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Revised Phylogeny and Novel Horizontally Acquired Virulence Determinants of the Model Soft Rot Phytopathogen Pectobacterium wasabiae SCC3193

机译:修正的系统发育和新型水平获得性毒力决定因素的模型软腐病原病原山葵SCC3193

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摘要

Soft rot disease is economically one of the most devastating bacterial diseases affecting plants worldwide. In this study, we present novel insights into the phylogeny and virulence of the soft rot model Pectobacterium sp. SCC3193, which was isolated from a diseased potato stem in Finland in the early 1980s. Genomic approaches, including proteome and genome comparisons of all sequenced soft rot bacteria, revealed that SCC3193, previously included in the species Pectobacterium carotovorum, can now be more accurately classified as Pectobacterium wasabiae. Together with the recently revised phylogeny of a few P. carotovorum strains and an increasing number of studies on P. wasabiae, our work indicates that P. wasabiae has been unnoticed but present in potato fields worldwide. A combination of genomic approaches and in planta experiments identified features that separate SCC3193 and other P. wasabiae strains from the rest of soft rot bacteria, such as the absence of a type III secretion system that contributes to virulence of other soft rot species. Experimentally established virulence determinants include the putative transcriptional regulator SirB, two partially redundant type VI secretion systems and two horizontally acquired clusters (Vic1 and Vic2), which contain predicted virulence genes. Genome comparison also revealed other interesting traits that may be related to life in planta or other specific environmental conditions. These traits include a predicted benzoic acid/salicylic acid carboxyl methyltransferase of eukaryotic origin. The novelties found in this work indicate that soft rot bacteria have a reservoir of unknown traits that may be utilized in the poorly understood latent stage in planta. The genomic approaches and the comparison of the model strain SCC3193 to other sequenced Pectobacterium strains, including the type strain of P. wasabiae, provides a solid basis for further investigation of the virulence, distribution and phylogeny of soft rot bacteria and, potentially, other bacteria as well.
机译:从经济上讲,软腐病是影响全球植物的最具破坏力的细菌性疾病之一。在这项研究中,我们提出了新的见解,以系统发育和软腐烂的模型Pectobacterium sp。的毒力。 SCC3193是在1980年代初从芬兰一个患病马铃薯茎中分离出来的。基因组学方法,包括对所有测序的软腐细菌进行蛋白质组和基因组比较,揭示了SCC3193(以前包括在胡萝卜菌种中)现在可以更准确地归类为芥末菌。加上最近修订的一些胡萝卜假单胞菌菌株的系统发育以及对芥末假单胞菌的研究不断增加,我们的工作表明芥末假单胞菌在世界各地的马铃薯田中都未被发现。基因组学方法的结合以及在植物实验中确定了将SCC3193和其他芥末假单胞菌菌株与其余软腐细菌区分开的特征,例如不存在有助于其他软腐菌的致病力的III型分泌系统。实验确定的毒力决定因素包括推定的转录调节子SirB,两个部分冗余的VI型分泌系统和两个水平捕获的簇(Vic1和Vic2),其中包含预测的毒力基因。基因组比较还揭示了其他有趣的特征,这些特征可能与植物生活或其他特定环境条件有关。这些特征包括真核来源的预测的苯甲酸/水杨酸羧基甲基转移酶。在这项工作中发现的新颖性表明,软腐细菌具有未知性状的贮藏库,可在植物的潜伏期尚不了解的情况下利用。基因组学方法以及模型菌株SCC3193与其他测序的波状杆菌菌株(包括芥末假单胞菌类型菌株)的比较,为进一步研究软腐细菌以及潜在的其他细菌的毒力,分布和系统发育提供了坚实的基础也一样

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