Isolation Characterization and Diversity of Indigenous Pesticide Degrading Microbes from Selected Agro Ecological Zones of Malawi

Samuel Mwafulirwa
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Abstract

Pesticide xenobiotics have a great impact on bio argumentation, bio-magnification, and environment degradation regardless of being adopted by green revolution technologies. Bioremediation is widely accepted because it’s cheap, practical at the same time environmentally friendly. Bioremediation advocates indigenous microbes use to degrade pesticides, therefore a study has been performed to show prospects of degrading microorganisms. The study isolated microbes from different agro ecological zones to assess their capacity to utilize some pesticide as sole carbon source complimented by the presence of laccase gene. Biochemical test and genetic characterization using 16S rDNA genes were used in identification. Diversified species and strains of genus Enterobacter, Klebsiella, Pseudomonas, Pantoea and Leclercia, were found to degrade cypermethrin and acetochlor but no microbe was found to degrade dimethoate. The study adds new strain of microbes involved in degradation of cypermethrin and acetochlor and also strains that that can degrade both. The study puts proposition that pest infestation in fields is a result of abundance of xenobiotic degrading microbes due to natural selection pressure not pesticide resistance of the pest.
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马拉维选定农业生态区乡土农药降解微生物的分离、鉴定和多样性
农药外源物无论被绿色革命技术所采用,都会对生物论证、生物放大和环境退化产生巨大影响。生物修复被广泛接受,因为它便宜、实用,同时对环境友好。生物修复提倡使用本地微生物来降解农药,因此进行了一项研究来展示降解微生物的前景。本研究从不同的农业生态区分离微生物,以评估它们在存在漆酶基因的情况下利用某种农药作为唯一碳源的能力。采用生化试验和16S rDNA基因进行遗传鉴定。肠杆菌属、克雷伯氏菌属、假单胞菌属、泛菌属和勒克莱尔属等多种菌种和菌株均能降解氯氰菊酯和乙草胺,但未发现能降解乐果果的微生物。该研究增加了参与降解氯氰菊酯和乙草胺的新菌株,以及可以降解两者的菌株。本研究提出,田间害虫的发生是自然选择压力下外源降解微生物大量存在的结果,而非害虫自身的抗药性。
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