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一项关于母本原核在果蝇中沃尔巴克氏体诱导的细胞质不亲和作用的基因测试。

A genetic test of the role of the maternal pronucleus in Wolbachia-induced cytoplasmic incompatibility in Drosophila melanogaster.

作者信息

Ferree Patrick M, Sullivan William

机构信息

Department of Molecular, Cell and Developmental Biology, University of California, Santa Cruz, California 95064, USA.

出版信息

Genetics. 2006 Jun;173(2):839-47. doi: 10.1534/genetics.105.053272. Epub 2006 Apr 19.

Abstract

Cytoplasmic incompatibility (CI) is a reproductive sterility found in arthropods that is caused by the endoparasitic bacteria Wolbachia. In CI, host progeny fail to develop during early embryogenesis if Wolbachia-infected males fertilize uninfected females. It is widely accepted that this lethality is caused by some unknown Wolbachia-induced modification of the paternal nuclear material in the host testes. However, the direct means by which this modification leads to early embryonic death are currently unresolved. Results from previous studies suggested that CI lethality occurs as a result of asynchrony in cell cycle timing between the paternal and maternal pronuclei. This hypothesis can be tested experimentally by the prediction that the Wolbachia-modified paternal pronucleus should support androgenetic development (i.e., from the paternal pronucleus only). Using specific mutations in Drosophila melanogaster that produce androgenetic progeny, we demonstrate that the Wolbachia-induced modification inhibits this type of development. This result suggests that CI occurs independently of the maternal pronucleus and argues against pronuclear asynchrony as the primary cause of CI lethality. We propose that CI occurs instead as the result of either a developmentally incompetent paternal pronucleus or asynchrony between the paternal pronucleus and the cell cycle of the egg cytoplasm.

摘要

细胞质不亲和性(CI)是在节肢动物中发现的一种生殖不育现象,由内寄生细菌沃尔巴克氏体引起。在细胞质不亲和性中,如果感染沃尔巴克氏体的雄性使未感染的雌性受精,宿主后代在胚胎发育早期就无法发育。人们普遍认为,这种致死性是由沃尔巴克氏体在宿主睾丸中对父本核物质进行的某种未知修饰所致。然而,这种修饰导致早期胚胎死亡的直接机制目前尚未明确。先前研究的结果表明,细胞质不亲和性致死是由于父本原核和母本原核之间细胞周期时间不同步所致。这一假设可以通过以下预测进行实验验证:经沃尔巴克氏体修饰的父本原核应支持孤雄生殖发育(即仅来自父本原核)。利用果蝇中产生孤雄生殖后代的特定突变,我们证明沃尔巴克氏体诱导的修饰会抑制这种发育类型。这一结果表明,细胞质不亲和性的发生独立于母本原核,并且反对原核不同步是细胞质不亲和性致死的主要原因这一观点。我们提出,细胞质不亲和性的发生是由于发育无能的父本原核,或者是父本原核与卵细胞细胞质细胞周期之间的不同步所致。

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