首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Organismal duplication inclusive fitness theory and altruism: understanding the evolution of endosperm and the angiosperm reproductive syndrome.
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Organismal duplication inclusive fitness theory and altruism: understanding the evolution of endosperm and the angiosperm reproductive syndrome.

机译:有机体复制普适性理论和利他主义:了解胚乳和被子植物生殖综合征的演变。

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摘要

For almost a century, events relating to the evolutionary origin of endosperm, a unique embryo-nourishing tissue that is essential to the reproductive process in flowering plants, have remained a mystery. Integration of recent advances in phylogenetic reconstruction, comparative reproductive biology, and genetic theory can be used to elucidate the evolutionary events and forces associated with the establishment of endosperm. Endosperm is shown to be derived from one of two embryos formed during a rudimentary process of "double fertilization" that evolved in the ancestors of angiosperms. Acquisition of embryo-nourishing behavior (with accompanying loss of individual fitness) by this supernumerary fertilization product was dependent upon compensatory gains in the inclusive fitness of related embryos. The result of the loss of individual fitness by one of the two original products of double fertilization was the establishment of endosperm, a highly modified embryo/organism that reproduces cryptically through behavior that enhances the fitness of its associated embryo within a seed. Finally, although triploid endosperm remains a synapomorphy of angiosperms, inclusive fitness analysis demonstrates that the embryo-nourishing properties of endosperm initially evolved in a diploid condition.
机译:近一个世纪以来,与胚乳进化起源有关的事件一直是个谜,胚乳是一种独特的滋养胚胎的组织,对开花植物的生殖过程至关重要。系统发育重建,比较生殖生物学和遗传理论的最新进展的整合可用于阐明与胚乳建立有关的进化事件和作用力。胚乳被证明是源自被子植物祖先进化的“双重受精”的基本过程中形成的两个胚胎之一。这种多余的受精产品获得的滋养胚胎行为(伴随着个体适应能力的丧失)取决于相关胚胎的包容性获得补偿性收益。双重受精的两种原始产物之一导致个体适应性丧失的结果是胚乳的建立,胚乳是一种高度修饰的胚/生物,通过增强种子相关胚适应性的行为秘密繁殖。最后,尽管三倍体胚乳仍然是被子植物的一个同形亚型,但包含的适应性分析表明,胚乳的滋养特性最初是在二倍体条件下进化的。

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