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在胡蜂 Nasonia 中纳米的新定位和功能模式

Novel modes of localization and function of nanos in the wasp Nasonia.

机构信息

Center for Developmental Genetics, Department of Biology, New York University, New York, NY 10003, USA.

出版信息

Development. 2010 Nov;137(22):3813-21. doi: 10.1242/dev.054213. Epub 2010 Oct 7.

Abstract

Abdominal patterning in Drosophila requires the function of nanos (nos) to prevent translation of hunchback (hb) mRNA in the posterior of the embryo. nos function is restricted to the posterior by the translational repression of mRNA that is not incorporated into the posteriorly localized germ plasm during oogenesis. The wasp Nasonia vitripennis (Nv) undergoes a long germ mode of development very similar to Drosophila, although the molecular patterning mechanisms employed in these two organisms have diverged significantly, reflecting the independent evolution of this mode of development. Here, we report that although Nv nanos (Nv-nos) has a conserved function in embryonic patterning through translational repression of hb, the timing and mechanisms of this repression are significantly delayed in the wasp compared with the fly. This delay in Nv-nos function appears to be related to the dynamic behavior of the germ plasm in Nasonia, as well as to the maternal provision of Nv-Hb protein during oogenesis. Unlike in flies, there appears to be two functional populations of Nv-nos mRNA: one that is concentrated in the oosome and is taken up into the pole cells before evidence of Nv-hb repression is observed; another that forms a gradient at the posterior and plays a role in Nv-hb translational repression. Altogether, our results show that, although the embryonic patterning function of nos orthologs is broadly conserved, the mechanisms employed to achieve this function are distinct.

摘要

果蝇的腹部模式形成需要 nos(nanos)的功能,以防止 hb(hunchback)mRNA 在胚胎后部的翻译。nos 功能被限制在后部,这是由于在卵子发生过程中,mRNA 没有被整合到后部定位的生殖质中,从而导致其翻译被抑制。黄蜂 Nasonia vitripennis(Nv)经历了与果蝇非常相似的长胚模式发育,尽管这两种生物中使用的分子模式形成机制已经显著分化,反映了这种发育模式的独立进化。在这里,我们报告尽管 Nv-nos(Nv-nanos)通过 hb 的翻译抑制在胚胎模式形成中具有保守功能,但与果蝇相比,这种抑制的时间和机制在黄蜂中显著延迟。Nv-nos 功能的这种延迟似乎与 Nasonia 中生殖质的动态行为以及卵子发生过程中母体提供的 Nv-Hb 蛋白有关。与果蝇不同的是,似乎存在两种功能性的 Nv-nos mRNA 群体:一种集中在卵球体中,并在观察到 Nv-hb 抑制的证据之前被摄取到极细胞中;另一种在后部形成梯度,并在 Nv-hb 翻译抑制中发挥作用。总之,我们的结果表明,尽管 nos 同源物的胚胎模式形成功能广泛保守,但实现这一功能的机制是不同的。

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