंडाशय सामान्यतः फल में विकसित होता है।
22. Diagram Labelling Practice
Label these parts in a flower diagram:
Petal
Sepal
Anther
Filament
Stigma
Style
Ovary
Ovule
हिन्दी:
पंखुड़ी
बाह्यदल
परागकोष
तंतु
वर्तिकाग्र
वर्तिका
अंडाशय
बीजांड
23. Complete Concept Summary
🌸 COMPLETE FLOW:
Flower / फूल
↓
Four Whorls / चार मुख्य भाग
↓
Stamen + Pistil
↓
Anther produces Pollen
↓
Pollination
↓
Pollen lands on Stigma
↓
Pollen Tube Formation
↓
Pollen Tube through Style
↓
Ovule
↓
Male Gamete + Female Gamete
↓
Fertilisation
↓
Zygote
↓
Embryo
↓
Ovule → Seed
Ovary → Fruit