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对鱼腥藻PCC 7120菌株中四个基因的上位性分析表明,PatA和PatS在异形胞模式形成中存在联系。

Epistasis analysis of four genes from Anabaena sp. strain PCC 7120 suggests a connection between PatA and PatS in heterocyst pattern formation.

作者信息

Orozco Christine C, Risser Douglas D, Callahan Sean M

机构信息

University of Hawaii, Department of Microbiology, 2538 McCarthy Mall, 207 Snyder Hall, Honolulu, HI 96822, USA.

出版信息

J Bacteriol. 2006 Mar;188(5):1808-16. doi: 10.1128/JB.188.5.1808-1816.2006.

Abstract

The hetR, patA, hetN, and patS genes are part of a regulatory network that regulates the differentiation and patterning of heterocysts in the filamentous cyanobacterium Anabaena sp. strain PCC 7120. In this report, the epistatic interactions of mutant alleles of these four genes have been used to refine our understanding of their relationships to one another. The hetR gene was necessary for differentiation in genetic backgrounds that normally give rise to excessive differentiation, supporting its role as the master regulator of differentiation and indicating that HetR directly regulates factors in addition to hetR and patS genes that regulate differentiation. A functional patS gene was necessary for the delayed multiple-contiguous-heterocyst phenotype observed in hetN mutants as well as for the relative lack of intercalary heterocysts in patA mutants. Epistasis results with mutant alleles of these three genes suggested that PatA attenuates the negative effects of both PatS and HetN on differentiation and promotes differentiation independent of its antagonistic effects on PatS and HetN activity. Cooverxpression of patS and hetR in a synthetic operon indicated that patS acts at a point downstream of hetR transcription in the regulatory network controlling differentiation. A model for the regulation of differentiation that is consistent with these and previous findings is presented.

摘要

hetR、patA、hetN和patS基因是一个调控网络的组成部分,该网络调控丝状蓝细菌鱼腥藻PCC 7120菌株中异形胞的分化和模式形成。在本报告中,这四个基因的突变等位基因的上位性相互作用被用于深化我们对它们相互关系的理解。hetR基因对于在通常会导致过度分化的遗传背景中的分化是必需的,这支持了它作为分化主调控因子的作用,并表明HetR除了直接调控hetR和patS基因外,还直接调控其他调控分化的因子。功能性patS基因对于在hetN突变体中观察到的延迟的多个连续异形胞表型以及patA突变体中居间异形胞相对缺乏是必需的。这三个基因的突变等位基因的上位性结果表明,PatA减弱了PatS和HetN对分化的负面影响,并独立于其对PatS和HetN活性的拮抗作用促进分化。patS和hetR在一个合成操纵子中的共表达表明,patS在调控分化的网络中在hetR转录的下游发挥作用。本文提出了一个与这些及先前发现一致的分化调控模型。

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本文引用的文献

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