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The Pseudomonas syringae pv. tomato DC3000 PSPTO_0820 multidrug transporter is involved in resistance to plant antimicrobials and bacterial survival during tomato plant infection

机译:丁香假单胞菌PV。番茄DC3000 PSPTO_0820多药转运蛋白参与番茄植株感染期间对植物抗菌素的抵抗和细菌存活

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摘要

Multidrug resistance efflux pumps protect bacterial cells against a wide spectrum of antimicrobial compounds. PSPTO_0820 is a predicted multidrug transporter from the phytopathogenic bacterium Pseudomonas syringae pv. tomato DC3000. Orthologs of this protein are conserved within many Pseudomonas species that interact with plants. To study the potential role of PSPTO_0820 in plant-bacteria interaction, a mutant in this gene was isolated and characterized. In addition, with the aim to find the outer membrane channel for this efflux system, a mutant in PSPTO_4977, a TolC-like gene, was also analyzed. Both mutants were more susceptible to trans-cinnamic and chlorogenic acids and to the flavonoid (+)-catechin, when added to the culture medium. The expression level of both genes increased in the presence of (+)-catechin and, in the case of PSPTO_0820, also in response to trans-cinnamic acid. PSPTO_0820 and PSPTO_4977 mutants were unable to colonize tomato at high population levels. This work evidences the involvement of these two proteins in the resistance to plant antimicrobials, supporting also the importance of chlorogenic acid, trans-cinnamic acid, and (+)-catechin in the tomato plant defense response against P. syringae pv. tomato DC3000 infection.
机译:耐多药外排泵可保护细菌细胞免受多种抗菌化合物的侵害。 PSPTO_0820是一种植物致病性细菌丁香假单胞菌pv的预测多药转运蛋白。番茄DC3000。这种蛋白质的直系同源物在与植物相互作用的许多假单胞菌属物种中是保守的。为了研究PSPTO_0820在植物-细菌相互作用中的潜在作用,分离并鉴定了该基因的突变体。此外,为了找到该外排系统的外膜通道,还分析了PSPTO_4977中的TolC样基因突变体。当添加到培养基中时,这两个突变体都更易受肉桂酸和绿原酸的影响,以及黄酮类(+)-儿茶素的敏感性。在(+)-儿茶素的存在下,两个基因的表达水平均升高;在PSPTO_0820的情况下,这两个基因的表达水平也都对反肉桂酸有所响应。 PSPTO_0820和PSPTO_4977突变体无法在高种群水平上定殖于番茄。这项工作证明这两种蛋白参与了对植物抗菌剂的抗性,也支持了绿原酸,反式肉桂酸和(+)-儿茶素在番茄对丁香假单胞菌pv的防御反应中的重要性。番茄DC3000感染。

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