性发展与环境:40年理论的结论。

IF 2.4 4区 医学 Q2 DEVELOPMENTAL BIOLOGY
Sexual Development Pub Date : 2021-01-01 Epub Date: 2021-06-15 DOI:10.1159/000515221
Lisa E Schwanz, Arthur Georges
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引用次数: 13

摘要

在这篇综述中,我们考虑了通过对环境性别决定(ESD)和耐热性的理论研究所获得的见解——理论如何促进我们对与ESD相关的生态和进化动力学的理解,不同性别决定模式之间的过渡途径,以及潜在的机制。经过几十年关于ESD适应性益处的理论研究,有几个假设看起来很有希望。这些假设侧重于差异适合度(温度对适合度的性别特异性影响)在产生ESD选择中的重要性,但强调了差异适合度产生的其他途径:对生长的季节性影响、性别特异性成熟年龄和性别偏向分散。ESD很容易产生有偏差的性别比例,从而导致ESD的生态和进化之间的复杂反馈。频率依赖的性别选择作用于与静电相关的性状,驱动局部适应或可塑性以恢复平衡的性别比例。然而,移民和世代重叠(“混合”)削弱了当地的适应性,使每个群体/人口都有可能出现性别比例偏差。将机制纳入生态学和进化模型揭示了不同性别决定系统之间的相似性。性发育的剂量和基因调控网络模型开始揭示温度敏感性和阈值是如何产生的。这些模型固有的性别决定系统中不可避免的温度敏感性表明,基因型性别决定(GSD)和温度依赖性性别决定之间以及不同形式的GSD之间的进化转变是简单而优雅的。理论模型通常最好是考虑一个谜题的单个部分;然而,在一个综合的画面中反思所有的碎片会有很多收获。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sexual Development and the Environment: Conclusions from 40 Years of Theory.

In this review, we consider the insight that has been gained through theoretical examination of environmental sex determination (ESD) and thermolability - how theory has progressed our understanding of the ecological and evolutionary dynamics associated with ESD, the transitional pathways between different modes of sex determination, and the underlying mechanisms. Following decades of theory on the adaptive benefits of ESD, several hypotheses seem promising. These hypotheses focus on the importance of differential fitness (sex-specific effects of temperature on fitness) in generating selection for ESD, but highlight alternative ways differential fitness arises: seasonal impacts on growth, sex-specific ages of maturation, and sex-biased dispersal. ESD has the potential to generate biased sex ratios quite easily, leading to complex feedbacks between the ecology and evolution of ESD. Frequency-dependent selection on sex acts on ESD-related traits, driving local adaptation or plasticity to restore equilibrium sex ratio. However, migration and overlapping generations ("mixing") diminish local adaptation and leave each cohort/population with the potential for biased sex ratios. Incorporating mechanism into ecology and evolution models reveals similarities between different sex-determining systems. Dosage and gene regulatory network models of sexual development are beginning to shed light on how temperature sensitivity and thresholds may arise. The unavoidable temperature sensitivity in sex-determining systems inherent to these models suggests that evolutionary transitions between genotypic sex determination (GSD) and temperature-dependent sex determination, and between different forms of GSD, are simple and elegant. Theoretical models are often best-served by considering a single piece of a puzzle; however, there is much to gain from reflecting on all of the pieces together in one integrative picture.

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来源期刊
Sexual Development
Sexual Development 生物-发育生物学
CiteScore
4.00
自引率
4.30%
发文量
25
审稿时长
>12 weeks
期刊介绍: Recent discoveries in experimental and clinical research have led to impressive advances in our knowledge of the genetic and environmental mechanisms governing sex determination and differentiation, their evolution as well as the mutations or endocrine and metabolic abnormalities that interfere with normal gonadal development. ‘Sexual Development’ provides a unique forum for this rapidly expanding field. Its broad scope covers all aspects of genetics, molecular biology, embryology, endocrinology, evolution and pathology of sex determination and differentiation in humans and animals. It publishes high-quality original research manuscripts, review articles, short reports, case reports and commentaries. An internationally renowned and multidisciplinary editorial team of three chief editors, ten prominent scientists serving as section editors, and a distinguished panel of editorial board members ensures fast and author-friendly editorial processing and peer reviewing.
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