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Complete genome analysis of Serratia marcescens RSC-14: A plant growth-promoting bacterium that alleviates cadmium stress in host plants

机译:粘质沙雷氏菌RSC-14的完整基因组分析:一种植物生长促进细菌可减轻宿主植物中的镉胁迫

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摘要

Serratia marcescens RSC-14 is a Gram-negative bacterium that was previously isolated from the surface-sterilized roots of the Cd-hyperaccumulator Solanum nigrum. The strain stimulates plant growth and alleviates Cd stress in host plants. To investigate the genetic basis for these traits, the complete genome of RSC-14 was obtained by single-molecule real-time sequencing. The genome of S. marcescens RSC-14 comprised a 5.12-Mbp-long circular chromosome containing 4,593 predicted protein-coding genes, 22 rRNA genes, 88 tRNA genes, and 41 pseudogenes. It contained genes with potential functions in plant growth promotion, including genes involved in indole-3-acetic acid (IAA) biosynthesis, acetoin synthesis, and phosphate solubilization. Moreover, annotation using NCBI and Rapid Annotation using Subsystem Technology identified several genes that encode antioxidant enzymes as well as genes involved in antioxidant production, supporting the observed resistance towards heavy metals, such as Cd. The presence of IAA pathway-related genes and oxidative stress-responsive enzyme genes may explain the plant growth-promoting potential and Cd tolerance, respectively. This is the first report of a complete genome sequence of Cd-tolerant S. marcescens and its plant growth promotion pathway. The whole-genome analysis of this strain clarified the genetic basis underlying its phenotypic and biochemical characteristics, underpinning the beneficial interactions between RSC-14 and plants.
机译:粘质沙雷氏菌RSC-14是一种革兰氏阴性细菌,先前已从镉超富集龙葵的表面灭菌根中分离出来。该菌株刺激植物生长并减轻寄主植物中的Cd胁迫。为了研究这些性状的遗传基础,通过单分子实时测序获得了RSC-14的完整基因组。 marcescens RSC-14的基因组包含一个5.12 Mbp长的圆形染色体,其中包含4,593个预测的蛋白质编码基因,22个rRNA基因,88个tRNA基因和41个假基因。它包含在植物生长促进中具有潜在功能的基因,其中包括与吲哚-3-乙酸(IAA)生物合成,丙酮酸合成和磷酸盐增溶有关的基因。此外,使用NCBI进行注释和使用Subsystem Technology进行快速注释可以识别出几种编码抗氧化剂酶的基因以及涉及抗氧化剂生产的基因,从而支持观察到的对Cd等重金属的抗性。 IAA途径相关基因和氧化应激反应酶基因的存在可能分别解释了促进植物生长的潜力和对Cd的耐受性。这是耐Cd粘液链球菌完整基因组序列及其植物生长促进途径的首次报道。该菌株的全基因组分析阐明了其表型和生化特性的遗传基础,为RSC-14与植物之间的有益相互作用奠定了基础。

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