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Identification of the nitrogen-fixing Pseudomonas stutzeri major flagellar gene regulator FleQ and its role in biofilm formation and root colonization
  • ISSN号:1000-3061
  • 期刊名称:《生物工程学报》
  • 时间:0
  • 分类:Q939.112[生物学—微生物学] Q25[生物学—细胞生物学]
  • 作者机构:[1]College of Biological Sciences, China Agricultural University, Beijing 100094, P.R.China, [2]Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, P.R.China, [3]The Key Laboratory of Plant Pathology of Hubei Province/College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, P.R.China
  • 相关基金:supported by grants from the National Basic Research(973) Program of China(2015CB755700); the National High-Tech R&D(863) Program of China (2012AA02A703); the National Natural Science Foundation of China(31170081); the Special Fund for Agro-scientific Research in the Public Interest,China(201103007); the Guangdong Innovative and Entrepreneurial Research Team Program,China(2013S033).
中文摘要:

Flagellar biosynthesis and motility are subject to a four-tiered transcriptional regulatory circuit in Pseudomonas,and the master regulator FleQ appears to be the highest-level regulator in this hierarchical regulatory cascade.Pseudomonas stutzeri A1501 is motile by a polar flagellum;however,the motility and regulatory mechanisms involved in this process are unknown.Here,we searched the A1501 genome for flagella and motility genes and found that approximately 50 genes,which were distributed in three non-contiguous chromosomal regions,contribute to the formation,regulation and function of the flagella.The non-polar mutation of fleQ impaired flagellar biosynthesis,motility and root colonization but enhanced biofilm formation.FleQ positively regulates the expression of flagellar class Ⅱ-Ⅳ genes,suggesting a regulatory cascade that is coordinated similar to that of the well-known P.aeruginosa.Based on our results,we propose that flagellar genes in P.stutzeri A1501 are regulated in a cascade regulated by FleQ and that flagellum-driven motility properties may be necessary for competitive rhizosphere colonization.

英文摘要:

Flagellar biosynthesis and motility are subject to a four-tiered transcriptional regulatory circuit in Pseudomonas,and the master regulator FleQ appears to be the highest-level regulator in this hierarchical regulatory cascade.Pseudomonas stutzeri A1501 is motile by a polar flagellum;however,the motility and regulatory mechanisms involved in this process are unknown.Here,we searched the A1501 genome for flagella and motility genes and found that approximately 50 genes,which were distributed in three non-contiguous chromosomal regions,contribute to the formation,regulation and function of the flagella.The non-polar mutation of fleQ impaired flagellar biosynthesis,motility and root colonization but enhanced biofilm formation.FleQ positively regulates the expression of flagellar class Ⅱ-Ⅳ genes,suggesting a regulatory cascade that is coordinated similar to that of the well-known P.aeruginosa.Based on our results,we propose that flagellar genes in P.stutzeri A1501 are regulated in a cascade regulated by FleQ and that flagellum-driven motility properties may be necessary for competitive rhizosphere colonization.

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期刊信息
  • 《生物工程学报》
  • 中国科技核心期刊
  • 主管单位:中国科学院
  • 主办单位:中国科学院微生物研究所 中国微生物学会
  • 主编:杨胜利
  • 地址:北京市朝阳区大屯路中国科学院微生物研究所内B401室
  • 邮编:100101
  • 邮箱:cjb@im.ac.cn
  • 电话:010-64807509
  • 国际标准刊号:ISSN:1000-3061
  • 国内统一刊号:ISSN:11-1998/Q
  • 邮发代号:82-13
  • 获奖情况:
  • 北京市优秀科技期刊期刊奖,中国科协首届优秀学术期刊奖,2000年中科院优秀科技期刊二等奖
  • 国内外数据库收录:
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  • 被引量:18441