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Isolation and identification of synthetic pyrethroid-degrading bacteria

机译:合成拟除虫菊酯降解菌的分离与鉴定

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Aims: To isolate, select, identify and assess the potential for the biodegradation of synthetic pyrethroids (SPs) in sheep dips. Methods and Results: SP-degrading bacteria were isolated from a mixed soil sample consisting of garden soil and soils from farms where SPs had been used. The two largest in size were then identified using microscopy, biochemical and genetic techniques to be members of the genera Pseudomonas and Serratia. By comparing the 16S rRNA gene sequences, the Pseudomonas sp. discovered was shown to group within the Pseudomonas fluorescens intrageneric cluster. The Serratia isolated was closely related to Serratia plymuthica. Cell growth and degradation was greatest in the Pseudomonas sp. culture where there was breakdown of 60 mg l~(-1) to 6 mg l~(-1) technical cypermethrin in 20 days. Tolerance to the SPs was greater in the Pseudomonas sp. but was found to depend on the availability of other carbon sources and nutrients. Conclusions: The bacteria characterized show the potential to be used in a bioremediation application for the treatment of SP residues. Significance and Impact of the Study: The SP-degrading bacteria may have use in the disposal of sued SP residues and with further research could lead to an alternative route of disposal for use in agriculture or industry.
机译:目的:分离,选择,鉴定和评估羊粪中合成拟除虫菊酯(SP)的生物降解潜力。方法和结果:从混合土壤样品中分离出降解SP的细菌,该样品由花园土壤和使用SP的农场的土壤组成。然后使用显微镜,生化和遗传技术鉴定出两个最大的大小,它们是假单胞菌属和沙雷氏菌属的成员。通过比较16S rRNA基因序列,假单胞菌属。发现发现的分子在荧光假单胞菌属内群内分组。分离的沙雷氏菌与粘膜沙雷氏菌密切相关。假单胞菌种中细胞生长和降解最大。在20天内将60 mg l〜(-1)分解为6 mg l〜(-1)工业氯氰菊酯。假单胞菌对SP的耐受性更大。但被发现取决于其他碳源和营养素的可用性。结论:表征的细菌显示出可用于生物修复应用中处理SP残留物的潜力。研究的意义和影响:降解SP的细菌可能已用于处理所起诉的SP残留物,并且随着进一步的研究可能会导致用于农业或工业的替代处理途径。

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