Rincon-Enriquez Gabriel, Crété Patrice, Barras Frédéric, Py Béatrice
Université de la Méditerranée, Aix-Marseille II, Campus de Luminy 70 rte Léon Lachamp 13009 Marseille, France.
Mol Microbiol. 2008 Mar;67(6):1257-73. doi: 10.1111/j.1365-2958.2008.06118.x. Epub 2008 Feb 14.
The Erwinia chrysanthemi genome is predicted to encode three systems, Nif, Isc and Suf, known to assist Fe/S cluster biogenesis and the CsdAE cysteine desulphurase. Single iscU, hscA and fdx mutants were found sensitive to paraquat and exhibited reduced virulence on both chicory leaves and Arabidopsis thaliana. Depletion of the whole Isc system led to a pleiotropic phenotype, including sensitivity to both paraquat and 2,2'-dipyridyl, auxotrophies for branched-chain amino acids, thiamine, nicotinic acid, and drastic alteration in virulence. IscR was able to suppress all of the phenotypes listed above in a sufC-dependent manner while depletion of the Isc system led to IscR-dependent activation of the suf operon. No virulence defects were found associated with csdA or nifS mutations. Surprisingly, we found that the sufC mutant was virulent against A. thaliana, whereas its virulence had been found altered in Saintpaulia. Collectively, these results lead us to propose that E. chrysanthemi possess the Fe/S biogenesis strategy suited to the physico-chemical conditions encountered in its host upon infection. In this view, the IscR regulator, which controls both Isc and Suf, is predicted to play a major role in the ability of E. chrysanthemi to colonize a wide array of different plants.
预计菊欧文氏菌基因组编码三种系统,即Nif、Isc和Suf,已知它们有助于铁硫簇生物合成以及CsdAE半胱氨酸脱硫酶。发现单个iscU、hscA和fdx突变体对百草枯敏感,并且在菊苣叶和拟南芥上均表现出毒力降低。整个Isc系统的缺失导致多效性表型,包括对百草枯和2,2'-联吡啶敏感、对支链氨基酸、硫胺素、烟酸营养缺陷,以及毒力的剧烈改变。IscR能够以sufC依赖的方式抑制上述所有表型,而Isc系统的缺失导致suf操纵子的IscR依赖激活。未发现与csdA或nifS突变相关的毒力缺陷。令人惊讶的是,我们发现sufC突变体对拟南芥具有毒力,而其在非洲紫罗兰中的毒力已被发现发生改变。总体而言,这些结果使我们提出菊欧文氏菌拥有适合其感染宿主时所遇到的物理化学条件的铁硫生物合成策略。据此观点,控制Isc和Suf的IscR调节因子预计在菊欧文氏菌定殖多种不同植物的能力中起主要作用。