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首页> 外文期刊>Molecular Plant-Microbe Interactions >Characterization of Cichopeptins, New Phytotoxic Cyclic Lipodepsipeptides Produced by Pseudomonas cichorii SF1-54 and Their Role in Bacterial Midrib Rot Disease of Lettuce
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Characterization of Cichopeptins, New Phytotoxic Cyclic Lipodepsipeptides Produced by Pseudomonas cichorii SF1-54 and Their Role in Bacterial Midrib Rot Disease of Lettuce

机译:菊苣假单胞菌SF1-54产生的新的植物毒素环磷肽,植物脂环肽的表征及其在生菜细菌中肋腐烂病中的作用

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The lettuce midrib rot pathogen Pseudomonas cichorii SF1-54 produces seven bioactive compounds with biosurfactant properties. Two compounds exhibited necrosis-inducing activity on chicory leaves. The structure of the two phytotoxic compounds, named cichopeptin A and B, was tentatively characterized. They are related cyclic lipopeptides composed of an unsaturated C12-fatty acid chain linked to the N-terminus of a 22–amino acid peptide moiety. Cichopeptin B differs from cichopeptin A only in the last C-terminal amino acid residue, which is probably Val instead of Leu/Ile. Based on peptide sequence similarity, cichopeptins are new cyclic lipopeptides related to corpeptin, produced by the tomato pathogen Pseudomonas corrugata. Production of cichopeptin is stimulated by glycine betaine but not by choline, an upstream precursor of glycine betaine. Furthermore, a gene cluster encoding cichopeptin synthethases, cipABCDEF, is responsible for cichopeptin biosynthesis. A cipA-deletion mutant exhibited significantly less virulence and rotten midribs than the parental strain upon spray inoculation on lettuce. However, the parental and mutant strains multiplied in lettuce leaves at a similar rate. These results demonstrate that cichopeptins contribute to virulence of P. cichorii SF1-54 on lettuce.
机译:生菜中脉腐烂病原体伪装假单胞菌SF1-54可产生7种具有生物表面活性剂性质的生物活性化合物。两种化合物在菊苣叶上表现出坏死诱导活性。初步鉴定了两种植物毒性化合物的结构,即七肽肽A和B。它们是相关的环状脂肽,由连接至22个氨基酸肽部分N末端的不饱和C12脂肪酸链组成。 Cichopeptin B与Cichopeptin A的不同之处仅在于最后一个C末端氨基酸残基,可能是Val而不是Leu / Ile。基于肽序列的相似性,七肽肽是由番茄病原体皱纹假单胞菌(Pseudomonas corrugata)产生的与蝎肽相关的新型环状脂肽。甘氨酸甜菜碱刺激了七肽肽的产生,但甘氨酸甜菜碱的上游前体胆碱却没有刺激。此外,编码七肽肽合成酶cipABCDEF的基因簇负责七肽肽的生物合成。在生菜上喷雾接种后,与亲本菌株相比,cipA缺失突变体的毒力和中肋烂得多。但是,亲本和突变菌株在莴苣叶中繁殖的速率相似。这些结果表明,七聚肽素对莴苣中的拟杆菌PSF1-44的毒性有贡献。

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