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Insight Into Microbial Applications for the Biodegradation of Pyrethroid Insecticides

机译:拟除虫菊酯杀虫剂微生物降解的微生物应用研究。

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摘要

Pyrethroids are broad-spectrum insecticides and presence of chiral carbon differentiates among various forms of pyrethroids. Microbial approaches have emerged as a popular solution to counter pyrethroid toxicity to marine life and mammals. Bacterial and fungal strains can effectively degrade pyrethroids into non-toxic compounds. Different strains of bacteria and fungi such as Bacillus spp., Raoultella ornithinolytica, Psudomonas flourescens, Brevibacterium sp., Acinetobactor sp., Aspergillus sp., Candida sp., Trichoderma sp., and Candia spp., are used for the biodegradation of pyrethroids. Hydrolysis of ester bond by enzyme esterase/carboxyl esterase is the initial step in pyrethroid biodegradation. Esterase is found in bacteria, fungi, insect and mammalian liver microsome cells that indicates its hydrolysis ability in living cells. Biodegradation pattern and detected metabolites reveal microbial consumption of pyrethroids as carbon and nitrogen source. In this review, we aim to explore pyrethroid degrading strains, enzymes and metabolites produced by microbial strains. This review paper covers in-depth knowledge of pyrethroids and recommends possible solutions to minimize their environmental toxicity.
机译:拟除虫菊酯是广谱杀虫剂,在各种形式的拟除虫菊酯中手性碳的存在是不同的。微生物方法已经成为抵抗拟除虫菊酯对海洋生物和哺乳动物毒性的流行解决方案。细菌和真菌菌株可以有效地将拟除虫菊酯降解为无毒化合物。拟除虫菊酯的生物降解使用了不同的细菌和真菌菌株,如芽孢杆菌属,解脲劳尔氏菌,粉状假单胞菌,短杆菌属,不动杆菌属,曲霉属,念珠菌属,木霉属和Candia属。 。酶酯酶/羧基酯酶水解酯键是拟除虫菊酯生物降解的第一步。在细菌,真菌,昆虫和哺乳动物肝微粒体细胞中发现了酯酶,这表明其在活细胞中的水解能力。生物降解模式和检测到的代谢物显示拟除虫菊酯作为碳和氮源的微生物消耗。在这篇综述中,我们旨在探讨拟除虫菊酯降解菌株,微生物菌株产生的酶和代谢产物。这篇综述文章涵盖了拟除虫菊酯的深入知识,并提出了可能的解决方案以最大程度地降低其对环境的毒性。

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