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性别与营养之间的发育联系;双性通过保幼激素信号在鹿角甲虫中调节性别特异性下颚生长。

Developmental link between sex and nutrition; doublesex regulates sex-specific mandible growth via juvenile hormone signaling in stag beetles.

机构信息

Graduate School of Environmental Science, Hokkaido University, Sapporo, Hokkaido, Japan ; Department of Entomology, Washington State University, Pullman, Washington, United States of America.

Graduate School of Environmental Science, Hokkaido University, Sapporo, Hokkaido, Japan ; Okazaki Institute for Integrative Bioscience, National Institute for Basic Biology, National Institutes of Natural Sciences, Okazaki, Aichi, Japan.

出版信息

PLoS Genet. 2014 Jan;10(1):e1004098. doi: 10.1371/journal.pgen.1004098. Epub 2014 Jan 16.

Abstract

Sexual dimorphisms in trait expression are widespread among animals and are especially pronounced in ornaments and weapons of sexual selection, which can attain exaggerated sizes. Expression of exaggerated traits is usually male-specific and nutrition sensitive. Consequently, the developmental mechanisms generating sexually dimorphic growth and nutrition-dependent phenotypic plasticity are each likely to regulate the expression of extreme structures. Yet we know little about how either of these mechanisms work, much less how they might interact with each other. We investigated the developmental mechanisms of sex-specific mandible growth in the stag beetle Cyclommatus metallifer, focusing on doublesex gene function and its interaction with juvenile hormone (JH) signaling. doublesex genes encode transcription factors that orchestrate male and female specific trait development, and JH acts as a mediator between nutrition and mandible growth. We found that the Cmdsx gene regulates sex differentiation in the stag beetle. Knockdown of Cmdsx by RNA-interference in both males and females produced intersex phenotypes, indicating a role for Cmdsx in sex-specific trait growth. By combining knockdown of Cmdsx with JH treatment, we showed that female-specific splice variants of Cmdsx contribute to the insensitivity of female mandibles to JH: knockdown of Cmdsx reversed this pattern, so that mandibles in knockdown females were stimulated to grow by JH treatment. In contrast, mandibles in knockdown males retained some sensitivity to JH, though mandibles in these individuals did not attain the full sizes of wild type males. We suggest that moderate JH sensitivity of mandibular cells may be the default developmental state for both sexes, with sex-specific Dsx protein decreasing sensitivity in females, and increasing it in males. This study is the first to demonstrate a causal link between the sex determination and JH signaling pathways, which clearly interact to determine the developmental fates and final sizes of nutrition-dependent secondary-sexual characters.

摘要

性二型在动物中广泛存在于性状表达中,尤其是在性选择的装饰物和武器中,这些装饰物和武器可以达到夸张的大小。夸张性状的表达通常是雄性特异性的,并且对营养敏感。因此,产生性二型生长和营养依赖表型可塑性的发育机制可能各自调节极端结构的表达。然而,我们对这些机制中的任何一种机制如何起作用知之甚少,更不用说它们如何相互作用了。我们研究了交配甲虫 Cyclommatus metallifer 中下颌骨生长的性别特异性发育机制,重点研究了 doublesex 基因的功能及其与保幼激素 (JH) 信号之间的相互作用。 doublesex 基因编码转录因子,这些转录因子协调雄性和雌性特有的性状发育,而 JH 作为营养与下颌骨生长之间的介质。我们发现 Cmdsx 基因调节交配甲虫的性别分化。通过 RNA 干扰在雄性和雌性中敲低 Cmdsx 都会产生两性畸形表型,表明 Cmdsx 在性别特异性性状生长中起作用。通过将 Cmdsx 的敲低与 JH 处理相结合,我们表明 Cmdsx 的雌性特异性剪接变体有助于雌性下颌骨对 JH 的不敏感性:敲低 Cmdsx 逆转了这种模式,使得敲低雌性的下颌骨被 JH 处理刺激生长。相比之下,敲低雄性的下颌骨仍然对 JH 具有一定的敏感性,尽管这些个体的下颌骨没有达到野生型雄性的完全大小。我们认为,下颌骨细胞的适度 JH 敏感性可能是两性的默认发育状态,雌性特异性 Dsx 蛋白降低了雌性的敏感性,而在雄性中增加了敏感性。这项研究首次证明了性别决定和 JH 信号通路之间存在因果关系,这两个通路显然相互作用,决定了营养依赖的次生性别特征的发育命运和最终大小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d77c/3894178/f1b53bdf4918/pgen.1004098.g001.jpg

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