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首页> 外文期刊>Veterinary Microbiology >Use of bioluminescence mutant screening for identification of Edwardsiella ictaluri genes involved in channel catfish (Ictalurus punctatus) skin colonization.
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Use of bioluminescence mutant screening for identification of Edwardsiella ictaluri genes involved in channel catfish (Ictalurus punctatus) skin colonization.

机译:利用生物发光突变体筛选鉴定参与ic鱼(Ictalurus punctatus)皮肤定殖的爱德华氏菌基因。

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摘要

Initial invasion of the host is the first and vital part of any infection process. We have demonstrated that Edwardsiella ictaluri is capable of colonizing and penetrating catfish skin. Therefore, a mutant library was constructed by random insertion of the Mar2xT7 transposon into the chromosome of E. ictaluri harboring the bioluminescence plasmid pAKgfplux1. This library was then screened through a series of three consecutive challenges for mutants showing a decreased ability to colonize the catfish epithelium. Eighteen mutants were identified that have decreased adhesion and virulence. Mutated genes encoded one sensor protein, two transport proteins, five enzymes, two regulatory proteins, and five hypothetical proteins. Among the mutated genes, the first one identified was a gene encoding for RstA/B, which is known to play a role in regulating the expression of invasion genes in Salmonella enterica Typhimurium. Another mutant was lacking a putative ribonuclease similar to a Shigella protein that regulates the expression of adhesin. A third mutant was defective in a protein similar to a Brucella protein that was initially identified as a transporter, but actually is a member of a newly discovered adhesin family. Results from this study could enable development of a new strategy for blocking E. ictaluri invasion at the initial adherence stage.
机译:宿主的最初入侵是任何感染过程的首要且至关重要的部分。我们已经证明爱德华氏菌能够定殖和穿透cat鱼皮肤。因此,通过将Mar2xT7转座子随机插入到具有生物发光质粒pAKgfplux1的埃塔克霉菌的染色体中来构建突变体文库。然后通过一系列连续三个挑战筛选该文库,筛选出表现出降低the鱼上皮定殖能力的突变体。鉴定出十八种突变体,其粘附性和毒力​​降低。突变的基因编码一个传感器蛋白,两个转运蛋白,五个酶,两个调节蛋白和五个假设蛋白。在突变的基因中,第一个被鉴定的基因是编码RstA / B的基因,已知该基因在调节鼠伤寒沙门氏菌入侵基因的表达中起作用。另一个突变体缺少推定的核糖核酸酶,类似于调节志贺菌素表达的志贺氏菌蛋白。第三个突变体在类似于布鲁氏菌蛋白的蛋白中有缺陷,该蛋白最初被鉴定为转运蛋白,但实际上是新发现的粘附素家族的成员。这项研究的结果可能使在依从性初期就可以开发出一种新的策略来阻止小肠埃希氏菌的入侵。

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