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The evolution of nematode sex determination: C. elegans as a reference point for comparative biology.

机译:线虫性别决定的进化:线虫作为比较生物学的参考点。

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摘要

Sex determination was a founding topic of C. elegans research. After three decades of research, a complex signal transduction pathway with multiple layers of regulation has been elucidated. This pathway links karyotype to phenotype by coordinating the development of sexually dimorphic tissues. In this article, this pathway is placed in two broader contexts. The first is that of nematodes and animals in general. The important role of C. elegans studies in revealing the first universally conserved component of metazoan sex determination is discussed, as is the role of cooption of genes into the sex determination and dosage compensation pathways. The second context is that of a subset of more closely related species, with emphasis on other members of the genus Caenorhabditis. Studies reviewed here have determined the gene-level conservation of the known pathway and the relative rates of molecular evolution in conserved components, and made substantial progress in the manipulation of gene activity in non-elegans species. Special attention is paid to the origins of hermaphroditism, which evolved from gonochorism through germline-specific changes in sex determination. Recent studies suggest that the most rapidly evolving aspects of sex determination are germline functions related to evolutionary shifts in mating systems, while somatic sex determination is relatively conservative. From all of these studies, a picture emerges in which C. elegans utilizes an intriguing mixture of general and species-specific genes and regulatory mechanisms.
机译:性别确定是秀丽隐杆线虫研究的基础。经过三十年的研究,已经阐明了具有多层调节的复杂信号转导途径。该途径通过协调性二态性组织的发育将核型与表型联系起来。在本文中,此路径位于两个更广泛的上下文中。首先是线虫和一般动物的线虫。讨论了秀丽隐杆线虫研究在揭示后生动物性别决定的第一个普遍保守的成分中的重要作用,以及基因共选在性别决定和剂量补偿途径中的作用。第二种情况是相关性更强的物种的子集,重点是秀丽隐杆线虫属的其他成员。此处审查的研究确定了已知途径的基因水平保守性和保守组分中分子进化的相对速率,并在操纵非线虫物种的基因活性方面取得了实质性进展。要特别注意雌雄同体的起源,这种雌雄同体的起源是从性行为变态到性别决定中种系特定的变化。最近的研究表明,性别决定最迅速发展的方面是与交配系统进化变化相关的种系功能,而体细胞性别决定则相对保守。从所有这些研究中,发现线虫利用通用和物种特异性基因以及调节机制的有趣混合物。

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    Eric S Haag;

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  • 年(卷),期 -1(1–14),-1
  • 年度 -1
  • 页码 1–14
  • 总页数 12
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