Transgenic and knockout analyses of Masculinizer and doublesex illuminated the unique functions of doublesex in germ cell sexual development of the silkworm, Bombyx mori.

Q2 Biochemistry, Genetics and Molecular Biology
Tomohisa Yuzawa, Misato Matsuoka, Megumi Sumitani, Fugaku Aoki, Hideki Sezutsu, Masataka G Suzuki
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引用次数: 1

Abstract

Background: Masculinizer (Masc) plays a pivotal role in male sex determination in the silkworm, Bombyx mori. Masc is required for male-specific splicing of B. mori doublesex (Bmdsx) transcripts. The male isoform of Bmdsx (BmdsxM) induces male differentiation in somatic cells, while females express the female isoform of Bmdsx (BmdsxF), which promotes female differentiation in somatic cells. Our previous findings suggest that Masc could direct the differentiation of genetically female (ZW) germ cells into sperms. However, it remains unclear whether Masc directly induces spermatogenesis or if it promotes male differentiation in germ cells indirectly by inducing the expression of BmdsxM.

Results: In this study, we performed genetic analyses using the transgenic line that expressed Masc, as well as various Bmdsx knockout lines. We found that Masc-expressing females with a homozygous mutation in BmdsxM showed normal development in ovaries. The formation of testis-like tissues was abolished in these females. On the other hand, Masc-expressing females carrying a homozygous mutation in BmdsxF exhibited almost complete male-specific development in gonads and germ cells. These results suggest that BmdsxM has an ability to induce male development in germ cells as well as internal genital organs, while BmdsxF inhibits BmdsxM activity and represses male differentiation. To investigate whether MASC directly controls male-specific splicing of Bmdsx and identify RNAs that form complexes with MASC in testes, we performed RNA immunoprecipitation (RIP) using an anti-MASC antibody. We found that MASC formed a complex with AS1 lncRNA, which is a testis-specific factor involved in the male-specific splicing of Bmdsx pre-mRNA.

Conclusions: Taken together, our findings suggest that Masc induces male differentiation in germ cells by enhancing the production of BmdsxM. Physical interaction between MASC and AS1 lncRNA may be important for the BmdsxM expression in the testis. Unlike in the Drosophila dsx, BmdsxM was able to induce spermatogenesis in genetically female (ZW) germ cells. To the best of our knowledge, this is the first report that the role of dsx in germ cell sexual development is different between insect species.

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雄性化和双性基因的转基因和基因敲除分析阐明了双性基因在家蚕生殖细胞性发育中的独特功能。
背景:雄性化因子(Masc)在家蚕(Bombyx mori)雄性性别决定中起着关键作用。双性家蚕(Bmdsx)的雄性特异性剪接需要Masc。Bmdsx的雄性亚型(BmdsxM)在体细胞中诱导雄性分化,而雌性表达Bmdsx的雌性亚型(BmdsxF),在体细胞中促进雌性分化。我们之前的研究结果表明,Masc可以指导遗传雌性(ZW)生殖细胞向精子的分化。然而,目前尚不清楚Masc是直接诱导精子发生,还是通过诱导BmdsxM的表达间接促进生殖细胞中的雄性分化。结果:在本研究中,我们使用表达Masc的转基因系以及各种Bmdsx敲除系进行了遗传分析。我们发现,bmmdsxm纯合突变的表达masc的雌性卵巢发育正常。在这些雌性中,睾丸样组织的形成被取消了。另一方面,携带bmmdsxf纯合突变的表达masc的雌性在性腺和生殖细胞中表现出几乎完全的雄性特异性发育。这些结果表明,BmdsxM能够在生殖细胞和生殖器官中诱导男性发育,而BmdsxF抑制BmdsxM活性并抑制男性分化。为了研究MASC是否直接控制Bmdsx的男性特异性剪接,并鉴定睾丸中与MASC形成复合物的RNA,我们使用抗MASC抗体进行了RNA免疫沉淀(RIP)。我们发现MASC与AS1 lncRNA形成复合物,AS1 lncRNA是睾丸特异性因子,参与Bmdsx pre-mRNA的男性特异性剪接。结论:综上所述,我们的研究结果表明,Masc通过促进BmdsxM的产生来诱导生殖细胞的雄性分化。MASC和AS1 lncRNA之间的物理相互作用可能对睾丸中BmdsxM的表达很重要。与果蝇不同,BmdsxM能够在遗传雌性(ZW)生殖细胞中诱导精子发生。据我们所知,这是第一次报道dsx在生殖细胞性发育中的作用在昆虫物种之间是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Developmental Biology
BMC Developmental Biology 生物-发育生物学
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: BMC Developmental Biology is an open access, peer-reviewed journal that considers articles on the development, growth, differentiation and regeneration of multicellular organisms, including molecular, cellular, tissue, organ and whole organism research.
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