Why isn't sex optional? Stem-cell competition, loss of regenerative capacity, and cancer in metazoan evolution.

Q2 Agricultural and Biological Sciences
Chris Fields, Michael Levin
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Abstract

Animals that can reproduce vegetatively by fission or budding and also sexually via specialized gametes are found in all five primary animal lineages (Bilateria, Cnidaria, Ctenophora, Placozoa, Porifera). Many bilaterian lineages, including roundworms, insects, and most chordates, have lost the capability of vegetative reproduction and are obligately gametic. We suggest a developmental explanation for this evolutionary phenomenon: obligate gametic reproduction is the result of germline stem cells winning a winner-take-all competition with non-germline stem cells for control of reproduction and hence lineage survival. We develop this suggestion by extending Hamilton's rule, which factors the relatedness between parties into the cost/benefit analysis that underpins cooperative behaviors, to include similarity of cellular state. We show how coercive or deceptive cell-cell signaling can be used to make costly cooperative behaviors appear less costly to the cooperating party. We then show how competition between stem-cell lineages can render an ancestral combination of vegetative reproduction with facultative sex unstable, with one or the other process driven to extinction. The increased susceptibility to cancer observed in obligately-sexual lineages is, we suggest, a side-effect of deceptive signaling that is exacerbated by the loss of whole-body regenerative abilities. We suggest a variety of experimental approaches for testing our predictions.

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为什么性不是可有可无的?干细胞竞争、再生能力丧失和癌细胞在后生动物进化中的作用。
动物可以通过分裂或出芽进行无性繁殖,也可以通过特化的配子进行有性生殖,这种动物存在于所有五个主要动物谱系中(双鞭毛目、蛛形纲、栉水母纲、胎生纲、多孔动物纲)。包括蛔虫、昆虫和大多数脊索动物在内的许多双鞭毛目动物失去了无性繁殖的能力,只能配子繁殖。我们对这一进化现象提出了一种发展解释:强制性配子生殖是生殖干细胞在与非生殖干细胞争夺生殖控制权的竞争中获胜的结果,进而决定了种系的存亡。汉密尔顿法则将各方之间的亲缘关系纳入合作行为的成本/收益分析中,并将细胞状态的相似性纳入其中。我们展示了如何利用胁迫性或欺骗性的细胞信号传递,使合作行为的成本对合作方来说显得较低。然后,我们展示了干细胞系之间的竞争如何使祖先的无性繁殖与表面性结合变得不稳定,导致其中一个过程或另一个过程灭绝。我们认为,在强制性性细胞系中观察到的癌症易感性增加是欺骗性信号传递的副作用,而全身再生能力的丧失又加剧了这种副作用。我们提出了多种实验方法来验证我们的预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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