The Drosophila gonads: models for stem cell proliferation, self-renewal, and differentiation

J. Marca, W. G. Somers
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引用次数: 3

Abstract

Abstract The male and female gonads of Drosophila melanogaster have developed into powerful model systems for both the study of stem cell behaviours, and for understanding how stem cell misregulation can lead to cancers. Using these systems, one is able to observe and manipulate the resident stem cell populations in vivo with a great deal of licence. The tractability of the testis and ovary also allow researchers to explore a range of cellular mechanisms, such as proliferation and polarity, as well as the influence exerted by the local environment through a host of highly-conserved signalling pathways. Importantly, many of the cellular behaviours and processes studied in the Drosophila testis and ovary are known to be disrupted, or otherwise misregulated, in human tumourigenic cells. Here, we review the mechanisms relating to stem cell behaviour, though we acknowledge there are many other fascinating aspects of gametogenesis, including the invasive behaviour of migratory border cells in the Drosophila ovary that, though relevant to the study of tumourigenesis, will unfortunately not be covered.
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果蝇性腺:干细胞增殖、自我更新和分化的模型
黑腹果蝇(Drosophila melanogaster)的雄性和雌性性腺已经发展成为研究干细胞行为和理解干细胞失调如何导致癌症的强大模型系统。利用这些系统,人们能够在很大程度上观察和操纵体内的驻留干细胞群。睾丸和卵巢的易感性也使研究人员能够探索一系列细胞机制,如增殖和极性,以及当地环境通过一系列高度保守的信号通路施加的影响。重要的是,在果蝇睾丸和卵巢中研究的许多细胞行为和过程已知在人类致瘤细胞中被破坏或以其他方式被错误调节。在这里,我们回顾了与干细胞行为相关的机制,尽管我们承认配子体发生还有许多其他有趣的方面,包括果蝇卵巢中迁移边界细胞的侵袭行为,尽管与肿瘤发生的研究有关,但不幸的是不会被涵盖。
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AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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