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首页> 外文期刊>PLoS Genetics >A conserved role of the duplicated Masculinizer gene in sex determination of the Mediterranean flour moth, Ephestia kuehniella
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A conserved role of the duplicated Masculinizer gene in sex determination of the Mediterranean flour moth, Ephestia kuehniella

机译:复制的缓和作用的作用<斜视=“是”>男性化剂在地中海面粉蛾的性别测定中的阳性>基因,<斜体切换=“是”> ephestia kuehniella

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Sex determination in the silkworm, Bombyx mori , is based on Feminizer ( Fem ), a W-linked Fem piRNA that triggers female development in WZ individuals, and the Z-linked Masculinizer ( Masc ), which initiates male development and dosage compensation in ZZ individuals. While Fem piRNA is missing in a close relative of B . mori , Masc determines sex in several representatives of distant lepidopteran lineages. We studied the molecular mechanisms of sex determination in the Mediterranean flour moth, Ephestia kuehniella (Pyralidae). We identified an E . kuehniella Masc ortholog, EkMasc , and its paralog resulting from a recent duplication, EkMascB . Both genes are located on the Z chromosome and encode a similar Masc protein that contains two conserved domains but has lost the conserved double zinc finger domain. We developed PCR-based genetic sexing and demonstrated a peak in the expression of EkMasc and EkMascB genes only in early male embryos. Simultaneous knock-down experiments of both EkMasc and EkMascB using RNAi during early embryogenesis led to a shift from male- to female-specific splicing of the E . kuehniella doublese x gene ( Ekdsx ), their downstream effector, in ZZ embryos and resulted in a strong female-biased sex-ratio. Our results thus confirmed the conserved role of EkMasc and/or EkMascB in masculinization. We suggest that the C-terminal proline-rich domain, we have identified in all functionally confirmed Masc proteins, in conjunction with the masculinizing domain, is important for transcriptional regulation of sex determination in Lepidoptera. The function of the Masc double zinc finger domain is still unknown, but appears to have been lost in E . kuehniella . Author summary The sex-determining cascade in the silkworm, Bombyx mori , differs greatly from those of other insects. In B . mori , female development is initiated by Fem piRNA expressed from the W chromosome during early embryogenesis. Fem piRNA silences Masculinizer ( Masc ) thereby blocking the male pathway resulting in female development. It is currently unknown whether this cascade is conserved across Lepidoptera. In the Mediterranean flour moth, Ephestia kuehniella , we identified an ortholog of Masc and discovered its functional duplication on the Z chromosome, which has not yet been found in any other lepidopteran species. We provide two lines of evidence that the EkMasc and/or EkMascB genes play an essential role in masculinization: (i) they show a peak of expression during early embryogenesis in ZZ but not in WZ embryos and (ii) their simultaneous silencing by RNAi results in female-specific splicing of the E . kuehniella doublesex gene ( Ekdsx ) in ZZ embryos and in a female-biased sex ratio. Our results suggest a conserved role of the duplicated Masc gene in sex determination of E . kuehniella .
机译:家蚕的性别测定,Bombyx Mori基于女性化(FEM),一种W表患者触发女性发育的W型FEM PiRNA,以及在ZZ中引发男性发育和剂量补偿个人。虽然Fem PiRNA缺少B的亲密关系。 Mori,Masc,在遥远的鳞翅目谱系的几个代表中确定性别。我们研究了地中海面粉蛾,ephestia Kuehniella(Pyralidae)中的性别测定的分子机制。我们确定了一个e。 Kuehniella Masc Ortholog,Ekmasc,及其近期副词由最近的重复,Ekmascb。两个基因位于Z染色体上,编码类似的麦克斯氏菌素,含有两个保守的域,但已经失去了保守的双锌指结构域。我们开发了基于PCR的遗传性,并且仅在早期雄性胚胎中表达了EkMASC和EKMASCB基因的表达峰。早期胚胎发生期间使用RNAi的EKMASC和EKMASCB的同时击倒实验导致了e的男性与女性特异性拼接的转变。 Kuehniella Doublese X基因(EKDSX),他们的下游效应,在ZZ胚胎中,导致具有强烈的女性偏置性别比率。因此,我们的结果证实了EKMASC和/或EKMASCB在男性化中的保守作用。我们建议富含C末端脯氨酸富含域,我们在所有功能确认的麦克斯蛋白中鉴定,与阳性化结构域同时,对于鳞翅目中的性别测定的转录调节是重要的。 MASC双锌手指域的功能仍然未知,但似乎丢失了e。 Kuehniella。作者摘要蚕板Bombyx Mori中的性别决定级联,与其他昆虫的不同之处很大。在b。 Mori,女性发育由早期胚胎发生期间从W染色体表达的FEM PiRNA开始。 FEM PiRNA沉默男性化剂(MASC)从而阻断了雄性途径,导致女性发育。目前还是未知这种级联是否在鳞片内保守。在地中海面粉飞蛾中,Ephestia Kuehniella,我们确定了纯麦士士的正直,发现了Z染色体上的功能重复,尚未在任何其他鳞翅目种类中发现。我们提供两条证据表明EKMASC和/或EKMASCB基因在男性化中发挥重要作用:(i)它们在ZZ中的早期胚胎发生过程中表现出一种表达的峰,但不是在WZ胚胎中和(ii)通过RNAi结果同时沉默在e的雌性特异性拼接中。 Kuehniella doublesex基因(Ekdsx)在ZZ胚胎中,以女性偏见的性别比例。我们的结果表明,重复的麦克斯基因基因在e的性别测定中的保守作用。 Kuehniella。

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