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雄性家蚕双性蛋白在家蚕性别分化中的作用。

Role of the male BmDSX protein in the sexual differentiation of Bombyx mori.

作者信息

Suzuki Masataka G, Funaguma Shunsuke, Kanda Toshio, Tamura Toshiki, Shimada Toru

机构信息

Laboratory of Molecular Entomology and Baculovirology, The Institute of Physical and Chemical Research (RIKEN) 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Evol Dev. 2005 Jan-Feb;7(1):58-68. doi: 10.1111/j.1525-142X.2005.05007.x.

Abstract

The sex determination pathway is different between Drosophila melanogaster and Bombyx mori in the initial signal. Here we show evidence that the sex determination pathway in B. mori is similar to that of D. melanogaster at the level of the terminal regulator, doublesex (dsx), which is essential for the proper differentiation of the sexually dimorphic somatic features of D. melanogaster. In B. mori, a homolog of dsx (Bmdsx) is expressed in various tissues, and its primary transcript is alternatively spliced in males and females to yield sex-specific mRNAs that encode male-specific (BmDSXM) and female-specific (BmDSXF) polypeptides. In the studies reported here, transgenic silkworms carrying a construct with a Bmdsx male cDNA placed under the control of either an hsp70 promoter or a Bombyx actin3 promoter were generated by piggyBac-mediated germline transformation. Ectopic expression of the male cDNA in females resulted in abnormal differentiation of certain female-specific genital organs and caused partial male differentiation in female genitalia. Transgenic analysis also revealed that the expression of BmDSXM in females caused repression of the female-specifically expressed gene, the vitellogenin gene, and also resulted in activation of the pheromone-binding protein gene that is dominantly expressed in males. These results provide evidence that the role of BmDSXM includes the activation of some aspects of male differentiation as well as the repression of female differentiation. Taken together with our previous data on the function of BmDSXF, we can conclude that Bmdsx is a double-switch gene at the final step in the sex-determination cascade of B. mori.

摘要

在初始信号方面,黑腹果蝇和家蚕的性别决定途径有所不同。在此我们展示了证据,表明家蚕的性别决定途径在终端调节因子双性基因(dsx)水平上与黑腹果蝇相似,而双性基因对于黑腹果蝇性二态性体细胞特征的正常分化至关重要。在家蚕中,双性基因的同源物(Bmdsx)在各种组织中表达,其初级转录本在雄性和雌性中进行可变剪接,产生性别特异性的mRNA,这些mRNA编码雄性特异性(BmDSXM)和雌性特异性(BmDSXF)多肽。在本文报道的研究中,通过piggyBac介导的种系转化,产生了携带在hsp70启动子或家蚕肌动蛋白3启动子控制下的Bmdsx雄性cDNA构建体的转基因蚕。雌性中雄性cDNA的异位表达导致某些雌性特异性生殖器官的异常分化,并在雌性生殖器中引起部分雄性分化。转基因分析还表明,雌性中BmDSXM的表达导致雌性特异性表达基因卵黄原蛋白基因的抑制,并且还导致在雄性中主要表达的信息素结合蛋白基因的激活。这些结果提供了证据,表明BmDSXM的作用包括激活雄性分化的某些方面以及抑制雌性分化。结合我们之前关于BmDSXF功能的数据,我们可以得出结论,Bmdsx是家蚕性别决定级联反应最后一步的双开关基因。

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