Disruption of chemotaxis-related genes affects multiple cellular processes and the virulence of pathogenic Vibrio harveyi  被引量:1

Disruption of chemotaxis-related genes affects multiple cellular processes and the virulence of pathogenic Vibrio harveyi

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作  者:QIN Yingxue YAN Qingpi SU Yongquan LI Haiping ZOU Wenzheng 

机构地区:[1]Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture, Jimei University [2]Fisheries College, Jimei University [3]College of Ocean and Earth Science, Xiamen University

出  处:《Acta Oceanologica Sinica》2013年第8期55-60,共6页海洋学报(英文版)

基  金:The National Natural Science Foundation of China under contract Nos 31272699 and 41176115;National Department Public Benefit Research Foundation of China under contract No. 200903029;the Natural Science Foundation of Fujian Province under contract No.2011J06014;the National Hi-Tech Research and Development Program of China (863 Program) under contract No. 2007AA09Z115

摘  要:Chemotactic motility is involved in the virulence of many pathogenic bacteria. In order to understand the role of chemotactic motility of Vibrio harveyi in cellular processes and virulence, mini-TnlO/Kan transposon-induced mutants with deficient chemotactic motility were constructed, screened, and iden- tified. Sequence analysis revealed that the 465-bp fragment (GenBank accession number HM630274) fank- ing the transposon insertion site in mutant TS-CM1 had the highest identity (96.9%) with a hypothetical protein gene of V. harveyiATCC BAA-1116 and the second-highest identity (91.8%) with the pgk gene of V. parahaemolyticus RIMD 2210633. In another mutant, TS-CM2, 356 bp of transposon-flanking sequence (GenBank accession number HM630275) also showed the highest identity (94.6%) with a hypothetical pro- tein gene of V. harveyi ATCC BAA-1116 and the second-highest identity (92.4%) with the flaB gene of V. alginolyticus HY9901. Studies on virulence-related biological characteristics such as growth, motility, adhe- sion, and infectivity of the mutants showed that disruption of either the flagellin gene or energy metabolism gene led to subsequent loss of chemotactic motility and changes in growth, motility, adhesion, and viru- lence of the pathogenic E harueyi. Hence, the flagellin gene and crucial energy metabolism gene played an important role in the chemotactic motility of V. harveyi.Chemotactic motility is involved in the virulence of many pathogenic bacteria. In order to understand the role of chemotactic motility of Vibrio harveyi in cellular processes and virulence, mini-TnlO/Kan transposon-induced mutants with deficient chemotactic motility were constructed, screened, and iden- tified. Sequence analysis revealed that the 465-bp fragment (GenBank accession number HM630274) fank- ing the transposon insertion site in mutant TS-CM1 had the highest identity (96.9%) with a hypothetical protein gene of V. harveyiATCC BAA-1116 and the second-highest identity (91.8%) with the pgk gene of V. parahaemolyticus RIMD 2210633. In another mutant, TS-CM2, 356 bp of transposon-flanking sequence (GenBank accession number HM630275) also showed the highest identity (94.6%) with a hypothetical pro- tein gene of V. harveyi ATCC BAA-1116 and the second-highest identity (92.4%) with the flaB gene of V. alginolyticus HY9901. Studies on virulence-related biological characteristics such as growth, motility, adhe- sion, and infectivity of the mutants showed that disruption of either the flagellin gene or energy metabolism gene led to subsequent loss of chemotactic motility and changes in growth, motility, adhesion, and viru- lence of the pathogenic E harueyi. Hence, the flagellin gene and crucial energy metabolism gene played an important role in the chemotactic motility of V. harveyi.

关 键 词:chemotactic motility Vibrio harveyi TRANSPOSON VIRULENCE 

分 类 号:S852.61[农业科学—基础兽医学]

 

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