Q.In which of the following plants are both male and female flowers born on the same plant and the mode of pollination can be geitonogamy or xenogamy? (A) Papaya (B) Date Palm (C) Maize (D) Spinach
Concept understanding — Pollination & Outbreeding Devices
Pollination is the transfer of pollen from anther to stigma, and NCERT classifies it into three types based purely on genetics — where the pollen comes from relative to where it lands. Autogamy is self-pollination within the same flower. Geitonogamy is pollen moving between two flowers on the same plant — genetically this is still self-pollination, even though it physically requires a pollinating agent just like cross-pollination does. Xenogamy is true cross-pollination: pollen moving between flowers on two genetically different plants. The classic trap is forgetting that geitonogamy needs an external agent (wind, insect) but is still "self" in genetic outcome.
Different plants recruit different agencies to move their pollen, and each agency shapes the flower's own adaptations. Anemophily (wind) favours light, non-sticky, abundantly produced pollen and feathery, exposed stigmas — petals are usually reduced since there's no need to attract anything. Hydrophily (water) is rare and specialised (e.g. Vallisneria), with pollen protected from wetting. Entomophily (insects) and other biotic agencies favour colourful, scented, nectar-rewarding flowers, since the plant is paying the pollinator for the service. Among angiosperms overall, biotic (animal-mediated) pollination is far more common than abiotic pollination.
A flower that could self-pollinate often actively prevents it, because too much inbreeding reduces genetic variation. NCERT lists four such outbreeding devices. Dicliny — the flower is unisexual (only male or only female), so self-pollination within one flower is structurally impossible. Dichogamy — anther and stigma of the same bisexual flower mature at different times, so self-pollen isn't viable when the stigma is receptive (or vice versa). Herkogamy — anther and stigma are positioned so they simply cannot physically contact each other. Self-incompatibility — a genetic/physiological mechanism where self pollen may land on the stigma but fails to germinate or grow a pollen tube at all — this is the most sophisticated device, since it blocks self-fertilisation even when self-pollen does arrive.
Once compatible pollen lands on the stigma, pollen-pistil interaction takes over. The stigma has the ability to recognise whether a landed pollen grain is compatible (same species, genetically permissible) or incompatible — this recognition, not chance, decides whether a pollen tube even begins to grow. If compatible, the pollen tube grows down through the style toward the ovule, most commonly entering through the micropyle — a mode called porogamy.
How this is examined in CUET. Classifying a described pollen transfer as autogamy/geitonogamy/xenogamy (with geitonogamy's "genetically self" trap tested directly); matching a floral adaptation to its pollinating agency; identifying which outbreeding device a described mechanism represents (dicliny/dichogamy/herkogamy/self-incompatibility); and recalling the stigma's compatibility-recognition role plus the porogamy route of pollen tube entry.
The key idea is monoecy — having separate male and female flowers on the same individual plant. In such plants, pollen transfer between flowers on the same plant is geitonogamy, while transfer to a different plant is xenogamy.
- Papaya and Date Palm are dioecious (male and female flowers on separate plants), so geitonogamy is impossible.
- Maize is monoecious: tassels (male flowers) and ears (female flowers) occur on the same plant. Pollen can fall on the same plant’s silks (geitonogamy) or be carried to another plant (xenogamy).
- Spinach is usually dioecious (though some varieties are monoecious, the standard exam answer treats it as dioecious).
Thus, only Maize fits both conditions.
The correct plant is Maize (option C).
The key idea is that geitonogamy (pollen from one flower to another on the same plant) requires a monoecious plant — male and female flowers on the same individual. Among the options, only Maize is monoecious and also capable of xenogamy (cross-pollination). The correct answer is (C) Maize.
Concept First: Why This Question Is About Plant Sex Systems
Pollination modes depend entirely on where the male and female flowers are located.
- Geitonogamy is pollination between two flowers on the same plant. It’s functionally cross-pollination (pollen moves between flowers) but genetically self-pollination (same parent).
- Xenogamy is true cross-pollination between flowers on different plants.
For geitonogamy to even be possible, the plant must have both male and female flowers on the same individual. That’s called monoecy (Greek: one house). If male and female flowers are on separate plants (dioecy), geitonogamy is impossible — you can’t move pollen between flowers that don’t exist on the same plant.
So the question is really: which of these four plants is monoecious (bisexual in terms of flowers, but unisexual flowers on the same plant)?
Step-by-Step Reasoning
-
Papaya — This is a classic dioecious plant. Male flowers and female flowers grow on separate plants. A papaya tree is either male or female. So geitonogamy is impossible here. Xenogamy is the only option (and it happens via insects or wind).
→ Eliminate (A).
-
Date Palm — Also dioecious. Male and female flowers are on different trees. Farmers often plant one male tree for many female trees to ensure pollination. Again, no geitonogamy possible.
→ Eliminate (B).
-
Maize (Corn) — This is the textbook example of a monoecious plant. The tassel at the top is the male inflorescence (produces pollen), and the ear (with silks) lower down is the female inflorescence. Both are on the same plant.
- Pollen from the tassel can fall onto the silks of the same plant → geitonogamy.
- Pollen can also be carried by wind to silks of another maize plant → xenogamy. So both modes are possible. This fits the description perfectly.
-
Spinach — Another dioecious plant (though some varieties can be monoecious, the typical spinach is dioecious). Male and female flowers on separate plants.
→ Eliminate (D).
A quick memory trick: Monoecious = "one house" = both sexes under one roof (same plant). Dioecious = "two houses" = separate plants. Common exam examples: Maize, Cucurbits (pumpkin, cucumber) are monoecious. Papaya, Date palm, Spinach are dioecious.
Final Answer
The correct option is (C) Maize.
- CBSE 2026Set 57/3/11 markMCQQ.Select the correct option for the pair of plants pollinated by water. (A) Vallisneria and Hydrilla (B) Zostera and Water lily (C) Water lily and Parthenium (D) Water hyacinth and Water lily
›Reveal solutionSolution
Vallisneria and Hydrilla are both submerged aquatic plants that rely entirely on water currents to carry pollen from male to female flowers, making them classic examples of hydrophily.
Pollination by water — hydrophily — is a relatively rare strategy in the plant kingdom, adopted mainly by species that live fully or partially submerged. The mechanism is straightforward: pollen grains are released into the water and drift with currents until they encounter a receptive stigma. This mode of pollination demands specific adaptations, because pollen must remain viable in an aquatic environment and the flowers must be positioned to facilitate contact.
Vallisneria is perhaps the most celebrated example taught in textbooks. This submerged freshwater plant has a fascinating pollination story. The female flowers rise to the water surface on long stalks and form a small depression in the surface film. Male flowers, meanwhile, break free from the plant and float upward. When they reach the surface, they drift along until they encounter a female flower's depression, slide down into it, and pollination occurs. The entire process is a beautiful demonstration of how plants exploit water currents and surface tension.
Hydrilla, another fully submerged aquatic plant, also depends on water for pollination. Its pollen is released directly into the water column, where it drifts until it contacts the stigma of a female flower. Both Vallisneria and Hydrilla are adapted to life underwater, and their reproductive strategies reflect that commitment.
Now consider the other plants mentioned in the options:
- Water lily has showy, emergent flowers that sit above the water surface. These flowers are pollinated by insects — beetles and bees are common visitors — not by water. The flowers are too exposed and structurally designed for insect pollination.
- Zostera (seagrass) is indeed hydrophilous, pollinated underwater by water currents. However, it is not paired correctly in the given options.
- Water hyacinth floats on the surface with its flowers held well above water, attracting insect pollinators.
- Parthenium is a terrestrial weed pollinated by wind (anemophily), not water.
The question asks for a pair where both plants are water-pollinated. Only option (A) satisfies this condition.
ImportantTrue hydrophily is restricted to submerged or partially submerged plants. Floating plants with emergent flowers, like water lily and water hyacinth, rely on insects or wind, not water.
✓Final answerThe correct answer is (A) Vallisneria and Hydrilla, both of which are submerged aquatic plants pollinated exclusively by water currents.
- CBSE 2025Set 57/5/11 markMCQQ.Select the statements that are true for pollination mechanism in flowering plants from the given options.(i) In Vallisneria, the female flowers are pollinated by pollen grains inside the water.(ii) In Zostera, pollen grains are released on the surface of water.(iii) In most of the water-pollinated species, pollen grains are covered by a mucilaginous coating.(iv) Pollination by water is quite rare and limited to about 30 genera. Choose the correct answer : (A)(i) and(ii) (B)(ii) and(iii) (C)(iii) and(iv) (D)(i) and (iv)
›Reveal solutionSolution
Pollination by water is rare and limited to about 30 genera, and in most water-pollinated species, pollen grains have a protective mucilaginous coating.
Pollination is the crucial process by which pollen grains are transferred from the anther to the stigma, a prerequisite for fertilization in flowering plants. While the majority of flowering plants rely on animals (like insects, birds, and bats) or wind for pollination, a small fraction has adapted to use water as their primary pollinating agent. This mechanism, known as hydrophily, is particularly interesting due to the unique challenges and adaptations it presents.
Let us examine the given statements regarding water pollination:
-
Statement (i): In Vallisneria, the female flowers are pollinated by pollen grains inside the water.
- Vallisneria, often called tape grass, is a dioecious aquatic plant. Its female flowers have long stalks that allow them to reach the surface of the water. The male flowers, or pollen grains, are released onto the water surface. These pollen grains are then passively carried by water currents to the floating female flowers. Therefore, pollination in Vallisneria occurs on the surface of the water, not inside it. This statement is incorrect.
-
Statement (ii): In Zostera, pollen grains are released on the surface of water.
- Zostera, commonly known as seagrass, is an example of a submerged aquatic plant. In such plants, both the male and female flowers remain entirely underwater. The pollen grains are released inside the water and are carried passively by water currents to the submerged stigmas. These pollen grains are often long and ribbon-like, which helps them to be carried effectively within the water. This statement is incorrect.
-
Statement (iii): In most of the water-pollinated species, pollen grains are covered by a mucilaginous coating.
- One of the significant challenges for pollen grains in an aquatic environment is the risk of getting wet and losing viability. To counteract this, many water-pollinated species have evolved a protective mechanism. Their pollen grains are covered by a mucilaginous (slimy) coating. This coating prevents the pollen from becoming waterlogged and protects it from damage, ensuring its successful transfer and germination. This statement is correct.
-
Statement (iv): Pollination by water is quite rare and limited to about 30 genera.
- Compared to wind and animal pollination, water pollination is indeed quite uncommon among flowering plants. It is primarily observed in a limited number of aquatic plants. NCERT specifies that hydrophily is restricted to about 30 genera, most of which are monocotyledons. This rarity highlights the evolutionary challenges associated with water as a pollinating medium. This statement is correct.
Based on this analysis, statements (iii) and (iv) are true.
✓Final answerThe correct statements are (iii) and (iv), making option (C) the correct choice.
-
- CBSE 2025Set F1 markMCQQ.In which of the following are male and female flowers found on the same plant?(a) Cucumber(b) Coconut(c) Brinjal(d) Tomato
›Reveal solutionSolution
Cucumber is monoecious — separate male and female flowers occur on the same plant.
Plants that bear both staminate (male) and pistillate (female) unisexual flowers on the SAME individual are called monoecious. Cucumber (a cucurbit) is a classic example: each plant carries distinct male and female flowers. Brinjal and tomato, by contrast, have bisexual (hermaphrodite) flowers in which both stamens and carpels occur in the same flower. Hence cucumber best fits "male and female flowers on the same plant."
✓Final answer(A) Cucumber.
- CBSE 2024Set 57/1/11 markMCQQ.In which of the following plants are both male and female flowers born on the same plant and the mode of pollination can be geitonogamy or xenogamy? (A) Papaya (B) Date Palm (C) Maize (D) Spinach
›Reveal solutionSolution
The key idea is that geitonogamy (pollen from one flower to another on the same plant) requires a monoecious plant — male and female flowers on the same individual. Among the options, only Maize is monoecious and also capable of xenogamy (cross-pollination). The correct answer is (C) Maize.
Concept First: Why This Question Is About Plant Sex Systems
Pollination modes depend entirely on where the male and female flowers are located.
- Geitonogamy is pollination between two flowers on the same plant. It’s functionally cross-pollination (pollen moves between flowers) but genetically self-pollination (same parent).
- Xenogamy is true cross-pollination between flowers on different plants.
For geitonogamy to even be possible, the plant must have both male and female flowers on the same individual. That’s called monoecy (Greek: one house). If male and female flowers are on separate plants (dioecy), geitonogamy is impossible — you can’t move pollen between flowers that don’t exist on the same plant.
So the question is really: which of these four plants is monoecious (bisexual in terms of flowers, but unisexual flowers on the same plant)?
Step-by-Step Reasoning
-
Papaya — This is a classic dioecious plant. Male flowers and female flowers grow on separate plants. A papaya tree is either male or female. So geitonogamy is impossible here. Xenogamy is the only option (and it happens via insects or wind).
→ Eliminate (A).
-
Date Palm — Also dioecious. Male and female flowers are on different trees. Farmers often plant one male tree for many female trees to ensure pollination. Again, no geitonogamy possible.
→ Eliminate (B).
-
Maize (Corn) — This is the textbook example of a monoecious plant. The tassel at the top is the male inflorescence (produces pollen), and the ear (with silks) lower down is the female inflorescence. Both are on the same plant.
- Pollen from the tassel can fall onto the silks of the same plant → geitonogamy.
- Pollen can also be carried by wind to silks of another maize plant → xenogamy. So both modes are possible. This fits the description perfectly.
-
Spinach — Another dioecious plant (though some varieties can be monoecious, the typical spinach is dioecious). Male and female flowers on separate plants.
→ Eliminate (D).
TipA quick memory trick: Monoecious = "one house" = both sexes under one roof (same plant). Dioecious = "two houses" = separate plants. Common exam examples: Maize, Cucurbits (pumpkin, cucumber) are monoecious. Papaya, Date palm, Spinach are dioecious.
Final Answer
✓Final answerThe correct option is (C) Maize.
- CBSE 2023Set 57/3/11 markMCQQ.Assertion (A) : The Mediterranean orchid Ophrys uses sexual deceit to get pollinated by a species of bee. Reason (R) : The female bee changes its colour depending on the temperature of the area.
›Reveal solutionSolution
The key idea is that Ophrys orchids use sexual deception to attract male bees for pollination, but the reason given about female bees changing colour with temperature is false. Therefore, Assertion (A) is true, but Reason (R) is false.
The question tests your understanding of a fascinating example of coevolution and deceptive pollination in plants. The Mediterranean orchid Ophrys has evolved flowers that mimic the appearance and scent of a female bee. This is a classic case of sexual deceit — the male bee is tricked into attempting to mate with the flower (a process called pseudocopulation), and in doing so, picks up or deposits pollen. The reason provided, however, is about female bees changing colour based on temperature. That is a completely unrelated biological phenomenon (some insects do show temperature-dependent colour changes, but it is not relevant to this orchid's pollination strategy). So the assertion is correct, but the reason is incorrect.
Let’s break it down step by step.
-
Understanding the Assertion (A)
The Mediterranean orchid Ophrys is well-known for its sexual deception strategy. Its flower not only looks like a female bee but also releases pheromones that mimic the female’s sex attractant. When a male bee lands on the flower, it tries to copulate, and during this process, pollen sacs (pollinia) attach to its body. When the bee visits another Ophrys flower, the pollen is transferred. This is a highly specific adaptation — each Ophrys species often mimics a particular bee species. So Assertion (A) is true.
-
Understanding the Reason (R)
The reason states: “The female bee changes its colour depending on the temperature of the area.” This is a statement about the bee’s physiology, not about the orchid’s pollination. While some insects (like certain butterflies or beetles) do exhibit temperature-dependent colour changes (e.g., for thermoregulation or camouflage), there is no evidence that the female bee involved in Ophrys pollination changes colour with temperature. More importantly, even if it were true, it would not explain why the orchid uses sexual deceit. The orchid’s deception works because the male bee is attracted to the flower’s mimicry of the female — not because the female changes colour. So Reason (R) is false, and it is not the correct explanation for the assertion.
-
Connecting A and R
In such assertion-reason questions, we need to check if R correctly explains A. Here, R is a false statement, so it cannot explain A. The correct relationship is: A is true, but R is false.
Watch outA common mistake is to assume that because the orchid mimics a female bee, any fact about bees must be relevant. But the reason given is about colour change due to temperature — which is not part of the deception mechanism. The deception relies on visual and chemical mimicry, not on the female’s colour changing.
TipRemember: In Ophrys, the male bee is the target, not the female. The flower mimics the female to attract the male. So any reason about female bee behaviour (like colour change) is irrelevant unless it directly affects the male’s attraction.
✓Final answerAssertion (A) is true, but Reason (R) is false.
-
- CBSE 2023Set BOTANY1 markQ.Correct the statement, if necessary, by changing the underlined word only: In protandrous flower, carpels mature earlier than stamens (underlined word: 'protandrous').
›Reveal solutionSolution
When the carpel (gynoecium) matures before the stamens (androecium) in a bisexual flower, this is protogyny; when stamens mature before the carpel, it is protandry.
Many bisexual (hermaphrodite) flowers have evolved mechanisms to prevent self-pollination (autogamy) despite having both male and female parts in the same flower. One such mechanism is dichogamy, in which the anthers and stigma of a flower mature at different times, ensuring cross-pollination:
- Protandry: the anthers (male reproductive parts) mature and release pollen before the stigma of the same flower becomes receptive - i.e., stamens mature earlier than carpels.
- Protogyny: the stigma (female part) becomes receptive and matures before the anthers of the same flower release pollen - i.e., carpels mature earlier than stamens.
The given statement describes carpels maturing earlier than stamens, which is the definition of protogyny, not protandry. Hence the underlined term needs correction.
✓Final answerThe underlined word 'protandrous' is wrong; it should be 'protogynous'.
- CBSE 2021Set ANNUAL1 markMCQQ.A flower that has only stamens is a –(i) unisexual flower(ii) bisexual flower(iii) complete flower(iv) neuter flower
›Reveal solutionSolution
A flower with only stamens (no pistil) is unisexual — a staminate flower.
Flowers are classified by which reproductive whorls they carry:
- A bisexual flower has both stamens (androecium) and pistil/carpels (gynoecium), e.g. Hibiscus.
- A unisexual flower has only one of the two — only stamens (called staminate, male) or only carpels (called pistillate, female), e.g. maize, papaya, cucumber.
- Complete flowers have all four whorls (calyx, corolla, androecium, gynoecium); a flower missing any whorl is incomplete.
- A neuter flower has neither functional stamens nor a functional pistil (sterile, e.g. ray florets of sunflower).
Since the flower described has only stamens, it fits the definition of a unisexual (staminate) flower.
✓Final answer(i) unisexual flower — a staminate (male) flower.
- CBSE 2020Set 57/1/11 markMCQQ.Self-pollination is fully ensured if (A) the flower is bisexual. (B) the style is longer than the filament. (C) the flower is cleistogamous. (D) the time of pistil and anther maturity is different.(OR)Zoospores are the reproductive units to carry asexual reproduction in (A) Chlamydomonas (B) Spirogyra (C) Yeast (D) Rhizopus
›Reveal solutionSolution
Part (a): Self-pollination is fully ensured in cleistogamous flowers because they never open — option (C).
Part (b): Motile zoospores are the asexual reproductive units of the green alga Chlamydomonas — option (A).
Part (a)
For self-pollination to be fully ensured, there must be no chance of foreign pollen reaching the stigma. Checking the options:
- (A) Bisexual — necessary for autogamy but does not guarantee it (the flower may still cross-pollinate).
- (B) Style longer than the filament — a form of herkogamy that actually favours cross-pollination.
- (C) Cleistogamous — the flower never opens; anthers and stigma lie enclosed together, so the flower's own pollen must land on its own stigma. This makes self-pollination obligate and fully assured, even without pollinators. (Examples: Viola, Oxalis, Commelina.)
- (D) Different maturity times of pistil and anther — dichogamy, a device that prevents self-pollination.
✓Final answerSelf-pollination is fully ensured if (C) the flower is cleistogamous.
Part (b)
Zoospores are microscopic, flagellated, motile spores that swim in water; they are a means of asexual reproduction in many algae and some lower fungi.
- (A) Chlamydomonas — a green alga that reproduces asexually by biflagellate zoospores. ✓
- (B) Spirogyra — reproduces by fragmentation and sexual conjugation, not zoospores.
- (C) Yeast — reproduces asexually by budding.
- (D) Rhizopus — forms non-motile sporangiospores/aplanospores, not motile zoospores.
✓Final answerZoospores are the asexual reproductive units of (A) Chlamydomonas.
- CBSE 2020Set 57/2/11 markMCQQ.Cleistogamous flowers are self-pollinated because (A) they are bisexual flowers which do not open at all. (B) they are bisexual and open flowers. (C) they are unisexual. (D) their stigma matures before the anthers dehisce.(OR)Asexual reproduction by zoospores is observed in (A) Penicillium (B) Hydra (C) Sponge (D) Chlamydomonas
›Reveal solutionSolution
Part (a): Cleistogamous flowers self-pollinate because they are bisexual flowers that never open — option (A).
Part (b): Asexual reproduction by motile zoospores occurs in the green alga Chlamydomonas — option (D).
Part (a)
Cleistogamy (Greek: 'closed marriage') describes flowers that remain permanently closed. Examining the options:
- (A) Bisexual flowers which do not open at all — correct: they possess both stamens and pistil, and because the flower never opens, the anthers dehisce inside the closed bud and the pollen is deposited on the stigma of the same flower, guaranteeing self-pollination (autogamy) even without pollinators.
- (B) Bisexual and open flowers — these are chasmogamous (normal open) flowers, not cleistogamous.
- (C) Unisexual — wrong; a unisexual flower cannot self-pollinate at all. Cleistogamous flowers are always bisexual.
- (D) Stigma matures before the anthers dehisce — this is protogyny, a device that promotes cross-pollination.
ImportantCleistogamy is a classic example of obligate self-pollination — the flower has no option but to self, ensuring seed set even when pollinators are absent.
✓Final answerCleistogamous flowers are self-pollinated because (A) they are bisexual flowers which do not open at all.
Part (b)
Zoospores are flagellated, motile spores used for asexual reproduction, typically in aquatic algae and some lower fungi. Checking the options:
- (A) Penicillium — a fungus reproducing asexually by non-motile conidia.
- (B) Hydra — an animal reproducing asexually by budding.
- (C) Sponge — reproduces asexually by gemmules and fragmentation.
- (D) Chlamydomonas — a freshwater green alga that reproduces asexually by producing biflagellate zoospores. ✓
✓Final answerAsexual reproduction by zoospores is observed in (D) Chlamydomonas.
- CBSE 2016Set ANNUAL1 markMCQQ.A unisexual flower having no androecium is called(a) Dithecous(b) Dioecious(c) Monoecious(d) Pistillate
›Reveal solutionSolution
A unisexual flower bearing only the female reproductive whorl (gynoecium/pistil), with no stamens at all, is called a pistillate flower.
Let's rule out the other options: Dithecous describes an anther with two thecae (lobes), each containing two microsporangia — a term about anther structure, not about a whole flower lacking stamens. Dioecious describes a plant species in which male flowers and female flowers occur on separate individual plants (e.g. papaya) — it is a property of the species/population, not the name for a single female flower itself. Monoecious describes a plant species bearing both male and female unisexual flowers on the same individual plant (e.g. maize, cucumber) — again a whole-plant term, not the name of a flower type. Pistillate specifically names a unisexual flower that possesses only the pistil/gynoecium (carpels) and no androecium — exactly the flower described in the question; its male counterpart (only androecium, no gynoecium) is called a staminate flower.
✓Final answer(d) Pistillate — a female unisexual flower with only the gynoecium (carpels) and no androecium (stamens).
🎓Unlock everything free for 14 days
- ✓Full step-by-step solutions
- ✓Concept-first explanations
- ✓Methods, shortcuts & mistakes
- ✓PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.