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建模热对爬行动物生长和性别决定的影响:更接近目标会带来新的观点。

Modeling thermal influence on animal growth and sex determination in reptiles: being closer to the target gives new views.

机构信息

Laboratoire Ecologie, Systématique et Evolution (UMR8079), Faculté des Sciences d'Orsay, Université Paris-Sud, France. marc.girondot @ u-psud.fr

出版信息

Sex Dev. 2010;4(1-2):29-38. doi: 10.1159/000280585. Epub 2010 Feb 2.

Abstract

Many species of oviparous reptiles, including crocodilians, a majority of turtles, some lizards and the 2 closely related species of Sphenodon have been shown to display temperature-dependent sex determination (TSD). Whereas it has been demonstrated very early that TSD also occurs in natural conditions, the relationship between a time series of changing temperatures and sex ratio remains a challenging problem for reptiles. We describe how a physiological model of embryo growth, gonadal development and aromatase activity can produce outputs that mimic well TSD. We provide an enhancement of a previously published model taking into account direct effect of temperature on aromatase activity. The comparison between the original model and the new one suggests that aromatase expression is controlled by a repressor factor expressed at masculinizing temperatures rather than its enhancement at feminizing temperatures.

摘要

许多卵生爬行动物物种,包括鳄鱼、大多数海龟、一些蜥蜴以及 2 种密切相关的 Sphenodon 物种,已经被证明表现出温度依赖性性别决定(TSD)。尽管很早就证明了 TSD 也在自然条件下发生,但温度变化时间序列与性别比例之间的关系仍然是爬行动物的一个具有挑战性的问题。我们描述了胚胎生长、性腺发育和芳香酶活性的生理模型如何产生能够很好地模拟 TSD 的输出。我们提供了对以前发表的模型的增强,该模型考虑了温度对芳香酶活性的直接影响。原始模型和新模型之间的比较表明,芳香酶表达受在雄性化温度下表达的阻遏因子控制,而不是在雌性化温度下增强。

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