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对菊欧文氏菌EC16的pelE::uidA、pelL::uidA和hrpN::uidA突变体的分析揭示了Hrp III型分泌系统的菌株特异性非典型调控。

Analysis of Erwinia chrysanthemi EC16 pelE::uidA, pelL::uidA, and hrpN::uidA mutants reveals strain-specific atypical regulation of the Hrp type III secretion system.

作者信息

Ham Jong Hyun, Cui Yaya, Alfano James R, Rodríguez-Palenzuela Pablo, Rojas Clemencia M, Chatterjee Arun K, Collmer Alan

机构信息

Department of Plant Pathology, Cornell University, Ithaca, NY 14853-4203, USA.

出版信息

Mol Plant Microbe Interact. 2004 Feb;17(2):184-94. doi: 10.1094/MPMI.2004.17.2.184.

Abstract

The plant pathogen Erwinia chrysanthemi produces a variety of factors that have been implicated in its ability to cause soft-rot diseases in various hosts. These include HrpN, a harpin secreted by the Hrp type III secretion system; PelE, one of several major pectate lyase isozymes secreted by the type II system; and PelL, one of several secondary Pels secreted by the type II system. We investigated these factors in E. chrysanthemi EC16 with respect to the effects of medium composition and growth phase on gene expression (as determined with uidA fusions and Northern analyses) and effects on virulence. pelE was induced by polygalacturonic acid, but pelL was not, and hrpN was expressed unexpectedly in nutrient-rich King's medium B and in minimal salts medium at neutral pH. In contrast, the effect of medium composition on hrp expression in E. chrysanthemi CUCPB1237 and 3937 was like that of many other phytopathogenic bacteria in being repressed in complex media and induced in acidic pH minimal medium. Northern blot analysis of hrpN and hrpL expression by the wild-type and hrpL::omegaCmr and hrpS::omegaCmr mutants revealed that hrpN expression was dependent on the HrpL alternative sigma factor, whose expression, in turn, was dependent on the HrpS putative sigma54 enhancer binding protein. The expression of pelE and hrpN increased strongly in late logarithmic growth phase. To test the possible role of quorum sensing in this expression pattern, the expI/expR locus was cloned in Escherichia coli on the basis of its ability to direct production of acyl-homoserine lactone and then used to construct expI mutations in pelE::uidA, pelL::uidA, and hrpN::uidA Erwinia chrysanthemi strains. Mutation of expI had no apparent effect on the growth-phase-dependent expression of hrpN and pelE, or on the virulence of E. chrysanthemi in witloof chicory leaves. Overexpression of hrpN in E. chrysanthemi resulted in approximately 50% reduction of lesion size on chicory leaves without an effect on infection initiation.

摘要

植物病原菌菊欧文氏菌产生多种与它在不同寄主上引发软腐病能力相关的因子。这些因子包括HrpN,一种由Hrp III型分泌系统分泌的激发子;PelE,由II型系统分泌的几种主要果胶裂解酶同工酶之一;以及PelL,由II型系统分泌的几种次要果胶裂解酶之一。我们研究了菊欧文氏菌EC16中的这些因子,涉及培养基成分和生长阶段对基因表达(通过uidA融合和Northern分析确定)的影响以及对毒力的影响。pelE由聚半乳糖醛酸诱导,但pelL不受其诱导,并且hrpN意外地在营养丰富的King's培养基B和中性pH的基本盐培养基中表达。相比之下,培养基成分对菊欧文氏菌CUCPB1237和3937中hrp表达的影响与许多其他植物病原菌相似,即在复杂培养基中受到抑制,在酸性pH基本培养基中被诱导。对野生型以及hrpL::omegaCmr和hrpS::omegaCmr突变体的hrpN和hrpL表达进行Northern印迹分析表明,hrpN的表达依赖于HrpL替代sigma因子,而HrpL的表达又依赖于假定的sigma54增强子结合蛋白HrpS。pelE和hrpN的表达在对数生长后期强烈增加。为了测试群体感应在这种表达模式中可能的作用,基于其指导酰基高丝氨酸内酯产生的能力,将expI/expR基因座克隆到大肠杆菌中,然后用于构建pelE::uidA、pelL::uidA和hrpN::uidA菊欧文氏菌菌株中的expI突变体。expI的突变对hrpN和pelE的生长阶段依赖性表达以及菊欧文氏菌在菊苣叶片中的毒力没有明显影响。在菊欧文氏菌中过表达hrpN导致菊苣叶片上病斑大小减少约50%(对感染起始没有影响)。

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