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首页> 外文期刊>Applied and Environmental Microbiology >Phenotypic Switching in Pseudomonas brassicacearum Involves GacS- and GacA-Dependent Rsm Small RNAs
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Phenotypic Switching in Pseudomonas brassicacearum Involves GacS- and GacA-Dependent Rsm Small RNAs

机译:黄铜假单胞菌的表型转换涉及GacS和GacA依赖性Rsm小RNA。

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The plant-beneficial bacterium Pseudomonas brassicacearum forms phenotypic variants in vitro as well as in planta during root colonization under natural conditions. Transcriptome analysis of typical phenotypic variants using microarrays containing coding as well as noncoding DNA fragments showed differential expression of several genes relevant to secondary metabolism and of the small RNA (sRNA) genes rsmX, rsmY, and rsmZ. Naturally occurring mutations in the gacS-gacA system accounted for phenotypic switching, which was characterized by downregulation of antifungal secondary metabolites (2,4-diacetylphloroglucinol and cyanide), indoleacetate, exoenzymes (lipase and protease), and three different N-acyl-homoserine lactone molecules. Moreover, in addition to abrogating these biocontrol traits, gacS and gacA mutations resulted in reduced expression of the type VI secretion machinery, alginate biosynthesis, and biofilm formation. In a gacA mutant, the expression of rsmX was completely abolished, unlike that of rsmY and rsmZ. Overexpression of any of the three sRNAs in the gacA mutant overruled the pleiotropic changes and restored the wild-type phenotypes, suggesting functional redundancy of these sRNAs. In conclusion, our data show that phenotypic switching in P. brassicacearum results from mutations in the gacS-gacA system.
机译:有益植物铜绿假单胞菌在自然条件下的根定殖过程中会在体外形成 和在植物界 的表型变异。使用包含编码和非编码DNA片段的微阵列对典型表型变异进行转录组分析,结果显示与次级代谢相关的几个基因和小RNA(sRNA)基因 rsmX rsmY 的差异表达em>和 rsmZ gacS-gacA 系统中自然发生的突变是表型转换的特征,其特征是抗真菌次级代谢产物(2,4-二乙酰基间苯三酚和氰化物),吲哚乙酸酯,外酶(脂肪酶和蛋白酶)的下调。三个不同的 N -酰基高丝氨酸内酯分子。此外,除了消除这些生物控制性状外, gacS gacA 突变还导致VI型分泌机制的表达减少,藻酸盐的生物合成和生物膜形成。在 gacA 突变体中,与 rsmY rsmZ 不同,完全删除了 rsmX 的表达。 gacA 突变体中三个sRNA中的任何一个的过表达都将抵消多效性变化并恢复野生型表型,表明这些sRNA的功能冗余。总之,我们的数据表明,黄铜假单胞菌的表型转换是由 gacS-gacA 系统中的突变引起的。

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