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双性基因调控寄生蜂在不同发育时间窗口的雄性特化分化。

Doublesex regulates male-specific differentiation during distinct developmental time windows in a parasitoid wasp.

机构信息

Wageningen University, Laboratory of Entomology, Wageningen, the Netherlands.

Evolutionary Genetics, Development and Behaviour, Groningen Institute for Evolutionary Life Sciences, University of Groningen, Groningen, the Netherlands.

出版信息

Insect Biochem Mol Biol. 2022 Mar;142:103724. doi: 10.1016/j.ibmb.2022.103724. Epub 2022 Jan 29.

Abstract

Sexually dimorphic traits in insects are subject to sexual selection, but our knowledge of the underlying molecular mechanisms is still scarce. Here we investigate how the highly conserved gene, Doublesex (Dsx), is involved in shaping sexual dimorphism in the model parasitoid wasp Nasonia vitripennis (Hymenoptera: Pteromalidae). First, we present the revised Dsx gene structure including an alternative transcription start, and two additional male NvDsx transcript isoforms. We show sex-specific NvDsx expression and splicing throughout development, and demonstrate that transient NvDsx silencing in different male developmental stages shifts two sexually dimorphic traits from male to female morphology, with the effect being dependent on the timing of silencing. In addition, we determined the effect of NvDsx on the development of reproductive organs. Transient silencing of NvDsx in early male larvae affects the growth and differentiation of the internal and external reproductive tissues. We did not observe phenotypic changes in females after NvDsx silencing. Our results indicate that male NvDsx is required to suppress female-specific traits and/or to promote male-specific traits during distinct developmental windows. This provides new insights into the regulatory activity of Dsx during male wasp development in the Hymenoptera.

摘要

昆虫的性别二态性特征受性选择的影响,但我们对其潜在的分子机制仍知之甚少。在这里,我们研究了高度保守的基因 Doublesex(Dsx)如何参与塑造模式寄生蜂 Nasonia vitripennis(膜翅目:Pteromalidae)的性别二态性。首先,我们展示了修订后的 Dsx 基因结构,包括一个替代的转录起始点和两个额外的雄性 NvDsx 转录本异构体。我们表明 NvDsx 在整个发育过程中表现出性别特异性表达和剪接,并证明在不同的雄性发育阶段短暂沉默 NvDsx 会将两种性别二态性特征从雄性形态转变为雌性形态,其效果取决于沉默的时间。此外,我们确定了 NvDsx 对生殖器官发育的影响。在早期雄性幼虫中短暂沉默 NvDsx 会影响内部和外部生殖组织的生长和分化。我们在雌性中没有观察到 NvDsx 沉默后的表型变化。我们的结果表明,雄性 NvDsx 是在不同的发育窗口中抑制雌性特异性特征和/或促进雄性特异性特征所必需的。这为 Dsx 在膜翅目雄性黄蜂发育过程中的调控活性提供了新的见解。

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