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Unique sex determination system in the silkworm Bombyx mori: current status and beyond

机译:家蚕中独特的性别决定系统:当前及以后的状况

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摘要

The silkworm Bombyx mori has been used for silk production for over 5,000 years. In addition to its contribution to sericulture, B. mori has played an important role in the field of genetics. Classical genetic studies revealed that a gene(s) with a strong feminizing activity is located on the W chromosome, but this W-linked feminizing gene, called Feminizer (Fem), had not been cloned despite more than 80 years of study. In 2014, we discovered that Fem is a precursor of a single W chromosome-derived PIWI-interacting RNA (piRNA). Fem-derived piRNA binds to PIWI protein, and this complex then cleaves the mRNA of the Z-linked Masculinizer (Masc) gene, which encodes a protein required for both masculinization and dosage compensation. These findings showed that the piRNA-mediated interaction between the two sex chromosomes is the primary signal for the sex determination cascade in B. mori. In this review, we summarize the history, current status, and perspective of studies on sex determination and related topics in B. mori.
机译:桑蚕(Bombyx mori)已用于生产丝绸超过5,000年。除对蚕桑业的贡献外,桑蚕杆菌在遗传学领域也发挥了重要作用。古典遗传学研究表明,具有强大女性化活性的基因位于W染色体上,但是经过80多年的研究,这种与W连锁的女性化基因称为Feminizer(Fem),尚未被克隆。 2014年,我们发现Fem是单个W染色体衍生的PIWI相互作用RNA(piRNA)的前体。 Fem衍生的piRNA与PIWI蛋白结合,然后该复合物切割Z-link Masculinizer(Masc)基因的mRNA,该基因编码男性化和剂量补偿所需的蛋白质。这些发现表明,两个性染色体之间的piRNA介导的相互作用是家蚕中性决定级联的主要信号。在这篇综述中,我们总结了桑蚕性别决定和相关主题研究的历史,现状和观点。

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