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孵化温度诱导卵生爬行动物的表型可塑性:下一步何去何从?

Incubation temperature induced phenotypic plasticity in oviparous reptiles: Where to next?

作者信息

Booth David T

机构信息

School of Biological Sciences, The University of Queensland, Queensland, Australia.

出版信息

J Exp Zool A Ecol Integr Physiol. 2018 Jul;329(6-7):343-350. doi: 10.1002/jez.2195. Epub 2018 Jul 3.

Abstract

It is now undisputable that incubation temperature induces different phenotypes (sex, body size, body shape, behavior, and locomotion performance) in many if not most oviparous reptiles. These incubation temperature induced differences in phenotype are assumed to result in differential fitness among hatchlings and therefore to play an important role in recruitment of hatchlings and persistence of reptile populations. However, the role of incubation temperature induced differences in hatchling phenotypes in determining hatchling fitness is still under explored and needs more empirical study. This information is especially needed when making predictions on how climate change and its associated nest warming may affect long term persistence of oviparous reptile populations. Curiously, the ontogenetic and physiological mechanisms responsible for incubation temperature induced differences in hatchling reptile locomotion performance are still unknown. In this article, I review the literature on incubation temperature induced differences in hatchling locomotion performance and summarize what is known about this phenomenon and its influence on hatchling fitness. I discuss how the anticipated detrimental effects on hatchling locomotion performance caused by increased nest temperature associated with climate warming could be ameliorated. I also explore the most likely physiological mechanisms underlying incubation temperature induced differences in hatchling locomotion performance and how these mechanisms might be induced. Finally, I highlight current knowledge gaps in our understanding of incubation temperature induced phenotypic plasticity and suggest directions for future research.

摘要

现在无可争议的是,孵化温度会在许多(甚至可能是大多数)卵生爬行动物中诱导出不同的表型(性别、体型、身体形状、行为和运动表现)。这些由孵化温度诱导的表型差异被认为会导致幼体之间的适应性差异,因此在幼体的补充和爬行动物种群的存续中发挥重要作用。然而,孵化温度诱导的幼体表型差异在决定幼体适应性方面所起的作用仍在探索之中,需要更多的实证研究。在预测气候变化及其相关的巢穴变暖如何影响卵生爬行动物种群的长期存续时,尤其需要这些信息。奇怪的是,导致孵化温度诱导幼体爬行动物运动表现出现差异的个体发育和生理机制仍然未知。在本文中,我回顾了关于孵化温度诱导幼体运动表现差异的文献,并总结了关于这一现象及其对幼体适应性影响的已知情况。我讨论了如何减轻与气候变暖相关的巢穴温度升高对幼体运动表现预期产生的有害影响。我还探讨了孵化温度诱导幼体运动表现差异最可能的生理机制以及这些机制可能是如何被诱导的。最后,我强调了我们在理解孵化温度诱导的表型可塑性方面目前存在的知识空白,并提出了未来研究的方向。

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