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吩嗪生物合成途径的多样性与演化。

Diversity and evolution of the phenazine biosynthesis pathway.

机构信息

Department of Plant Pathology, Washington State University, Pullman, WA 99164-6430, USA.

出版信息

Appl Environ Microbiol. 2010 Feb;76(3):866-79. doi: 10.1128/AEM.02009-09. Epub 2009 Dec 11.

Abstract

Phenazines are versatile secondary metabolites of bacterial origin that function in biological control of plant pathogens and contribute to the ecological fitness and pathogenicity of the producing strains. In this study, we employed a collection of 94 strains having various geographic, environmental, and clinical origins to study the distribution and evolution of phenazine genes in members of the genera Pseudomonas, Burkholderia, Pectobacterium, Brevibacterium, and Streptomyces. Our results confirmed the diversity of phenazine producers and revealed that most of them appear to be soil-dwelling and/or plant-associated species. Genome analyses and comparisons of phylogenies inferred from sequences of the key phenazine biosynthesis (phzF) and housekeeping (rrs, recA, rpoB, atpD, and gyrB) genes revealed that the evolution and dispersal of phenazine genes are driven by mechanisms ranging from conservation in Pseudomonas spp. to horizontal gene transfer in Burkholderia spp. and Pectobacterium spp. DNA extracted from cereal crop rhizospheres and screened for the presence of phzF contained sequences consistent with the presence of a diverse population of phenazine producers in commercial farm fields located in central Washington state, which provided the first evidence of United States soils enriched in indigenous phenazine-producing bacteria.

摘要

吩嗪类化合物是一类具有多种功能的细菌次生代谢产物,它们可以控制植物病原体,并有助于产生菌的生态适应性和致病性。在这项研究中,我们利用来自不同地理、环境和临床来源的 94 株菌,研究了假单胞菌属、伯克霍尔德菌属、果胶杆菌属、短杆菌属和链霉菌属成员中吩嗪基因的分布和进化。我们的研究结果证实了吩嗪产生菌的多样性,并表明它们大多似乎是土壤栖息和/或与植物相关的物种。通过对关键吩嗪生物合成(phzF)和看家基因(rrs、recA、rpoB、atpD 和 gyrB)序列的基因组分析和系统发育比较,揭示了吩嗪基因的进化和传播是由多种机制驱动的,从假单胞菌属中的保守到伯克霍尔德菌属和果胶杆菌属中的水平基因转移。从谷物根际土壤中提取 DNA,并筛选 phzF 的存在情况,结果发现了与商业农田中存在多样化的吩嗪产生菌相一致的序列,这为美国土壤中富含本土吩嗪产生菌提供了第一个证据。

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Diversity and evolution of the phenazine biosynthesis pathway.吩嗪生物合成途径的多样性与演化。
Appl Environ Microbiol. 2010 Feb;76(3):866-79. doi: 10.1128/AEM.02009-09. Epub 2009 Dec 11.

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