首页> 外文期刊>Molecular phylogenetics and evolution >Evolutionary history of synthesis pathway genes for phloroglucinol and cyanide antimicrobials in plant-associated fluorescent pseudomonads
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Evolutionary history of synthesis pathway genes for phloroglucinol and cyanide antimicrobials in plant-associated fluorescent pseudomonads

机译:植物相关荧光假单胞菌间苯三酚和氰化物抗菌素合成途径基因的进化历史

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摘要

Plant-beneficial fluorescent Pseudomonas spp. play important ecological roles. Here, their evolutionary history was investigated by a multilocus approach targeting genes involved in synthesis of secondary antimicrobial metabolites implicated in biocontrol of phytopathogens. Some of these genes were proposed to be ancestral, and this was investigated using a worldwide collection of 30 plant-colonizing fluorescent pseudomonads, based on phylogenetic analysis of 14 loci involved in production of 2,4-diacetylphloroglucinol (phlACBDE, phlF, intergenic locus phlA/. phlF), hydrogen cyanide (hcnABC, anr) or global regulation of secondary metabolism (gacA, gacS, rsmZ). The 10 housekeeping loci rrs, dsbA, gyrB, rpoD, fdxA, recA, rpoB, rpsL, rpsG, and fusA served as controls. Each strain was readily distinguished from the others when considering allelic combinations for these 14 biocontrol-relevant loci. Topology comparisons based on Shimodaira-Hasegawa tests showed extensive incongruence when comparing single-locus phylogenetic trees with one another, but less when comparing (after sequence concatenation) trees inferred for genes involved in 2,4-diacetylphloroglucinol synthesis, hydrogen cyanide synthesis, or secondary metabolism global regulation with trees for housekeeping genes. The 14 loci displayed linkage disequilibrium, as housekeeping loci did, and all 12 protein-coding loci were subjected to purifying selection except for one positively-selected site in HcnA. Overall, the evolutionary history of Pseudomonas genes involved in synthesis of secondary antimicrobial metabolites important for biocontrol functions is in fact similar to that of housekeeping genes, and results suggest that they are ancestral in pseudomonads producing hydrogen cyanide and 2,4-diacetylphloroglucinol.
机译:植物有益的荧光假单胞菌属。发挥重要的生态作用。在这里,他们的进化历史是通过针对涉及参与植物病原体生物控制的次级抗微生物代谢产物合成的基因的多基因座方法研究的。这些基因中有一些被认为是祖先的,根据对涉及2,4-二乙酰基间苯三酚(phlACBDE,phlF,基因间位点phA /。phlF),氰化氢(hcnABC,anr)或二级代谢的整体调控(gacA,gacS,rsmZ)。将10个内部管理位点rrs,dsbA,gyrB,rpoD,fdxA,recA,rpoB,rpsL,rpsG和fusA用作对照。当考虑这14个与生物防治相关的基因座的等位基因组合时,每个菌株都容易与其他菌株区分开。根据Shimodaira-Hasegawa测试进行的拓扑比较显示,在相互比较单基因组系统发育树时,存在很大的不一致,但是在比较(序列连接后)推断出与2,4-二乙酰基间苯三酚合成,氰化氢合成或次级相关的基因时,则不一致用看家基因的树木进行新陈代谢的全球调控。 14个基因座显示出连锁不平衡,就像管家基因座一样,除HcnA中一个阳性选择位点外,所有12个蛋白质编码基因座均经过纯化选择。总体而言,参与对生物控制功能重要的次级抗微生物代谢产物合成的假单胞菌基因的进化历史实际上与管家基因相似,并且结果表明它们在产生氰化氢和2,4-二乙酰基间苯三酚的假单胞菌中是祖先的。

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