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首页> 外文期刊>Journal of Biotechnology >Analysis of the interaction of Clavibacter michiganensis subsp michiganensis with its host plant tomato by genome-wide expression profiling
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Analysis of the interaction of Clavibacter michiganensis subsp michiganensis with its host plant tomato by genome-wide expression profiling

机译:全基因组表达谱分析密歇根杆状菌与其寄主番茄的相互作用

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摘要

Genome-wide expression profiles of the phytopathogenic actinomycete Clavibacter michiganensis subsp. michiganensis (Cmm) strain NCPPB382 were analyzed using a 70mer oligonucleotide microarray. Cmm causes bacterial wilt and canker of tomato, a systemic disease leading to substantial economic losses worldwide. Global gene expression was monitored in vitro after long-and short-term incubation with tomato homogenate to simulate conditions in planta and in vivo ten days after inoculation of tomatoes. Surprisingly, both in the presence of tomato homogenate and in planta known virulence genes (celA, chpC, ppaA/C) were down-regulated indicating that the encoded extracellular enzymes are dispensable in late infection stages where plant tissue has already been heavily destroyed. In contrast, some genes of the tomA-region which are involved in sugar metabolism showed an enhanced RNA-level after permanent growth in supplemented medium. Therefore, these genes may be important for utilization of plant derived nutrients. In the plant Cmm exhibited an expression profile completely different from that in vitro. Especially, the strong expression of genes of the wco-cluster (extracellular polysaccharide II), 10 genes encoding surface or pilus assembly proteins, and CMM_2382, coding for a putative perforin suggest a possible role of these genes in the plant-pathogenic interaction. (C) 2012 Elsevier B.V. All rights reserved.
机译:植物致病放线菌克氏杆菌密歇根亚种的全基因组表达谱。使用70mer寡核苷酸微阵列分析了密歇根州(Cmm)菌株NCPPB382。 Cmm引起番茄的青枯病和溃疡病,这是一种系统性疾病,在全球范围内造成重大经济损失。在与番茄匀浆长期和短期温育后,在体外监测总体基因表达以模拟植物中的状况,并在接种番茄十天后体内进行监测。出人意料的是,在番茄匀浆的存在下和植物中,已知的毒力基因(celA,chpC,ppaA / C)均被下调,表明编码的细胞外酶在植物组织已经被严重破坏的晚期感染阶段是可有可无的。相反,参与糖代谢的tomA区的某些基因在补充培养基中永久生长后,RNA水平升高。因此,这些基因对于利用植物来源的养分可能很重要。在植物中,Cmm表现出的表达谱与体外完全不同。特别是,wco集群(细胞外多糖II)的基因,编码表面或菌毛装配蛋白的10个基因以及编码推定的穿孔素的CMM_2382的强表达表明这些基因在植物致病相互作用中的可能作用。 (C)2012 Elsevier B.V.保留所有权利。

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