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在蜜蜂(Apis mellifera)卵母细胞中 RNA 的定位揭示了关于 RNA 定位机制进化的见解。

RNA localization in the honeybee (Apis mellifera) oocyte reveals insights about the evolution of RNA localization mechanisms.

机构信息

Laboratory for Evolution and Development, Genetics Otago and Gravida, The National Centre for Growth and Development, Department of Biochemistry, University of Otago, PO Box 56, Dunedin 9054, New Zealand.

出版信息

Dev Biol. 2013 Mar 15;375(2):193-201. doi: 10.1016/j.ydbio.2013.01.001. Epub 2013 Jan 10.

Abstract

Subcellular localization of RNAs is a critical biological process for generation of cellular asymmetries for many cell types and a critical step in axis determination during the early development of animals. We have identified transcripts localized to the anterior and posterior of honeybee oocyte using laser capture microscopy and microarray analysis. Analysis of orthologous transcripts in Drosophila indicates that many do not show a conserved pattern of localization. By microinjecting fluorescently labeled honeybee transcripts into Drosophila egg chambers we show that these RNAs become localized in a similar manner to their localization in honeybee oocytes, indicating conservation of the localization machinery. Thus while the mechanisms for localizing RNA are conserved, the complement of localized RNAs are not. We propose that this complement of localized RNAs may change relatively rapidly through the loss or evolution of signal sequences detected by the conserved localization machinery, and show this has occurred in one transcript that is localized in a novel way in the honeybee. Our proposal, that the acquisition of novel RNA localization is relatively easy to evolve, has implications for the evolution of symmetry breaking mechanisms that trigger axis formation and development in animal embryos.

摘要

RNA 的亚细胞定位是许多细胞类型产生细胞不对称性的关键生物学过程,也是动物早期发育过程中轴确定的关键步骤。我们使用激光捕获显微镜和微阵列分析鉴定了定位于蜜蜂卵母细胞前后的转录本。在果蝇中分析同源转录本表明,许多转录本并没有表现出保守的定位模式。通过将荧光标记的蜜蜂转录本微注射到果蝇卵囊中,我们发现这些 RNA 以类似于在蜜蜂卵母细胞中的定位方式进行定位,表明定位机制的保守性。因此,尽管定位 RNA 的机制是保守的,但定位的 RNA 种类并不相同。我们提出,这种定位 RNA 的种类可能会通过保守的定位机制检测到的信号序列的丢失或进化而相对较快地发生变化,并且在一种以新方式在蜜蜂中定位的转录本中已经发生了这种变化。我们的假设是,获得新的 RNA 定位相对容易进化,这对触发动物胚胎中轴形成和发育的对称破缺机制的进化具有重要意义。

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