Reproduction in Organisms explains why living things reproduce, the difference between asexual and sexual reproduction, and the events that produce the next generation. It covers definite species-specific life spans, asexual modes and vegetative propagules, and the three phases of sexual reproduction: pre-fertilisation, fertilisation and post-fertilisation. As the opening Class 12 Biology chapter, it builds the base vocabulary and examples that recur across the whole reproduction unit in NEET.
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Why Organisms Reproduce
Reproduction makes offspring similar to the parent and keeps the species going generation after generation.
Two broad modes: asexual (one parent, no gamete fusion) and sexual (usually two parents, gamete fusion).
- An individual survives fine without reproducing; the species cannot continue without it
- Reproduction links the parental generation to the next
- Sexual reproduction adds variation; asexual simply multiplies life
Definite, Species-Specific Life Span
Every organism has a fixed life span from birth to natural death, set by its species.
Fruit fly ~2 weeks; dog ~20-25 yr; parrot ~140 yr; tortoise ~100-150 yr; banyan ~250 yr.
- A crow and a parrot are similar in size but very different in life span β proof size doesn’t decide it
- All organisms eventually die; reproduction lets the species persist despite this
- ‘Definite life span’ means a fixed natural limit, not the exact same age for all members
Asexual Reproduction
A single parent makes genetically identical offspring without gamete fusion.
Rapid; common in simple organisms (algae, fungi, protists) and lower animals.
- Binary fission: Amoeba, Paramecium; fragmentation: Spirogyra, Planaria
- Budding: exogenous in Hydra/yeast, endogenous (gemmule) in Spongilla (sponge)
- Spores: Chlamydomonas β zoospores (motile); Penicillium β conidia (non-motile)
Vegetative Propagules
In flowering plants, a piece of the plant body grows into a whole new (clone) plant.
Bryophyllum propagates from adventitious buds on leaf margins; Oxalis from floral bulbils.
- Offset β Water hyacinth (Eichhornia), the ‘Terror of Bengal’
- Water hyacinth is the most invasive aquatic weed; it drains oxygen and kills fish
- All vegetative propagules and asexual spores produce clones β never variation
Sexual Reproduction & Life Phases
Formation and fusion of two gametes (usually two parents) gives offspring that show variation.
Slower and more elaborate than asexual; occurs only after a certain maturity.
- Found in all higher plants and animals; offspring are not identical to parents
- Bamboo flowers only once, after 50-100 years, then dies
- Strobilanthus kunthiana (Neelakuranji) flowers once every 12 years (famously in 2006)
The Three Phases of Reproduction
The act of sexual reproduction is organised into three sequential event-blocks.
Keep these event phases separate from the organism’s life phases (juvenile/reproductive/senescent).
- Pre-fertilisation = gametogenesis + gamete transfer
- Fertilisation = syngamy β zygote
- Post-fertilisation = zygote β embryo, plus fruit/seed formation
Gametogenesis & Ploidy
Gametes (usually haploid) form differently depending on the parent’s ploidy.
Diploid bodies use a meiocyte (gamete mother cell, 2n); human meiocyte = 46, gamete = 23.
- Homogametes/isogametes look alike (Cladophora); heterogametes differ (Fucus, humans)
- Bisexual/homothallic/monoecious = both sexes in one individual
- Unisexual/heterothallic/dioecious = sexes in separate individuals
Bringing Gametes Together
Usually the male gamete is motile and the female is stationary, so the male travels.
In water-dependent transfer many gametes are lost, so they are produced in large numbers.
- Pollen carries the male gamete in seed plants
- Water is the medium for gamete transfer in algae, bryophytes and pteridophytes
- Large gamete numbers compensate for losses during transfer
Fertilisation (Syngamy)
Fusion of male and female gametes forms a diploid zygote.
Parthenogenesis = female gamete develops without fertilisation (rotifers, honeybee drones, some lizards, turkey).
- External fertilisation (algae, fishes, amphibians): in water, many gametes, vulnerable young
- Internal fertilisation (fungi, higher plants & animals): few protected eggs, many motile sperms
- Zygote is the vital link ensuring continuity between generations
After Fertilisation: Seed & Fruit
The zygote develops into an embryo, and in flowering plants the ovary and ovule mature.
Embryogenesis = development of the embryo by cell division + differentiation.
- Anchor it: the small ovule (inside) β seed; the larger ovary (outside) β fruit
- Haplontic life cycle: zygote undergoes zygotic meiosis (it is the only diploid cell)
- Diploid organisms: zygote divides by mitosis during embryogenesis
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Related Chapters in Class 12 Biology
- Sexual Reproduction in Flowering Plants Class 12 Notes
- Human Reproduction Class 12 Notes
- Reproductive Health Class 12 Notes
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Frequently Asked Questions
Asexual reproduction involves a single parent and no fusion of gametes, so the offspring are genetically identical clones produced by mitosis. Sexual reproduction involves the formation and fusion of two gametes, usually from two parents, and the offspring show variation.
They are pre-fertilisation, fertilisation and post-fertilisation events. Pre-fertilisation covers gametogenesis and gamete transfer, fertilisation (syngamy) forms the diploid zygote, and post-fertilisation covers embryogenesis and the development of seed and fruit in flowering plants.
No. Every organism has a definite, species-specific life span that has no direct relation to body size. For example a crow and a parrot are similar in size but have very different life spans, and a small fruit fly lives about two weeks while a large banyan tree can live around 250 years.
Parthenogenesis is when the female gamete develops into a new organism without fertilisation, as seen in some rotifers, honeybee drones, certain lizards and turkey. In normal fertilisation (syngamy) a male and a female gamete fuse to form a diploid zygote, so parthenogenesis is the exception where no gamete fusion occurs.
Yes. It is the first chapter of the Class 12 reproduction unit and sets up high-yield facts that NEET regularly tests, such as ploidy logic of gametes, vegetative propagule and organism pairs (potato eyes, ginger rhizome, Agave bulbil), external versus internal fertilisation, and standard examples like water hyacinth and Bryophyllum.