Development of sexual dimorphism in the Drosophila testis.

Spermatogenesis Pub Date : 2012-07-01 DOI:10.4161/spmg.21780
Cale Whitworth, Erin Jimenez, Mark Van Doren
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引用次数: 20

Abstract

The creation of sexual dimorphism in the gonads is essential for producing the male and female gametes required for sexual reproduction. Sexual development of the gonads involves both somatic cells and germ cells, which often undergo sex determination by different mechanisms. While many sex-specific characteristics evolve rapidly and are very different between animal species, gonad function and the formation of sperm and eggs appear more similar and may be more conserved. Consistent with this, the doublesex/mab3 Related Transcription factors (DMRTs) are important for gonad sexual dimorphism in a wide range of animals, including flies, worms and mammals. Here we explore how sexual dimorphism is regulated in the Drosophila gonad, focusing on recent discoveries relating to testis development. We will discuss how sex determination in both the germline and the soma are utilized to create a testis, including the role of the key somatic sex determination factor doublesex.

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果蝇睾丸两性异形的发育。
性腺两性异形的产生对于有性生殖所需的雄性和雌性配子的产生是必不可少的。性腺的性发育涉及体细胞和生殖细胞,它们通常通过不同的机制进行性别决定。虽然许多性别特征进化得很快,而且在动物物种之间差异很大,但性腺功能和精子和卵子的形成似乎更相似,可能更保守。与此一致的是,双性/mab3相关转录因子(DMRTs)在包括苍蝇、蠕虫和哺乳动物在内的许多动物的性腺两性二态性中都很重要。在这里,我们探讨了两性二态性是如何在果蝇性腺中被调节的,重点是最近与睾丸发育有关的发现。我们将讨论如何利用生殖系和体细胞中的性别决定来创造睾丸,包括关键的体细胞性别决定因素双性恋的作用。
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