4.4 Article

Removal of lindane in liquid culture using soil bacteria and toxicity assessment in human skin fibroblast and HCT116 cell lines

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ENVIRONMENTAL TECHNOLOGY
卷 44, 期 9, 页码 1213-1227

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TAYLOR & FRANCIS LTD
DOI: 10.1080/09593330.2021.1998229

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Bioremediation; ecotoxicity; lindane; plant growth-promoting; Rhodococcus

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In this study, a potent lindane degrading bacteria, Rhodococcus rhodochrous NITDBS9, was isolated from an agricultural field in Odisha, India. The bacteria showed abilities for lindane degradation and plant growth promotion. The combination with another strain further enhanced the removal efficiency of lindane. Moreover, the toxicity of lindane was significantly reduced after treatment with these bacteria.
The development of effective measures for the remediation of lindane contaminated sites is the need of the hour. In this study, a potent lindane degrading bacteria, identified as Rhodococcus rhodochrous NITDBS9 was isolated from an agricultural field of Odisha that could utilize up to 87% of 100 mg L-1 lindane when grown under liquid culture conditions in mineral salt media in 10 days. The bacteria could produce biofilm in lindane-containing media. Rhodococcus rhodochrous NITDBS9 was further characterized for its plant growth-promoting properties and it was found that the bacteria showed abilities for phytohormone, ammonia and biosurfactant production, etc. This could be beneficial for the bioremediation and improvement of crop production in contaminated sites. Ecotoxicity studies carried out for lindane, and its degradation products in mung bean and mustard seeds showed a reduction in toxicity of lindane after treatment with NITDBS9. NITDBS9 was used with a previously isolated potent lindane degrading strain Paracoccus sp. NITDBR1 in a dual mixed culture for the enhanced removal of lindane in the liquid system i.e. up to 93% in 10 days. Cytotoxicity studies were conducted with lindane before and after treatment with the single and dual mixed cultures on human skin fibroblast and HCT116 cell lines. They revealed a significant reduction in toxicity of lindane after it was bioremediated with the single and dual mixed cultures. Therefore, our proposed strategy could be efficiently used for the detoxification of the lindane-contaminated system, and further work should be done to study the use of these cultures in the contaminated soil system.

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