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首页> 外文期刊>Journal of Nutrition Education and Behavior >Identification of Loci of Pseudomonas syringae pv. actinidiae Involved in Lipolytic Activity and Their Role in Colonization of Kiwifruit Leaves
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Identification of Loci of Pseudomonas syringae pv. actinidiae Involved in Lipolytic Activity and Their Role in Colonization of Kiwifruit Leaves

机译:鉴定假单胞菌皂苷PV的基因座。 参与脂肪溶解活性的猕猴桃和它们在Kiwifruit叶片定植中的作用

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Bacterial canker disease caused by Pseudomonas syringae pv. actinidiae, an emerging pathogen of kiwifruit plants, has recently brought about major economic losses worldwide. Genetic studies on virulence functions of P. syringae pv. actinidiae have not yet been reported and there is little experimental data regarding bacterial genes involved in pathogenesis. In this study, we performed a genetic screen in order to identify transposon mutants altered in the lipolytic activity because it is known that mechanisms of regulation, production, and secretion of enzymes often play crucial roles in virulence of plant pathogens. We aimed to identify the set of secretion and global regulatory loci that control lipolytic activity and also play important roles in in planta fitness. Our screen for altered lipolytic activity phenotype identified a total of 58 Tn5 transposon mutants. Mapping all these Tn5 mutants revealed that the transposons were inserted in genes that play roles in cell division, chemotaxis, metabolism, movement, recombination, regulation, signal transduction, and transport as well as a few unknown functions. Several of these identified P. syringae pv. actinidiae Tn5 mutants, notably the functions affected in phosphomannomutase AlgC, lipid A biosynthesis acyltransferase, glutamate-cysteine ligase, and the type IV pilus protein PilI, were also found affected in in planta survival and/ or growth in kiwifruit plants. The results of the genetic screen and identification of novel loci involved in in planta fitness of P. syringae pv. actinidiae are presented and discussed.
机译:Pseudomonas inringae PV引起的细菌溃疡病。猕猴桃植物的新兴病原体猕猴桃,最近在全球主要经济损失带来。 P.Syringae PV毒力函数的基因研究。尚未报告猕猴桃尚未报道,并且还有一些关于涉及发病机制的细菌基因的实验数据。在这项研究中,我们进行了遗传筛查,以鉴定脂肪溶解活性改变的转座突变体,因为众所周知,酶的调节机制通常在植物病原体的毒力中起到至关重要的作用。我们的旨在确定控制脂肪溶解活动的分泌和全球监管基因座,并在Planta健身中发挥重要作用。我们用于改变的脂溶性活性表型的筛选鉴定了总共58个TN5转座子突变体。映射所有这些TN5突变体显示,将转座子插入到在细胞分裂,趋化性,代谢,运动,重组,调节,信号转导和运输中作用的基因中,以及少数未知功能。其中几种已鉴定的p. inringae pv。 actinidiae tn5突变体,特别是在植物生存期和/或猕猴桃植物中的植物存活和/或生长中也发现了在磷醋酰胺酶藻类,脂质生物合成酰胺酰基转移酶,谷氨酸 - 半胱氨酸酰胺酶和IV型菌刺蛋白pili的功能。遗传筛网的结果和鉴定P.Syrance PV的Planta Fitness中涉及的新型基因座。展示和讨论了Actinidiae。

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