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蚯蚓肠道细菌中间布鲁氏菌PDB13对新烟碱类杀虫剂啶虫脒的生物降解及其生态毒性

Biodegradation of neonicotinoid insecticide acetamiprid by earthworm gut bacteria Brucella intermedium PDB13 and its ecotoxicity.

作者信息

Elango Duraisamy, Siddharthan Nagarajan, Alaqeel Shatha Ibrahim, Subash Velu, Manikandan Velu, Almansour Abdulrahman I, Kayalvizhi Nagarajan, Jayanthi Palaniyappan

机构信息

Department of Environmental Science, Periyar University, Salem 636011, Tamil Nadu, India.

Department of Microbiology, Periyar University, Salem 636011, Tamil Nadu, India.

出版信息

Microbiol Res. 2023 Mar;268:127278. doi: 10.1016/j.micres.2022.127278. Epub 2022 Dec 13.

Abstract

Extensive use of neonicotinoid insecticides in recent decade had contaminated water and soil systems and poses serious environmental and health risk. Microbial degradation of toxic contaminants in the environment has been established as a sustainable tool towards its remediation. Under this context, the present study focused on the biodegradation of neonicotinoid insecticide acetamiprid, by bacterial strain Brucella intermedia PDB13 isolated from the gut of the acetamiprid exposed earthworms. To enhance acetamiprid biodegradation, suitable parameters such as pH, temperature, inoculum size and acetamiprid concentration range were optimised using Response Surface Methodology (RSM). The experimental results showed that the Brucella intermedium PDB13 can tolerate and degrade relatively high concentrations of acetamiprid (50 - 350 mg L). The results confirmed that maximum degradation of about 89.72% was achieved under optimized conditions. Further, confirmation of acetamiprid biodegradation was assessed through the occurrence of its degraded metabolites through HPLC, FTIR, and LCMS analysis. Based on this analysis, possible acetamiprid biodegradation pathway by Brucella intermedia PDB13 was proposed. Additionally, cytotoxicity, earthworm acute toxicity, and zebrafish embryo toxicity studies were also performed to assess the toxicity variations between the parent compound and its metabolites. The acetamiprid treated group resulted in cytotoxic effects apparently, with the increase in aberrant cells frequency (22.5 ± 3.3), when compared with its metabolites (2.3 ± 4.3) and control (1.9 ± 5.6) respectively. All these results evidently reported the degradation potential of Brucella intermedia PDB13, thereby establishing the scope for further advanced biodegradation studies towards mitigating the pesticide pollution.

摘要

近十年来,新烟碱类杀虫剂的大量使用污染了水和土壤系统,并带来了严重的环境和健康风险。环境中有毒污染物的微生物降解已被确立为一种可持续的修复工具。在此背景下,本研究聚焦于从暴露于啶虫脒的蚯蚓肠道中分离出的中间布鲁氏菌PDB13菌株对新烟碱类杀虫剂啶虫脒的生物降解。为了提高啶虫脒的生物降解率,使用响应面法(RSM)优化了诸如pH值、温度、接种量和啶虫脒浓度范围等合适参数。实验结果表明,中间布鲁氏菌PDB13能够耐受并降解相对高浓度的啶虫脒(50 - 350毫克/升)。结果证实,在优化条件下实现了约89.72%的最大降解率。此外,通过高效液相色谱(HPLC)、傅里叶变换红外光谱(FTIR)和液相色谱 - 质谱联用(LCMS)分析其降解代谢产物的出现,评估了啶虫脒生物降解的情况。基于此分析,提出了中间布鲁氏菌PDB13可能的啶虫脒生物降解途径。此外,还进行了细胞毒性、蚯蚓急性毒性和斑马鱼胚胎毒性研究,以评估母体化合物及其代谢产物之间的毒性差异。与代谢产物组(2.3±4.3)和对照组(1.9±5.6)相比,啶虫脒处理组明显产生了细胞毒性作用,异常细胞频率增加(22.5±3.3)。所有这些结果都清楚地表明了中间布鲁氏菌PDB13的降解潜力,从而为进一步开展减轻农药污染的高级生物降解研究奠定了基础。

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