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Bioconversion of Hg and Molecular Characterization of merA and merB Gene in a Clone Constructed by Culture Independent Technique

机译:培养独立技术构建克隆中MERA和MERB基因的生物转化及MERA和MERB基因的分子表征

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摘要

The anthropogenic use of mercury (Hg) has led to the wide outlook to the problem and health concerns caused by it. Metagenomic approach has opened the galore to the ease of access to the gene pool. The permissible limit of Hg is 0.001ppm but there are some sites in India having very high concentration of Hg (Ulhas estuary, Mumbai, having 107 ppm Hg). Library of clones containing mer operon, was constructed using culture independent technique. Out of 150 clones studied, UC07 has shown growth at 70ppm Hg. It has also shown antibiotic resistance towards vancomycin (30 mcg), Kanamycin (30 mcg) and Norfllaxin (10 mcg). Clone has the capability to volatilize 97.94% of 5ppm Hg which gradually decreased to 47% with the increase in Hg to 70ppm. Validation study using actual site (Ulhas soil) showed the effective conversion of Hg up to 99.9% by UC07. The clone contains both merA and merB genes, so it can be effectively utilized for organic and inorganic contaminated site. This is the first study of validation of clone using Hg contaminated site. The results are quite promising which shows that UC07 can be utilized effectively for bioconversion of both organic as well as inorganic form of Hg contamination.
机译:人为使用汞(HG)导致了对其引起的问题和健康问题的广泛前景。 Metagenomic方法已经开启了纳戈尔以易于进入基因库。 Hg的允许极限为0.001ppm,但印度有一些位点,具有非常高的Hg浓度(Ulhas口,孟买,具有107ppm hg)。使用培养独立技术构建含有MER操纵子的克隆库。在150名克隆中研究,UC07在70ppm hg时显示出现增长。它还表现出对万古霉素(30mcg),卡那霉素(30mcg)和Norfllaxin(10mcg)的抗生素耐药性。克隆具有挥发97.94%的5ppm Hg的能力,其逐渐降低至47%,随着Hg至70ppm的增加。使用实际网站(ULHAS土壤)的验证研究表明,UC07的HG高达99.9%的有效转化。克隆含有MERA和MERB基因,因此可以有效地用于有机和无机污染部位。这是使用Hg污染部位验证克隆的第一次研究。结果非常有希望,表明UC07可以有效地用于有机的生物转化以及无机形式的Hg污染。

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