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Genome Mining and Predictive Functional Profiling of Acidophilic Rhizobacterium Pseudomonas fluorescens Pt14

机译:嗜酸根瘤菌荧光假单胞菌Pt14的基因组挖掘和预测功能分析。

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摘要

Pseudomonas fluorescens Pt14 is a non-pathogenic and acidophilic bacterium isolated from acidic soil (pH 4.65). Genome sequencing of strain Pt14 was performed using Single Molecule Real Time (SMRT) sequencing to get insights into unique existence of this strain in acidic environment. Complete genome sequence of this strain revealed a chromosome of 5,841,722 bp having 5354 CDSs and 88 RNAs. Phylogenomic reconstruction based on 16S rRNA gene, Average Nucleotide Identity (ANI) values and marker proteins revealed that strain Pt14 shared a common clade with P. fluorescens strain A506 and strain SS101. ANI value of strain Pt14 in relation to strain A506 was found 99.23% demonstrating a very close sub-species association at genome level. Further, orthology determination among these three phylogenetic neighbors revealed 4726 core proteins. Functional analysis elucidated significantly higher abundance of sulphur metabolism (>1×) which could be one of the reasons for the survival of strain Pt14 under acidic conditions (pH 4.65). Acidophilic bacteria have capability to oxidize sulphur into sulphuric acid which in turn can make the soil acidic and genome-wide analysis of P. fluorescens Pt14 demonstrated that this strain contributes towards making the soil acidic.
机译:荧光假单胞菌Pt14是从酸性土壤(pH 4.65)中分离出来的一种非致病性和嗜酸细菌。使用单分子实时(SMRT)测序对Pt14菌株进行基因组测序,以了解该菌株在酸性环境中的独特存在。该菌株的完整基因组序列揭示了5,841,722bp的染色体,具有5354个CDS和88个RNA。基于16S rRNA基因,平均核苷酸同一性(ANI)值和标记蛋白的系统生物学重建显示,菌株Pt14与荧光假单胞菌菌株A506和SS101共享同一进化枝。发现相对于菌株A506,菌株Pt14的ANI值是99.23%,这表明在基因组水平上非常紧密的亚种关联。此外,在这三个系统发育邻居中的正畸确定表明有4726个核心蛋白。功能分析表明,硫代谢的丰度明显更高(> 1x),这可能是菌株Pt14在酸性条件(pH 4.65)下存活的原因之一。嗜酸细菌具有将硫氧化为硫酸的能力,这反过来又可以使土壤呈酸性,对荧光假单胞菌Pt14进行全基因组分析表明,该菌株有助于使土壤呈酸性。

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