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从真核微生物的角度看有性生殖变异的进化。

On the evolution of variation in sexual reproduction through the prism of eukaryotic microbes.

机构信息

Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, NC 27710.

出版信息

Proc Natl Acad Sci U S A. 2023 Mar 7;120(10):e2219120120. doi: 10.1073/pnas.2219120120. Epub 2023 Mar 3.

Abstract

Almost all eukaryotes undergo sexual reproduction to generate diversity and select for fitness in their population pools. Interestingly, the systems by which sex is defined are highly diverse and can even differ between evolutionarily closely related species. While the most commonly known form of sex determination involves males and females in animals, eukaryotic microbes can have as many as thousands of different mating types for the same species. Furthermore, some species have found alternatives to sexual reproduction and prefer to grow clonally and yet undergo infrequent facultative sexual reproduction. These organisms are mainly invertebrates and microbes, but several examples are also present among vertebrates suggesting that alternative modes of sexual reproduction evolved multiple times throughout evolution. In this review, we summarize the sex-determination modes and variants of sexual reproduction found across the eukaryotic tree of life and suggest that eukaryotic microbes provide unique opportunities to study these processes in detail. We propose that understanding variations in modes of sexual reproduction can serve as a foundation to study the evolution of sex and why and how it evolved in the first place.

摘要

几乎所有的真核生物都通过有性繁殖来产生多样性,并在其种群中选择适合度。有趣的是,性别的定义系统高度多样化,甚至在进化上密切相关的物种之间也存在差异。虽然最常见的性别决定形式涉及动物中的雄性和雌性,但真核微生物的同一物种可能有多达数千种不同的交配类型。此外,一些物种已经找到了替代有性繁殖的方法,更喜欢克隆生长,但偶尔会进行兼性有性繁殖。这些生物主要是无脊椎动物和微生物,但脊椎动物中也有几个例子,这表明有性繁殖的替代模式在进化过程中多次进化。在这篇综述中,我们总结了真核生物生命之树中发现的性别决定模式和有性繁殖的变体,并提出真核微生物为详细研究这些过程提供了独特的机会。我们提出,理解有性繁殖模式的变化可以作为研究性别的进化以及为什么和如何首先进化的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af9/10013875/49ad64f748b1/pnas.2219120120fig01.jpg

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