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疟蚊斯氏按蚊中piRNA通路基因的表达

piRNA pathway gene expression in the malaria vector mosquito Anopheles stephensi.

作者信息

Macias V, Coleman J, Bonizzoni M, James A A

机构信息

Department of Molecular Biology and Biochemistry, University of California, Irvine, CA, USA.

出版信息

Insect Mol Biol. 2014 Oct;23(5):579-86. doi: 10.1111/imb.12106. Epub 2014 Jun 19.

Abstract

The ability of transposons to mobilize to new places in a genome enables them to introgress rapidly into populations. The piRNA pathway has been characterized recently in the germ line of the fruit fly, Drosophila melanogaster, and is responsible for downregulating transposon mobility. Transposons have been used as tools in mosquitoes to genetically transform a number of species including Anopheles stephensi, a vector of human malaria. These mobile genetic elements also have been proposed as tools to drive antipathogen effector genes into wild mosquito populations to replace pathogen-susceptible insects with those engineered genetically to be resistant to or unable to transmit a pathogen. The piRNA pathway may affect the performance of such proposed genetic engineering strategies. In the present study, we identify and describe the An. stephensi orthologues of the major genes in the piRNA pathway, Ago3, Aubergine (Aub) and Piwi. Consistent with a role in protection from transposon movement, these three genes are expressed constitutively in the germ-line cells of ovaries and induced further after a blood meal.

摘要

转座子移动到基因组新位置的能力使其能够迅速渗入种群。piRNA 途径最近在果蝇黑腹果蝇的生殖系中得到了表征,负责下调转座子的移动性。转座子已被用作蚊子中的工具,用于对包括斯氏按蚊(一种人类疟疾的传播媒介)在内的多种物种进行基因改造。这些可移动遗传元件也被提议作为工具,将抗病原体效应基因导入野生蚊子种群,以用经过基因工程改造的抗病原体或无法传播病原体的昆虫取代易感染病原体的昆虫。piRNA 途径可能会影响此类提议的基因工程策略的效果。在本研究中,我们鉴定并描述了 piRNA 途径中主要基因(Ago3、茄子蛋白(Aub)和 Piwi)的斯氏按蚊直系同源物。与保护免受转座子移动的作用一致,这三个基因在卵巢的生殖系细胞中组成性表达,并在吸血后进一步诱导表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7124/4265285/ff7b4950a547/imb0023-0579-f1.jpg

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