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RNA干扰诱导的表型表明化学感应蛋白CSP5在蜜蜂(西方蜜蜂)胚胎体表发育中具有新作用。

RNAi-induced phenotypes suggest a novel role for a chemosensory protein CSP5 in the development of embryonic integument in the honeybee (Apis mellifera).

作者信息

Maleszka J, Forêt S, Saint R, Maleszka R

机构信息

ARC Centre for the Molecular Genetics of Development and Visual Sciences, Research School of Biological Sciences, The Australian National University, Canberra, ACT, 0200, Australia.

出版信息

Dev Genes Evol. 2007 Mar;217(3):189-96. doi: 10.1007/s00427-006-0127-y. Epub 2007 Jan 10.

Abstract

Small chemosensory proteins (CSPs) belong to a conserved, but poorly understood, protein family found in insects and other arthropods. They exhibit both broad and restricted expression patterns during development. In this paper, we used a combination of genome annotation, transcriptional profiling and RNA interference to unravel the functional significance of a honeybee gene (csp5) belonging to the CSP family. We show that csp5 expression resembles the maternal-zygotic pattern that is characterized by the initiation of transcription in the ovary and the replacement of maternal mRNA with embryonic mRNA. Blocking the embryonic expression of csp5 with double-stranded RNA causes abnormalities in all body parts where csp5 is highly expressed. The treated embryos show a "diffuse", often grotesque morphology, and the head skeleton appears to be severely affected. They are 'unable-to-hatch' and cannot progress to the larval stages. Our findings reveal a novel, essential role for this gene family and suggest that csp5 (unable-to-hatch) is an ectodermal gene involved in embryonic integument formation. Our study confirms the utility of an RNAi approach to functional characterization of novel developmental genes uncovered by the honeybee genome project and provides a starting point for further studies on embryonic integument formation in this insect.

摘要

小化学感受蛋白(CSPs)属于一个保守但了解甚少的蛋白家族,存在于昆虫和其他节肢动物中。它们在发育过程中表现出广泛和受限的表达模式。在本文中,我们结合基因组注释、转录谱分析和RNA干扰来揭示蜜蜂中一个属于CSP家族的基因(csp5)的功能意义。我们发现,csp5的表达类似于母源 - 合子模式,其特征是在卵巢中开始转录,并以胚胎mRNA取代母源mRNA。用双链RNA阻断csp5的胚胎表达会导致csp5高表达的所有身体部位出现异常。处理后的胚胎呈现出“弥漫性”、通常很怪异的形态,头部骨骼似乎受到严重影响。它们“无法孵化”,无法进入幼虫阶段。我们的研究揭示了这个基因家族的一个新的重要作用,并表明csp5(无法孵化)是一个参与胚胎体表形成的外胚层基因。我们的研究证实了RNA干扰方法在蜜蜂基因组计划发现的新发育基因功能表征中的实用性,并为进一步研究这种昆虫的胚胎体表形成提供了一个起点。

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