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Controle de la fecondation par des mecanismes d'auto-incompatibilite

机译:通过自交不亲和机制控制施肥

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Control of fertilization by self-incompatibility mechanisms. Flowering plants (angiosperms) are the most prevalent and evolutionarily advanced group of plants. Reproductive strategies that promote cross-fertilization have played an essential role in the success of angiosperms as they contribute to genetic variability among plant species. A major genetic barrier to self-fertilization is self-incompatibility (SI), which allows female reproductive cells to discriminate between self- and non-self pollen and specifically reject self-pollen. In this review, we describe three SI mechanisms showing that different flowering plant families use distinct molecules for recognition of self as well as diverse biochemical pathways to arrest pollen tube growth.
机译:通过自交不亲和机制控制施肥。开花植物(被子植物)是最普遍和进化最先进的植物。促进交叉受精的生殖策略在被子植物的成功中起着至关重要的作用,因为它们促进了植物物种之间的遗传变异。自我受精的主要遗传障碍是自我不亲和性(SI),它使雌性生殖细胞能够区分自身和非自身花粉,并特别排斥自身花粉。在这篇综述中,我们描述了三种SI机制,表明不同的开花植物家族使用不同的分子来识别自身以及多种生化途径来阻止花粉管生长。

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