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Comparative genome analysis of the vineyard weed endophyte Pseudomonas viridiflava CDRTc14 showing selective herbicidal activity

机译:葡萄园杂草内生植物绿假单胞菌CDRTc14的比较基因组分析显示选择性除草活性

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摘要

Microbes produce a variety of secondary metabolites to be explored for herbicidal activities. We investigated an endophyte Pseudomonas viridiflava CDRTc14, which impacted growth of its host Lepidium draba L., to better understand the possible genetic determinants for herbicidal and host-interaction traits. Inoculation tests with a variety of target plants revealed that CDRTc14 shows plant-specific effects ranging from beneficial to negative. Its herbicidal effect appeared to be dose-dependent and resembled phenotypically the germination arrest factor of Pseudomonas fluorescens WH6. CDRTc14 shares 183 genes with the herbicidal strain WH6 but the formylaminooxyvinylglycine (FVG) biosynthetic genes responsible for germination arrest of WH6 was not detected. CDRTc14 showed phosphate solubilizing ability, indole acetic acid and siderophores production in vitro and harbors genes for these functions. Moreover, genes for quorum sensing, hydrogen cyanide and ACC deaminase production were also found in this strain. Although, CDRTc14 is related to plant pathogens, we neither found a complete pathogenicity island in the genome, nor pathogenicity symptoms on susceptible plant species upon CDRTc14 inoculation. Comparison with other related genomes showed several unique genes involved in abiotic stress tolerance in CDRTc14 like genes responsible for heavy metal and herbicide resistance indicating recent adaptation to plant protection measures applied in vineyards.
机译:微生物会产生多种次生代谢产物,以探讨其除草活性。我们调查了一种内生细菌绿假单胞菌CDRTc14,它影响了其宿主Lepidium draba L.的生长,以更好地了解除草和宿主相互作用性状的可能遗传决定因素。对多种目标植物的接种测试表明,CDRTc14显示出从有益到阴性的植物特异性作用。它的除草作用似乎是剂量依赖性的,并且在表型上类似于荧光假单胞菌WH6的萌发阻止因子。 CDRTc14与除草菌株WH6共有183个基因,但未检测到导致WH6萌发停止的甲酰氨基氧乙烯基甘氨酸(FVG)生物合成基因。 CDRTc14在体外具有磷酸盐增溶能力,吲哚乙酸和铁载体的产生,并具有这些功能的基因。此外,在该菌株中还发现了群体感应,氰化氢和ACC脱氨酶产生的基因。尽管CDRTc14与植物病原体有关,但我们既未在基因组中找到完整的致病岛,也未在CDRTc14接种后在易感植物上发现致病症状。与其他相关基因组的比较显示,参与CDRTc14非生物胁迫耐受性的几个独特基因,如引起重金属和除草剂抗性的基因,表明最近适应了葡萄园中采用的植物保护措施。

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