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Genetic Potential of the Biocontrol Agent Pseudomonas brassicacearum (Formerly P. trivialis ) 3Re2-7 Unraveled by Genome Sequencing and Mining, Comparative Genomics and Transcriptomics

机译:基因组测序和挖掘,比较基因组学和转录组学研究揭示了生物防治剂黄铜假单胞菌(Pseudomonas Brasicacearum)(3.2Re-3)的遗传潜能。

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The genus Pseudomonas comprises many known plant-associated microbes with plant growth promotion and disease suppression properties. Genome-based studies allow the prediction of the underlying mechanisms using genome mining tools and the analysis of the genes unique for a strain by implementing comparative genomics. Here, we provide the genome sequence of the strain Pseudomonas brassicacearum 3Re2-7, formerly known as P. trivialis and P. reactans , elucidate its revised taxonomic classification, experimentally verify the gene predictions by transcriptome sequencing, describe its genetic biocontrol potential and contextualize it to other known Pseudomonas biocontrol agents. The P. brassicacearum 3Re2-7 genome comprises a circular chromosome with a size of 6,738,544 bp and a GC-content of 60.83%. 6267 genes were annotated, of which 6113 were shown to be transcribed in rich medium and/or in the presence of Rhizoctonia solani . Genome mining identified genes related to biocontrol traits such as secondary metabolite and siderophore biosynthesis, plant growth promotion, inorganic phosphate solubilization, biosynthesis of lipo- and exopolysaccharides, exoproteases, volatiles and detoxification. Core genome analysis revealed, that the 3Re2-7 genome exhibits a high collinearity with the representative genome for the species, P. brassicacearum subsp. brassicacearum NFM421. Comparative genomics allowed the identification of 105 specific genes and revealed gene clusters that might encode specialized biocontrol mechanisms of strain 3Re2-7. Moreover, we captured the transcriptome of P. brassicacearum 3Re2-7, confirming the transcription of the predicted biocontrol-related genes. The gene clusters coding for 2,4-diacetylphloroglucinol ( phlABCDEFGH ) and hydrogen cyanide ( hcnABC ) were shown to be highly transcribed. Further genes predicted to encode putative alginate production enzymes, a pyrroloquinoline quinone precursor peptide PqqA and a matrixin family metalloprotease were also found to be highly transcribed. With this study, we provide a basis to further characterize the mechanisms for biocontrol in Pseudomonas species, towards a sustainable and safe application of P. brassicacearum biocontrol agents.
机译:假单胞菌属包括许多已知的具有植物生长促进和疾病抑制特性的植物相关微生物。基于基因组的研究允许使用基因组挖掘工具预测潜在机制,并通过实施比较基因组学来分析菌株特有的基因。在这里,我们提供了铜绿假单胞菌3Re2-7菌株的基因组序列,该菌株原名P. trivialis和P. reactans,阐明了其经过修订的分类学分类,通过转录组测序实验验证了基因预测,描述了其遗传生物控制潜力并对其进行了背景研究。其他已知的假单胞菌生物防治剂。黄铜假单胞菌3Re2-7基因组包含一个环状染色体,其大小为6,738,544 bp,GC含量为60.83%。注释了6267个基因,其中6113个基因在丰富的培养基中和/或在立枯丝核菌存在下被转录。基因组挖掘发现了与生物控制性状相关的基因,例如次生代谢产物和铁载体的生物合成,植物生长促进,无机磷酸盐增溶,脂多糖和胞外多糖的生物合成,胞外蛋白酶,挥发物和排毒。核心基因组分析显示,3Re2-7基因组与该物种的典型基因组(P. brasicacearum subsp。)具有很高的共线性。黄铜ac NFM421。比较基因组学可以鉴定105个特定基因,并揭示可能编码3Re2-7菌株专门生物控制机制的基因簇。此外,我们捕获了P. brasicacearum 3Re2-7的转录组,证实了预测的生物防治相关基因的转录。编码2,4-二乙酰基间苯三酚(phlABCDEFGH)和氰化氢(hcnABC)的基因簇被高度转录。还发现被预测编码假定的藻酸盐产生酶,吡咯并喹啉醌前体肽PqqA和基质蛋白家族金属蛋白酶的其他基因被高度转录。通过这项研究,我们为进一步表征假单胞菌属物种的生物防治机制提供了基础,以期实现可持续和安全地应用黄铜假单胞菌生物防治剂。

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