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在一种两性异形蜥蜴中,激素介导的性别偏向基因表达增加伴随着两性之间遗传相关性的瓦解。

Hormonally Mediated Increases in Sex-Biased Gene Expression Accompany the Breakdown of Between-Sex Genetic Correlations in a Sexually Dimorphic Lizard.

作者信息

Cox Robert M, Cox Christian L, McGlothlin Joel W, Card Daren C, Andrew Audra L, Castoe Todd A

出版信息

Am Nat. 2017 Mar;189(3):315-332. doi: 10.1086/690105. Epub 2017 Jan 25.

DOI:10.1086/690105
PMID:28221827
Abstract

The evolution of sexual dimorphism is predicted to occur through reductions in between-sex genetic correlations (r) for shared traits, but the physiological and genetic mechanisms that facilitate these reductions remain largely speculative. Here, we use a paternal half-sibling breeding design in captive brown anole lizards (Anolis sagrei) to show that the development of sexual size dimorphism is mirrored by the ontogenetic breakdown of r for body size and growth rate. Using transcriptome data from the liver (which integrates growth and metabolism), we show that sex-biased gene expression also increases dramatically between ontogenetic stages bracketing this breakdown of r. Ontogenetic increases in sex-biased expression are particularly evident for genes involved in growth, metabolism, and cell proliferation, suggesting that they contribute to both the development of sexual dimorphism and the breakdown of r. Mechanistically, we show that treatment of females with testosterone stimulates the expression of male-biased genes while inhibiting the expression of female-biased genes, thereby inducing male-like phenotypes at both organismal and transcriptomic levels. Collectively, our results suggest that sex-specific modifiers such as testosterone can orchestrate sex-biased gene expression to facilitate the phenotypic development of sexual dimorphism while simultaneously reducing genetic correlations that would otherwise constrain the independent evolution of the sexes.

摘要

性二态性的进化预计是通过降低共享性状的两性间遗传相关性(r)来实现的,但促进这些降低的生理和遗传机制在很大程度上仍属推测。在此,我们在圈养的棕色安乐蜥(安乐蜥属)中采用父本半同胞育种设计,以表明性大小二态性的发展与身体大小和生长速率的r的个体发育性瓦解是相对应的。利用来自肝脏的转录组数据(其整合了生长和代谢),我们表明在r瓦解的个体发育阶段之间,性别偏向基因表达也会急剧增加。性别偏向表达的个体发育增加在参与生长、代谢和细胞增殖的基因中尤为明显,这表明它们对性二态性的发展和r的瓦解都有贡献。从机制上讲,我们表明用睾酮处理雌性会刺激雄性偏向基因的表达,同时抑制雌性偏向基因的表达,从而在生物体和转录组水平上诱导出雄性样表型。总体而言,我们的结果表明,诸如睾酮之类的性别特异性修饰因子可以协调性别偏向基因表达,以促进性二态性的表型发展,同时降低否则会限制两性独立进化的遗传相关性。

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