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胚胎温度决定爬行动物的表型。

Embryonic Temperature Programs Phenotype in Reptiles.

作者信息

Singh Sunil Kumar, Das Debojyoti, Rhen Turk

机构信息

Department of Biology, University of North Dakota, Grand Forks, ND, United States.

出版信息

Front Physiol. 2020 Jan 31;11:35. doi: 10.3389/fphys.2020.00035. eCollection 2020.

Abstract

Reptiles are critically affected by temperature throughout their lifespan, but especially so during early development. Temperature-induced changes in phenotype are a specific example of a broader phenomenon called phenotypic plasticity in which a single individual is able to develop different phenotypes when exposed to different environments. With climate change occurring at an unprecedented rate, it is important to study temperature effects on reptiles. For example, the potential impact of global warming is especially pronounced in species with temperature-dependent sex determination (TSD) because temperature has a direct effect on a key phenotypic (sex) and demographic (population sex ratios) trait. Reptiles with TSD also serve as models for studying temperature effects on the development of other traits that display continuous variation. Temperature directly influences metabolic and developmental rate of embryos and can have permanent effects on phenotype that last beyond the embryonic period. For instance, incubation temperature programs post-hatching hormone production and growth physiology, which can profoundly influence fitness. Here, we review current knowledge of temperature effects on phenotypic and developmental plasticity in reptiles. First, we examine the direct effect of temperature on biophysical processes, the concept of thermal performance curves, and the process of thermal acclimation. After discussing these reversible temperature effects, we focus the bulk of the review on developmental programming of phenotype by temperature during embryogenesis (i.e., permanent developmental effects). We focus on oviparous species because eggs are especially susceptible to changes in ambient temperature. We then discuss recent work probing the role of epigenetic mechanisms in mediating temperature effects on phenotype. Based on phenotypic effects of temperature, we return to the potential impact of global warming on reptiles. Finally, we highlight key areas for future research, including the identification of temperature sensors and assessment of genetic variation for thermosensitivity.

摘要

爬行动物在其整个生命周期中都受到温度的严重影响,在早期发育阶段尤其如此。温度诱导的表型变化是一种更广泛现象——表型可塑性的具体例子,在表型可塑性中,单个个体在暴露于不同环境时能够发育出不同的表型。随着气候变化以前所未有的速度发生,研究温度对爬行动物的影响很重要。例如,全球变暖的潜在影响在具有温度依赖型性别决定(TSD)的物种中尤为明显,因为温度对一个关键的表型(性别)和种群统计学(种群性别比例)特征有直接影响。具有TSD的爬行动物也可作为研究温度对其他表现出连续变化的性状发育影响的模型。温度直接影响胚胎的代谢和发育速率,并可对胚胎期之后持续存在的表型产生永久性影响。例如,孵化温度设定了孵化后激素产生和生长生理过程,这可深刻影响适合度。在这里,我们综述了当前关于温度对爬行动物表型和发育可塑性影响的知识。首先,我们研究温度对生物物理过程的直接影响、热性能曲线的概念以及热适应过程。在讨论了这些可逆的温度影响之后,我们将综述的重点放在胚胎发育过程中温度对表型的发育编程(即永久性发育影响)上。我们关注卵生物种,因为卵特别容易受到环境温度变化的影响。然后,我们讨论了最近探索表观遗传机制在介导温度对表型影响中作用的研究。基于温度的表型影响,我们回到全球变暖对爬行动物的潜在影响。最后,我们强调了未来研究的关键领域,包括温度传感器的识别和热敏感性遗传变异的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd23/7005678/06d98f5214f1/fphys-11-00035-g001.jpg

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