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一种保守的体细胞性别决定级联指导有角蜣螂特定性状的两性异形。

A Conserved Somatic Sex Determination Cascade Instructs Trait-Specific Sexual Dimorphism in Horned Dung Beetles.

作者信息

Mitchell London C, Moczek Armin P, Nadolski Erica M

机构信息

Department of Biology, Indiana University, Bloomington, Indiana, USA.

出版信息

Evol Dev. 2025 Mar;27(1):e70004. doi: 10.1111/ede.70004.

Abstract

Sex-specific trait expression represents a striking dimension of morphological variation within and across species. The mechanisms instructing sex-specific organ development have been well studied in a small number of insect model systems, suggesting striking conservation in some parts of the somatic sex determination pathway while hinting at possible evolutionary lability in others. However, further resolution of this phenomenon necessitates additional taxon sampling, particularly in groups in which sexual dimorphisms have undergone significant elaboration and diversification. Here, we functionally investigate the somatic sex determination pathway in the gazelle dung beetle Digitonthophagus gazella, an emerging model system in the study of the development and evolution of sexual dimorphisms. We find that RNA interference (RNAi) targeting transformer (tra) caused chromosomal females to develop morphological traits largely indistinguishable from those normally only observed in males, and that tra is sufficient to induce splicing of the normally male-specific isoform of doublesex in chromosomal females, while leaving males unaffected. Further, intersex was found to phenocopy previously described RNAi phenotypes of doublesex in female but not male beetles. These findings match predictions derived from models of the sex determination cascade as developed largely through studies in Drosophila melanogaster. In contrast, efforts to target transformer2 via RNAi resulted in high juvenile mortality but did not appear to affect doublesex splicing, whereas RNAi targeting Sex-lethal and two putative orthologs of hermaphrodite yielded no obvious phenotypic modifications in either males or females, raising the possibility that the function of a subset of sex determination genes may be derived in select Diptera and thus nonrepresentative of their roles in other holometabolous orders. Our results help illuminate how the differential evolutionary lability of the somatic sex determination pathway has contributed to the extraordinary morphological diversification of sex-specific trait expression found in nature.

摘要

性别特异性性状表达是物种内部和物种之间形态变异的一个显著维度。在少数昆虫模型系统中,指导性别特异性器官发育的机制已得到充分研究,这表明在体细胞性别决定途径的某些部分存在显著的保守性,而在其他部分则暗示可能存在进化上的不稳定性。然而,要进一步解析这一现象,需要增加分类群的采样,特别是在性二态性经历了显著细化和多样化的群体中。在这里,我们对瞪羚粪金龟(Digitonthophagus gazella)的体细胞性别决定途径进行了功能研究,瞪羚粪金龟是研究性二态性发育和进化的一个新兴模型系统。我们发现,针对transformer(tra)的RNA干扰(RNAi)使染色体雌性发育出的形态特征与通常仅在雄性中观察到的特征基本无法区分,并且tra足以诱导染色体雌性中通常为雄性特异性的doublesex异构体的剪接,而对雄性没有影响。此外,发现雌雄同体的表型与先前描述的雌性而非雄性甲虫中doublesex的RNAi表型相似。这些发现与主要通过对黑腹果蝇的研究建立的性别决定级联模型的预测相符。相比之下,通过RNAi靶向transformer2的尝试导致了较高的幼虫死亡率,但似乎并未影响doublesex的剪接,而靶向Sex-lethal和两个雌雄同体假定直系同源基因的RNAi在雄性和雌性中均未产生明显的表型改变,这增加了一种可能性,即性别决定基因子集的功能可能在某些双翅目中是衍生而来的,因此不能代表它们在其他全变态昆虫目中的作用。我们的结果有助于阐明体细胞性别决定途径的差异进化不稳定性是如何导致自然界中性别特异性性状表达的非凡形态多样化的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c530/11923317/fbed0f3228c6/EDE-27-e70004-g004.jpg

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