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The evolution of menstruation: A new model for genetic assimilation

机译:月经的演变:基因同化的新模型

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Why do humans menstruate while most mammals do not? Here, we present our answer to this long-debated question, arguing that (i) menstruation occurs as a mechanistic consequence of hormone-induced differentiation of the endometrium (referred to as spontaneous decidualization, or SD); (ii) SD evolved because of maternalfetal conflict; and (iii) SD evolved by genetic assimilation of the decidualization reaction, which is induced by the fetus in non-menstruating species. The idea that menstruation occurs as a consequence of SD has been proposed in the past, but here we present a novel hypothesis on how SD evolved. We argue that decidualization became genetically stabilized in menstruating lineages, allowing females to prepare for pregnancy without any signal from the fetus. We present three models for the evolution of SD by genetic assimilation, based on recent advances in our understanding of the mechanisms of endometrial differentiation and implantation. Testing these models will ultimately shed light on the evolutionary significance of menstruation, as well as on the etiology of human reproductive disorders like endometriosis and recurrent pregnancy loss.
机译:为什么人类会来月经,而大多数哺乳动物不会?在这里,我们对这个长期争论的问题给出了答案,认为 (i) 月经是激素诱导的子宫内膜分化的机制结果(称为自发蜕膜化,或 SD);(ii)SD因母胎冲突而进化;(iii)SD通过蜕膜化反应的遗传同化而进化而来,蜕膜化反应是由非月经物种的胎儿诱导的。过去曾提出过月经是 SD 结果的想法,但在这里我们提出了一个关于 SD 如何进化的新假设。我们认为,蜕膜化在月经谱系中变得遗传稳定,允许女性在没有胎儿发出任何信号的情况下为怀孕做准备。基于我们对子宫内膜分化和植入机制的理解的最新进展,我们提出了三种通过遗传同化进化 SD 的模型。测试这些模型最终将揭示月经的进化意义,以及子宫内膜异位症和复发性流产等人类生殖疾病的病因。

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