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爬行动物的环境性别决定机制。

Environmental sex determination mechanisms in reptiles.

机构信息

Departamento de Biología Celular y Fisiología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City, Mexico.

出版信息

Sex Dev. 2013;7(1-3):95-103. doi: 10.1159/000341936. Epub 2012 Aug 31.

DOI:10.1159/000341936
PMID:22948613
Abstract

Temperature-dependent sex determination (TSD) was first discovered in reptiles. Since then, a great diversity of sex-determining responses to temperature has been reported. Higher temperatures can produce either males or females, and the temperature ranges and lengths of exposure that influence TSD are remarkably variable among species. In addition, transitory gene regulatory networks leading to gonadal TSD have evolved. Although most genes involved in gonadal development are conserved in vertebrates, including TSD species, temporal and spatial gene expression patterns vary among species. Despite variation in TSD pattern and gene expression heterochrony, the structural framework, the medullary cords, and cortex of the bipotential gonad have been strongly conserved. Aromatase (CYP19), which regulates gonadal estrogen levels, is proposed to be the main target of a putative thermosensitive factor for TSD. However, manipulation of estrogen levels rarely mimics the precise timing of temperature effects on expression of gonadal genes, as occurs with TSD. Estrogen levels may influence sex determination or gonad differentiation depending on the species. Furthermore, the process leading to sex determination under the influence of temperature poses problems that are not encountered by species with genetic sex determination. Yolk steroids of maternal origin and steroids produced by the embryonic nervous system should also be considered as sources of hormones that may play a role in TSD.

摘要

温度依赖型性别决定(TSD)最初在爬行动物中被发现。从那时起,已经报道了许多对温度有性别决定反应的多样性。较高的温度可以产生雄性或雌性,而影响 TSD 的温度范围和暴露时间长度在物种之间差异显著。此外,导致性腺 TSD 的瞬时基因调控网络已经进化。尽管涉及性腺发育的大多数基因在包括 TSD 物种在内的脊椎动物中是保守的,但时空基因表达模式在物种间存在差异。尽管 TSD 模式和基因表达异时性存在差异,但双潜能性腺的结构框架、髓索和皮质都得到了很好的保存。芳香酶(CYP19),它调节性腺中的雌激素水平,被认为是 TSD 中潜在热敏因子的主要靶标。然而,操纵雌激素水平很少能模拟温度对性腺基因表达的精确时间影响,而 TSD 则可以。雌激素水平可能会影响性别决定或性腺分化,这取决于物种。此外,在温度影响下导致性别决定的过程带来了遗传性别决定的物种所不会遇到的问题。母体来源的卵黄类固醇和胚胎神经系统产生的类固醇也应被视为可能在 TSD 中发挥作用的激素来源。

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