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伯克霍尔德氏菌 Pyr-1 对苯并烯氟菌唑杀菌剂的生物降解:特性、降解途径、水修复和毒性评估。

Biodegradation of the strobilurin fungicide pyraclostrobin by Burkholderia sp. Pyr-1: Characteristics, degradation pathway, water remediation, and toxicity assessment.

机构信息

Anhui Provincial Key Laboratory of Molecular Enzymology and Mechanism of Major Metabolic Diseases, College of Life Sciences, Anhui Normal University, Wuhu, 241000, Anhui, PR China; Anhui Basic Discipline Research Center of Artificial Intelligence Biotechnology and Synthetic Biology, Anhui Normal University, Wuhu, 241000, Anhui, PR China.

Anhui Provincial Key Laboratory of Molecular Enzymology and Mechanism of Major Metabolic Diseases, College of Life Sciences, Anhui Normal University, Wuhu, 241000, Anhui, PR China; Anhui Basic Discipline Research Center of Artificial Intelligence Biotechnology and Synthetic Biology, Anhui Normal University, Wuhu, 241000, Anhui, PR China.

出版信息

Environ Pollut. 2024 May 1;348:123833. doi: 10.1016/j.envpol.2024.123833. Epub 2024 Mar 22.

Abstract

Pyraclostrobin, a widely used fungicide, poses significant risks to both the environment and human health. However, research on the microbial degradation process of pyraclostrobin was scarce. Here, a pyraclostrobin-degrading strain, identified as Burkholderia sp. Pyr-1, was isolated from activated sludge. Pyraclostrobin was efficiently degraded by strain Pyr-1, and completely eliminated within 6 d in the presence of glucose. Additionally, pyraclostrobin degradation was significantly enhanced by the addition of divalent metal cations (Mn and Cu). The degradation pathway involving ether bond and N-O bond cleavage was proposed by metabolite identification. The sodium alginate-immobilized strain Pyr-1 had a higher pyraclostrobin removal rate from contaminated lake water than the free cells. Moreover, the toxicity evaluation demonstrated that the metabolite 1-(4-chlorophenyl)-1H-pyrazol-3-ol significantly more effectively inhibited Chlorella ellipsoidea than pyraclostrobin, while its degradation products by strain Pyr-1 alleviated the growth inhibition of C. ellipsoidea, which confirmed that the low-toxic metabolites were generated from pyraclostrobin by strain Pyr-1. The study provides a potential strain Pyr-1 for the bioremediation in pyraclostrobin-contaminated aquatic environments.

摘要

吡唑醚菌酯是一种广泛使用的杀菌剂,对环境和人类健康都构成重大风险。然而,关于吡唑醚菌酯的微生物降解过程的研究很少。在这里,从活性污泥中分离出一种能够降解吡唑醚菌酯的菌株,鉴定为伯克霍尔德氏菌 Pyr-1。菌株 Pyr-1 能够高效降解吡唑醚菌酯,在葡萄糖存在的情况下,6 天内即可完全消除。此外,添加二价金属阳离子(Mn 和 Cu)可显著增强吡唑醚菌酯的降解。通过代谢物鉴定提出了涉及醚键和 N-O 键断裂的降解途径。与游离细胞相比,用海藻酸钠固定化的 Pyr-1 菌株从受污染的湖水中去除吡唑醚菌酯的去除率更高。此外,毒性评估表明代谢物 1-(4-氯苯基)-1H-吡唑-3-醇比吡唑醚菌酯更有效地抑制了椭圆小球藻,而 Pyr-1 菌株产生的其降解产物则缓解了椭圆小球藻的生长抑制,这证实了低毒代谢物是由 Pyr-1 菌株从吡唑醚菌酯生成的。该研究为吡唑醚菌酯污染的水生环境的生物修复提供了一种潜在的 Pyr-1 菌株。

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