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菊欧文氏菌3937的系统毒性需要一个功能性铁同化系统。

Systemic virulence of Erwinia chrysanthemi 3937 requires a functional iron assimilation system.

作者信息

Enard C, Diolez A, Expert D

机构信息

Laboratoire de Pathologie Végétale, Institut National Agronomique Paris-Grignon, France.

出版信息

J Bacteriol. 1988 Jun;170(6):2419-26. doi: 10.1128/jb.170.6.2419-2426.1988.

Abstract

In Erwinia chrysanthemi, conditions of iron starvation initiate production of a catechol-type siderophore and enhance production of three outer membrane polypeptides. Twenty-two mutants affected in the different stages of this iron assimilation system were isolated by mini-Mu insertion mutagenesis. All of them failed to induce systemic soft rot on axenically grown Saintpaulia plants. From the siderophore auxotrophs and the iron uptake mutants, clones having recovered the missing function(s) were isolated by using the in vivo cloning vector pULB113 (RP4::mini-Mu). An R-prime plasmid containing a ca. 35.5-kilobase-pair DNA insert was identified. Restoration of the iron functions restored partially, if not completely, the virulence of the parental strain.

摘要

在菊欧文氏菌中,缺铁条件会引发儿茶酚型铁载体的产生,并增强三种外膜多肽的产生。通过mini-Mu插入诱变分离出22个在该铁同化系统不同阶段受影响的突变体。它们在无菌培养的非洲紫罗兰植株上均不能诱导系统性软腐病。从铁载体营养缺陷型和铁吸收突变体中,利用体内克隆载体pULB113(RP4::mini-Mu)分离出恢复了缺失功能的克隆。鉴定出一个含有约35.5千碱基对DNA插入片段的R-prime质粒。铁功能的恢复即使没有完全恢复亲本菌株的毒力,也部分恢复了其毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4575/211150/1c27807ed8ad/jbacter00184-0013-a.jpg

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