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A lophotrochozoan-specific nuclear hormone receptor is required for reproductive system development in the planarian

机译:沙眼动物生殖系统发育需要有光子沟藻特异性核激素受体

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摘要

Germ cells of sexually reproducing organisms receive an array of cues from somatic tissues that instruct developmental processes. Although the nature of these signals differs amongst organisms, the importance of germline-soma interactions is a common theme. Recently, peptide hormones from the nervous system have been shown to regulate germ cell development in the planarian Schmidtea mediterranea; thus, we sought to investigate a second class of hormones with a conserved role in reproduction, the lipophilic hormones. In order to study these signals, we identified a set of putative lipophilic hormone receptors, known as nuclear hormone receptors, and analyzed their functions in reproductive development. We found one gene, nhr-1, belonging to a small class of functionally uncharacterized lophotrochozoan-specific receptors, to be essential for the development of differentiated germ cells. Upon nhr-1 knockdown, germ cells in the testes and ovaries fail to mature, and remain as undifferentiated germline stem cells. Further analysis revealed that nhr-1 mRNA is expressed in the accessory reproductive organs and is required for their development, suggesting that this transcription factor functions cell non-autonomously in regulating germ cell development. Our studies identify a role for nuclear hormone receptors in planarian reproductive maturation and reinforce the significance of germline-soma interactions in sexual reproduction across metazoans. (C) 2014 Elsevier Inc. All rights reserved.
机译:有性生殖生物的生殖细胞从体细胞组织中获得一系列指示发育过程的线索。尽管这些信号的性质因生物而异,但种系-体间相互作用的重要性却是一个共同的主题。最近,来自神经系统的肽激素已显示出可调节涡虫Schmidtea mediterranea中生殖细胞的发育。因此,我们试图研究在生殖中具有保守作用的第二类激素,即亲脂激素。为了研究这些信号,我们鉴定了一组假定的亲脂激素受体(称为核激素受体),并分析了它们在生殖发育中的功能。我们发现一个基因,nhr-1,属于一小类功能上未表征的滋养体特异性受体,对于分化的生殖细胞的发育至关重要。敲低nhr-1后,睾丸和卵巢中的生殖细胞无法成熟,并保留为未分化的生殖干细胞。进一步的分析表明,nhr-1 mRNA在辅助生殖器官中表达,是其发育所必需的,这表明该转录因子在调节生殖细胞发育中具有非自治功能。我们的研究确定了核激素受体在涡虫生殖成熟中的作用,并增强了后生动物有性生殖中生殖系-体间相互作用的重要性。 (C)2014 Elsevier Inc.保留所有权利。

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