Biology Centre of the Czech Academy of Sciences, Institute of Entomology, 370 05, České Budějovice, Czech Republic; Faculty of Science, University of South Bohemia, 370 05, České Budějovice, Czech Republic.
Biology Centre of the Czech Academy of Sciences, Institute of Entomology, 370 05, České Budějovice, Czech Republic.
Insect Biochem Mol Biol. 2023 Sep;160:103991. doi: 10.1016/j.ibmb.2023.103991. Epub 2023 Aug 1.
The molecular mechanisms of sex determination in moths and butterflies (Lepidoptera) with female heterogamety (WZ/ZZ) are poorly understood, except in the silkworm Bombyx mori. However, the Masculinizer (Masc) gene that controls male development and dosage compensation in B. mori, appears to be conserved in Lepidoptera, as its masculinizing function was recently confirmed in several moth species. In this work, we investigated the role of the Masc gene in sex determination of the codling moth Cydia pomonella (Tortricidae), a globally important pest of pome fruits and walnuts. The gene structure of the C. pomonella Masc ortholog, CpMasc, is similar to B. mori Masc. However, unlike B. mori, we identified 14 splice variants of CpMasc in the available transcriptomes. Subsequent screening for sex specificity and genetic variation using publicly available data and RT-PCR revealed three male-specific splice variants. Then qPCR analysis of these variants revealed sex-biased expression showing a peak only in early male embryos. Knockdown of CpMasc by RNAi during early embryogenesis resulted in a shift from male-to female-specific splicing of the C. pomonella doublesex (Cpdsx) gene, its downstream effector, in ZZ embryos, leading to a strongly female-biased sex ratio. These data clearly demonstrate that CpMasc functions as a masculinizing gene in the sex-determining cascade of C. pomonella. Our study also showed that CpMasc transcripts are provided maternally, as they were detected in unfertilized eggs after oviposition and in mature eggs dissected from virgin females. This finding is unique, as maternal provision of mRNA has rarely been studied in Lepidoptera.
性决定的分子机制在具有雌性异配性(WZ/ZZ)的蛾和蝴蝶(鳞翅目)中了解甚少,除了家蚕(Bombyx mori)。然而,控制家蚕雄性发育和剂量补偿的雄性化因子(Masc)基因似乎在鳞翅目昆虫中是保守的,因为它的雄性化功能最近在几种蛾类中得到了证实。在这项工作中,我们研究了雄性化因子基因在苹果蠹蛾(Cydia pomonella)(卷蛾科)性别决定中的作用,苹果蠹蛾是一种全球性重要的苹果和核桃害虫。Cydia pomonella Masc 同源基因 CpMasc 的基因结构与家蚕 Masc 相似。然而,与家蚕不同的是,我们在现有的转录组中鉴定出了 14 种 CpMasc 的剪接变体。随后,使用公开可用的数据和 RT-PCR 进行性别特异性和遗传变异筛选,发现了三种雄性特异性剪接变体。然后,对这些变体进行 qPCR 分析显示,性别偏倚表达仅在早期雄性胚胎中出现峰值。在早期胚胎发生期间,通过 RNAi 敲低 CpMasc 导致 Cydia pomonella 双性(Cpdsx)基因及其下游效应物在 ZZ 胚胎中的性别特异性剪接从雄性转变为雌性,导致强烈的雌性偏倚性别比例。这些数据清楚地表明,CpMasc 在家蚕性别决定级联中作为雄性化基因发挥作用。我们的研究还表明,CpMasc 转录物是由母体提供的,因为它们在产卵后未受精的卵中以及从处女雌蝇中分离的成熟卵中被检测到。这一发现是独特的,因为在鳞翅目昆虫中很少研究母体提供 mRNA。