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通过敲低雌性化基因transformer使锹甲XX个体诱导出雄性样的上颚。

Induction of male-like mandibles in XX individuals of a stag beetle by gene knockdown of a feminizer gene transformer.

作者信息

Gotoh Hiroki, Ohtsu Itsuki, Umino Taichi, Yamasaki Yo Y, Minakuchi Yohei, Ito Takehiko, Toyoda Atsushi, Kitano Jun

机构信息

Ecological Genetics Laboratory, National Institute of Genetics, Shizuoka, Japan.

Department of Biological Science, Faculty of Science, Shizuoka University, Shizuoka, Japan.

出版信息

J Exp Zool B Mol Dev Evol. 2025 Jan;344(1):7-13. doi: 10.1002/jez.b.23274. Epub 2024 Aug 26.

DOI:10.1002/jez.b.23274
PMID:39188022
Abstract

Males and females share most of the genome, but many animals show different phenotypes between the sexes, known as sexual dimorphism. Many insect species show extreme sexual dimorphism, including beetles with "weapon traits" represented by extremely developed horns and mandibles. Existing studies of sex-specific development of beetle weapon traits suggest that sex-specific gene expression plays an important role. On the other hand, contributions of the Y-chromosome, which may potentially carry genes necessary for male development, to weapon trait expression have not been examined. In holometabolous insects, including beetles, the feminizing gene transformer (tra) is roughly conserved in its feminizing function. Only females express a functional isoform of Tra, which causes female differentiation. Knocking down tra in females leads to male tissue differentiation, enabling us to analyze male phenotypes in individuals lacking a Y-chromosome (XX-males). In this study, we investigate whether the Y-chromosome is necessary for stag beetles to express male-specific weapon traits by comparing tra-knockdown-induced XX-males with natural XY males. We show that XX-males could express weapons (enlarged mandibles) as in XY-males. These results suggest that the Y-chromosome does not have a major role in weapon trait expression in this species.

摘要

雄性和雌性共享大部分基因组,但许多动物在性别之间表现出不同的表型,即所谓的性二态性。许多昆虫物种表现出极端的性二态性,包括具有以极度发达的角和下颚为代表的“武器特征”的甲虫。现有的关于甲虫武器特征性别特异性发育的研究表明,性别特异性基因表达起着重要作用。另一方面,可能携带雄性发育所需基因的Y染色体对武器特征表达的贡献尚未得到研究。在包括甲虫在内的全变态昆虫中,雌性化基因transformer(tra)在其雌性化功能上大致保守。只有雌性表达功能性的Tra异构体,这会导致雌性分化。在雌性中敲低tra会导致雄性组织分化,使我们能够分析缺乏Y染色体的个体(XX雄性)的雄性表型。在本研究中,我们通过比较敲低tra诱导的XX雄性与天然XY雄性,研究Y染色体对于锹甲表达雄性特异性武器特征是否必要。我们发现XX雄性能够像XY雄性一样表达武器(增大的下颚)。这些结果表明,Y染色体在该物种的武器特征表达中没有主要作用。

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A conserved somatic sex determination cascade instructs trait-specific sexual dimorphism in horned dung beetles.一个保守的体细胞性别决定级联反应指导有角蜣螂中特定性状的性二态性。
bioRxiv. 2025 Mar 1:2024.10.10.617608. doi: 10.1101/2024.10.10.617608.