从耕地土壤中分离的铜绿假单胞菌菌株的全基因组测序和比较基因组分析揭示了重金属抗性和密码子生物学的新见解。

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY
Current Genetics Pub Date : 2022-08-01 Epub Date: 2022-06-28 DOI:10.1007/s00294-022-01245-z
Jayanti Saha, Sourav Dey, Ayon Pal
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引用次数: 5

摘要

土壤中非必需持久性重金属和类金属浓度升高对必需土壤微生物和植物有害,导致多样性和生物量减少。因此,从耕地中分离、筛选和全基因组分析具有抗重金属和促进植物生长的内在能力的强效菌株是生物补救应用的关键。这项研究也是在做同样的尝试。本研究从水田中分离得到一株铜绿假单胞菌,并对其进行了FTIR代谢分析、ICP-MS金属摄取分析、全基因组测序和比较密码子使用分析。ICP-MS研究揭示了在累积金属胁迫下生长的指数阶段对Cd, Zn和Co的高度吸收,并通过全基因组测序检测到基因组中的cadA基因和czcCBA操纵子进一步证实了这一点。这株铜绿假单胞菌还含有copA、chrA、znuA、mgtE、corA等基因,这些基因可以抵抗不同的重金属,如Cd、Zn、Co、Cu、Cr等。在基因组和基因水平上对40株假单胞菌进行了密码子使用偏倚的比较分析,在两个管家基因的背景下考虑了几种重金属抗性基因,结果表明在所研究的菌株中存在相对较强的密码子使用偏倚。通过这项工作,我们努力探索重金属抗性细菌(从耕地土壤中分离)和全基因组序列分析,以深入了解金属抗性,为未来的生物补救应用提供帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Whole genome sequencing and comparative genomic analyses of Pseudomonas aeruginosa strain isolated from arable soil reveal novel insights into heavy metal resistance and codon biology.

Whole genome sequencing and comparative genomic analyses of Pseudomonas aeruginosa strain isolated from arable soil reveal novel insights into heavy metal resistance and codon biology.

Elevated concentration of non-essential persistent heavy metals and metalloids in the soil is detrimental to essential soil microbes and plants, resulting in diminished diversity and biomass. Thus, isolation, screening, and whole genomic analysis of potent strains of bacteria from arable lands with inherent capabilities of heavy metal resistance and plant growth promotion hold the key for bio remedial applications. This study is an attempt to do the same. In this study, a potent strain of Pseudomonas aeruginosa was isolated from paddy fields, followed by metabolic profiling using FTIR, metal uptake analysis employing ICP-MS, whole genome sequencing and comparative codon usage analysis. ICP-MS study provided insights into a high degree of Cd uptake during the exponential phase of growth under cumulative metal stress to Cd, Zn and Co, which was further corroborated by the detection of cadA gene along with czcCBA operon in the genome upon performing whole-genome sequencing. This potent strain of Pseudomonas aeruginosa also harboured genes, such as copA, chrA, znuA, mgtE, corA, and others conferring resistance against different heavy metals, such as Cd, Zn, Co, Cu, Cr, etc. A comparative codon usage bias analysis at the genomic and genic level, whereby several heavy metal resistant genes were considered in the backdrop of two housekeeping genes among 40 Pseudomonas spp. indicated the presence of a relatively strong codon usage bias in the studied strain. With this work, an effort was made to explore heavy metal-resistant bacteria (isolated from arable soil) and whole genome sequence analysis to get insight into metal resistance for future bio remedial applications.

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来源期刊
Current Genetics
Current Genetics 生物-遗传学
CiteScore
6.00
自引率
0.00%
发文量
34
审稿时长
1 months
期刊介绍: Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical. Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.
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