性别决定基因 "双性"(Doublesex)在白蚁血统中的进化。

IF 2.2 2区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
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引用次数: 0

摘要

长期以来,人们一直认为昆虫性别决定的分子机制是保守的。然而,最近对半代谢昆虫的研究对这一观点提出了挑战。一个显著的例子是白蚁。在白蚁(Reticulitermes speratus)中,性别决定基因的同源物--Doublesex(RsDsx)表现出与其他昆虫(包括姊妹群蟑螂)不同的特征。它只有一个外显子,只含有双倍性/mab-3 DNA结合结构域(DM),但缺乏保守的寡聚结构域(OD),而且只在雄性体内表现出转录活性。为了研究这些特征在白蚁中是否普遍存在,我们在三个不同的家族中鉴定了 Dsx 同源物。在所研究的所有白蚁物种中都观察到了保守的 OD 序列的缺失,而外显子的数量和性别间的表达模式则因科而异。特别是在 Archotermopsidae 和 Kalotermitidae 的物种中发现了 Dsx 的独特差异,这两个科都具有线性种姓发育途径。我们的研究结果表明,Dsx结构和表达模式的多样化可能促进了白蚁种系内的生态多样化,例如种性发育途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolution of the sex-determination gene Doublesex within the termite lineage

The molecular mechanism of sex determination has long been considered conserved in insects. However, recent studies of hemimetabolous insects have challenged this notion. One notable example is termites. In Reticulitermes speratus, a homolog of sex determination gene, Doublesex (RsDsx), exhibits characteristics that are distinct from those of other insects, including sister-group cockroaches. It comprises a single exon, contains only doublesex/mab-3 DNA-binding domain (DM) but lacks a conserved oligomerization domain (OD), and exhibits transcriptional activity only in males. To investigate whether these characteristics are widespread within the termite lineage, we identified Dsx homologs in three different families. The absence of the conserved OD sequences was observed in all termite species examined, whereas the number of exons and expression patterns between sexes varied among families. Particularly, distinctive differences in Dsx were found in species from the Archotermopsidae and Kalotermitidae, both of which have a linear caste developmental pathway. Our findings indicate that diversification of Dsx structure and expression patterns may have contributed to ecological diversification, such as caste developmental pathways, within the termite lineage.

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来源期刊
CiteScore
5.10
自引率
3.30%
发文量
69
审稿时长
33 days
期刊介绍: Comparative Biochemistry & Physiology (CBP) publishes papers in comparative, environmental and evolutionary physiology. Part D: Genomics and Proteomics (CBPD), focuses on “omics” approaches to physiology, including comparative and functional genomics, metagenomics, transcriptomics, proteomics, metabolomics, and lipidomics. Most studies employ “omics” and/or system biology to test specific hypotheses about molecular and biochemical mechanisms underlying physiological responses to the environment. We encourage papers that address fundamental questions in comparative physiology and biochemistry rather than studies with a focus that is purely technical, methodological or descriptive in nature.
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