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Isolation and characterization of an atrazine-degrading Rhodococcus sp. strain MB-P1 from contaminated soil

机译:降解阿特拉津的红球菌的分离和鉴定。污染土壤中的MB-P1菌株

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The aim of this study is to isolate and characterize organisms capable of utilizing high concentration atrazine from the contaminated sites. A selective enrichment was used for isolating atrazine-degrading organisms from the contaminated sites resulting in isolation of an efficient atrazine-degrading organism designated as strain MB-P1. On the basis of 16S rRNA gene sequencing, total cellular fatty acid analysis and physiological and biochemical tests, strain MB-P1 was identified as a member of genus Rhodococcus. High performance liquid chromatography was performed to identify the atrazine degradation intermediates demonstrating that the degradation proceeds via formation of 'de-ethylatrazine' and 'de-isopropylatrazine'. Further, plasmid curing by SDS method showed atrazine-degrading gene(s) to be plasmid-encoded. We have successfully isolated a Rhodococcus sp. strain MB-P1 which is capable of utilizing atrazine as sole source of carbon and energy at very high concentrations of 1000 ppm. The pathway for degradation of atrazine has also been determined. The metabolic gene(s) responsible for atrazine degradation was found to be plasmid-encoded. Rhodococcus sp. strain MB-P1 could be used as an ideal model system for in-situ degradation and restoration of ecological niches which are heavily contaminated with atrazine.
机译:这项研究的目的是从受污染的地方分离并鉴定能够利用高浓度at去津的生物。选择性富集用于从污染部位分离降解at去津的生物,从而分离出称为MB-P1菌株的有效降解r去津的生物。根据16S rRNA基因测序,总细胞脂肪酸分析和生理生化测试,菌株MB-P1被鉴定为红球菌属成员。进行了高效液相色谱以鉴定r去津降解中间体,这表明降解是通过形成“去乙基-去津”和“去异丙基at去津”而进行的。此外,通过SDS方法的质粒固化显示阿特拉津降解基因被质粒编码。我们已经成功分离出红球菌。 MB-P1菌株能够在1000 ppm的极高浓度下利用at去津作为唯一的碳和能量来源。还确定了阿特拉津的降解途径。发现负责阿特拉津降解的代谢基因是质粒编码的。红球菌MB-P1菌株可用作原位降解和修复被at去津严重污染的生态位的理想模型系统。

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