关于 Georgenia sp. 10 个基因组中重金属抗性基因的简要研究和 Georgenia sp. SUBG003 的体外确认

IF 6.6 Q1 ENGINEERING, ENVIRONMENTAL
Tejas Oza , Pooja Patel , Vrinda S. Thaker
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引用次数: 0

摘要

重金属污染一直是世界许多地方的一个严重问题,对生物系统造成了极大的影响。许多微生物都具有利用有毒金属的能力,可用于补救。本研究对 11 种不同的 Georgenia sps 基因组中的汞(Hg)、铅(Pb)、钴(Co)、锌(Zn)和镁(Mg)抗性基因进行了比较分析,并通过在 HgCl2、CdCl2、CoCl2 和 ZnCl2(浓度不同,时间长达 144 小时)的液体培养基和固体培养基上的生长,确认了 Georgenia sp.在一段时间内,氯化汞初始浓度为 0.01 毫摩尔、0.03 毫摩尔和 0.05 毫摩尔时,生长受到控制;在中间浓度为 0.07 毫摩尔和 0.09 毫摩尔时,生长受到临时影响;而在 0.11 毫摩尔、0.13 毫摩尔和 0.15 毫摩尔的较高浓度下,生长有所增加。而 CdCl2、CoCl2 和 ZnCl2 在浓度从 0.01 mM 增加到 0.5 mM 时,生长受到抑制。所测试的浓度范围高于所观察到的污染源,并讨论了其在补救中可能发挥的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A brief study on heavy metal resistance genes from 10 genomes of Georgenia sp. and In vitro confirmation on Georgenia sp. SUBG003

Heavy metal pollution is consistently a critical issue in many parts of the world, affecting living systems remarkably. Many microorganisms possess such toxic metals utilizing capacities that can be explored for remediation. The present study demonstrates a comparative analysis of Mercury (Hg), Lead (Pb), Cobalt (Co), Zinc (Zn), and Magnesium (Mg) resistance genes in genomes of 11 different Georgenia sps. and confirmation of this gene pool in Georgenia sp. SUBG003 by growth on HgCl2, CdCl2, CoCl2, and ZnCl2 with varying concentrations and periods of up to 144hrs in a liquid medium and on a solid medium. Over a period HgCl2 initial concentrations 0.01 mM, 0.03 mM, and 0.05 mM showed controlled growth, at interim concentrations of 0.07 mM, 0.09 mM were found to be an interim effect while 0.11 mM, 0.13 mM and 0.15 mM higher concentrations showed increased growth. While CdCl2, CoCl2, and ZnCl2 showed growth inhibition upon increasing concentration from 0.01 mM to 0.5 mM. The concentrations tested are in a higher range than the polluted sources observed and the probable role in remediation is discussed.

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来源期刊
Journal of hazardous materials letters
Journal of hazardous materials letters Pollution, Health, Toxicology and Mutagenesis, Environmental Chemistry, Waste Management and Disposal, Environmental Engineering
CiteScore
10.30
自引率
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审稿时长
20 days
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