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表现出环境性别决定的爬行动物的性腺分化。

Gonadal differentiation in reptiles exhibiting environmental sex determination.

作者信息

Kohno Satomi, Parrott Benjamin B, Yatsu Ryohei, Miyagawa Shinichi, Moore Brandon C, Iguchi Taisen, Guillette Louis

机构信息

Department of Obstetrics and Gynecology, Medical University of South Carolina, Charleston, S.C., USA.

出版信息

Sex Dev. 2014;8(5):208-26. doi: 10.1159/000358892. Epub 2014 Mar 13.

Abstract

As temperature-dependent sex determination (TSD) and homozygote or heterozygote genetic sex determination (GSD) exist in multiple reptilian taxa, they represent sex determination systems that have emerged de novo. Current investigations have revealed that the genetic mechanisms used by various reptilian species are similar to those used by other vertebrates. However, the recent completion or near completion of various reptilian genome projects suggests that new studies examining related species with and without TSD could begin to provide additional insight into the evolution of TSD and GSD in vertebrate ancestors. Major questions still remain concerning germ cell migration and specification, the differentiation of gonadal accessory cells, such as the Sertoli cells and granulosa cells of the developing testis and ovary, respectively, and the mechanisms by which gene expression is regulated during TSD events. Further, reptilian sentinels and their mechanisms of gonadogenesis will likely remain important indicator species for environmental health. Thus, ongoing and new investigations need to tie molecular information to gonadal morphogenesis and function in reptiles. Such data will not only provide important information for an understanding of the evolution of these phenomena in vertebrates, but could also provide an important understanding of the health of the environment around us.

摘要

由于温度依赖型性别决定(TSD)以及纯合子或杂合子遗传性别决定(GSD)存在于多个爬行动物分类群中,它们代表了全新出现的性别决定系统。目前的研究表明,各种爬行动物物种所采用的遗传机制与其他脊椎动物所使用的机制相似。然而,最近各种爬行动物基因组项目的完成或接近完成表明,对具有和不具有TSD的相关物种进行的新研究可能开始为脊椎动物祖先中TSD和GSD的进化提供更多见解。关于生殖细胞迁移和特化、性腺附属细胞(如发育中的睾丸和卵巢的支持细胞和颗粒细胞)的分化以及TSD事件期间基因表达调控的机制,仍然存在主要问题。此外,爬行动物哨兵及其性腺发生机制可能仍然是环境健康的重要指示物种。因此,正在进行的和新的研究需要将分子信息与爬行动物的性腺形态发生和功能联系起来。这些数据不仅将为理解这些现象在脊椎动物中的进化提供重要信息,还能让我们重要了解周围环境的健康状况。

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