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NCERT Exemplar · Q42

Q.Does self incompatibility impose any restrictions on autogamy? Give reasons and suggest the method of pollination in such plants.

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Self incompatibility is a genetic mechanism that prevents self-pollination (autogamy) in flowering plants, forcing them to rely on cross-pollination instead.

Self incompatibility is a fascinating genetic strategy that many flowering plants have evolved to avoid inbreeding. In simple terms, it is a built-in biochemical barrier that stops pollen from the same flower — or from genetically identical flowers on the same plant — from successfully fertilising the ovules. This is not about physical separation of male and female parts; it is a molecular recognition system. The pollen grain may land on the stigma of the same flower, but if it carries the same incompatibility alleles (S-alleles) as the stigma, the pollen tube fails to grow or is rejected. The result is that self-fertilisation, or autogamy, is blocked.

Does this impose restrictions on autogamy? Absolutely. Autogamy means pollen from the anther of a flower lands on the stigma of the same flower. In a self-incompatible plant, this process is genetically prevented. Even if the flower is structurally perfect (bisexual) and the anthers and stigma mature at the same time, the plant's own pollen is recognised as "self" and is rejected. So self incompatibility is a direct and powerful restriction on autogamy. It ensures that the plant cannot fertilise itself, no matter how favourable the timing or structure.

Note

This is different from self-sterility caused by physical or temporal barriers (like dichogamy or herkogamy). Self incompatibility is a genetic, not mechanical, block.

The reasons for this restriction are rooted in the plant's evolutionary advantage. Self-fertilisation leads to homozygosity and inbreeding depression — a loss of vigour, reduced seed set, and accumulation of harmful recessive alleles. By forcing cross-pollination, self incompatibility promotes genetic diversity, which helps populations adapt to changing environments and resist diseases. The plant essentially "chooses" to outcross, even if it means relying on external agents. …

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