TonB-dependent outer-membrane proteins and siderophore utilization in Pseudomonas fluorescens Pf-5

被引:0
|
作者
Sierra L. Hartney
Sylvie Mazurier
Teresa A. Kidarsa
Maria Carolina Quecine
Philippe Lemanceau
Joyce E. Loper
机构
[1] Oregon State University,Department of Botany and Plant Pathology
[2] INRA,Department of Genetics, Escola Superior de Agricultura ‘‘Luiz de Queiroz’’
[3] Université de Bourgogne,Horticultural Crops Research Laboratory
[4] UMR1229 ‘Microbiologie du Sol et de l’Environement’,undefined
[5] CMSE,undefined
[6] University of São Paulo,undefined
[7] United States Department of Agriculture,undefined
[8] Agricultural Research Service,undefined
来源
BioMetals | 2011年 / 24卷
关键词
Pyoverdine; Iron-acquisition; TonB-dependent receptors;
D O I
暂无
中图分类号
学科分类号
摘要
The soil bacterium Pseudomonas fluorescens Pf-5 produces two siderophores, a pyoverdine and enantio-pyochelin, and its proteome includes 45 TonB-dependent outer-membrane proteins, which commonly function in uptake of siderophores and other substrates from the environment. The 45 proteins share the conserved β-barrel and plug domains of TonB-dependent proteins but only 18 of them have an N-terminal signaling domain characteristic of TonB-dependent transducers (TBDTs), which participate in cell-surface signaling systems. Phylogenetic analyses of the 18 TBDTs and 27 TonB-dependent receptors (TBDRs), which lack the N-terminal signaling domain, suggest a complex evolutionary history including horizontal transfer among different microbial lineages. Putative functions were assigned to certain TBDRs and TBDTs in clades including well-characterized orthologs from other Pseudomonas spp. A mutant of Pf-5 with deletions in pyoverdine and enantio-pyochelin biosynthesis genes was constructed and characterized for iron-limited growth and utilization of a spectrum of siderophores. The mutant could utilize as iron sources a large number of pyoverdines with diverse structures as well as ferric citrate, heme, and the siderophores ferrichrome, ferrioxamine B, enterobactin, and aerobactin. The diversity and complexity of the TBDTs and TBDRs with roles in iron uptake clearly indicate the importance of iron in the fitness and survival of Pf-5 in the environment.
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页码:193 / 213
页数:20
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