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脊椎动物性进化简史与综合性研究的保证:走向“”。

A brief review of vertebrate sex evolution with a pledge for integrative research: towards ''.

机构信息

Leibniz-Institute of Freshwater Ecology and Inland Fisheries-IGB (Forschungsverbund Berlin), Müggelseedamm 301, 12587 Berlin, Germany.

Amphibian Research Center, Hiroshima University, Higashi-Hiroshima 739-8526, Japan.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2021 Aug 30;376(1832):20200426. doi: 10.1098/rstb.2020.0426. Epub 2021 Jul 12.

Abstract

Triggers and biological processes controlling male or female gonadal differentiation vary in vertebrates, with sex determination (SD) governed by environmental factors or simple to complex genetic mechanisms that evolved repeatedly and independently in various groups. Here, we review sex evolution across major clades of vertebrates with information on SD, sexual development and reproductive modes. We offer an up-to-date review of divergence times, species diversity, genomic resources, genome size, occurrence and nature of polyploids, SD systems, sex chromosomes, SD genes, dosage compensation and sex-biased gene expression. Advances in sequencing technologies now enable us to study the evolution of SD at broader evolutionary scales, and we now hope to pursue a integrative research initiative across vertebrates. The vertebrate comprises interdisciplinary and integrated information on sexual differentiation, development and reproduction at all biological levels, from genomes, transcriptomes and proteomes, to the organs involved in sexual and sex-specific processes, including gonads, secondary sex organs and those with transcriptional sex-bias. The also includes ontogenetic and behavioural aspects of sexual differentiation, including malfunction and impairment of SD, sexual differentiation and fertility. Starting from data generated by high-throughput approaches, we encourage others to contribute expertise to building understanding of the of many key vertebrate species. This article is part of the theme issue 'Challenging the paradigm in sex chromosome evolution: empirical and theoretical insights with a focus on vertebrates (Part I)'.

摘要

控制脊椎动物雄性或雌性性腺分化的触发因素和生物学过程各不相同,性别决定(SD)受环境因素或简单到复杂的遗传机制控制,这些机制在不同的群体中反复独立进化。在这里,我们回顾了主要脊椎动物类群的性别进化,包括 SD、性发育和生殖方式的信息。我们提供了最新的关于分歧时间、物种多样性、基因组资源、基因组大小、多倍体的发生和性质、SD 系统、性染色体、SD 基因、剂量补偿和性别偏向基因表达的综述。测序技术的进步使我们现在能够在更广泛的进化尺度上研究 SD 的进化,我们现在希望在整个脊椎动物中开展一项综合性的研究计划。《脊椎动物性别生物学》包含了跨学科和综合的信息,涉及到从基因组、转录组和蛋白质组到参与性和性别特异性过程的器官(包括性腺、次级性器官和具有转录性别偏向的器官)等所有生物学水平的性别分化、发育和生殖。《脊椎动物性别生物学》还包括性别分化的个体发生和行为方面,包括 SD、性别分化和生育能力的功能障碍和损伤。从高通量方法生成的数据出发,我们鼓励其他人贡献专业知识,以建立对许多关键脊椎动物物种的《脊椎动物性别生物学》的理解。本文是主题为“挑战性染色体进化范式:以脊椎动物为重点的经验和理论见解(第一部分)”的特刊的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9544/8293304/68ce0c256123/rstb20200426f01.jpg

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