Genome Sequencing Revealed Chromium and Other Heavy Metal Resistance Genes in E. cloacae B2-Dha

Neelu Nn, Sibdas G, A. R., Abul M, Bjorn O, Jana J
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引用次数: 8

Abstract

The previously described chromium resistant bacterium, Enterobacter cloacae B2-DHA, was isolated from leather manufacturing tannery landfill in Bangladesh. Here we report the entire genome sequence of this bacterium containing chromium and other heavy metal resistance genes. The genome size and the number of genes, determined by massive parallel sequencing and comparative analysis with other known Enterobacter genomes, are predicted to be 4.22 Mb and 3958, respectively. Nearly 160 of these genes were found to be involved in binding, transport, and catabolism of ions as well as efflux of inorganic and organic compounds. Specifically, the presence of two chromium resistance genes, chrR and chrA was verified by polymerase chain reaction. The outcome of this research highlights the significance of this bacterium in bioremediation of chromium and other toxic metals from the contaminated sources.
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大肠杆菌B2-Dha基因组测序揭示了其抗铬和其他重金属基因
先前描述的耐铬细菌阴沟肠杆菌B2-DHA是从孟加拉国制革厂垃圾填埋场分离出来的。在这里,我们报告了含铬和其他重金属抗性基因的细菌的全基因组序列。通过大量平行测序和与其他已知肠杆菌基因组的比较分析,预测该肠杆菌的基因组大小和基因数量分别为4.22 Mb和3958 Mb。这些基因中有近160个被发现与离子的结合、运输和分解代谢以及无机和有机化合物的外排有关。具体来说,通过聚合酶链反应证实了chrR和chrA两个抗铬基因的存在。本研究结果强调了该细菌在铬和其他有毒金属污染源的生物修复中的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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