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肯尼亚恩佐亚河流域土壤中呋喃丹的生物降解

Biodegradation of carbofuran in soils within Nzoia River Basin, Kenya.

作者信息

Onunga Daniel O, Kowino Isaac O, Ngigi Anastasiah N, Osogo Aggrey, Orata Francis, Getenga Zachary M, Were Hassan

机构信息

a Department of Pure and Applied Chemistry , Masinde Muliro University of Science and Technology , Kakamega , Kenya.

出版信息

J Environ Sci Health B. 2015;50(6):387-97. doi: 10.1080/03601234.2015.1011965.

Abstract

Carbofuran (2,3-dihydro-2,2-dimethylbenzofuran-7-yl methylcarbamate) has been used within the Nzoia River Basin (NRB), especially in Bunyala Rice Irrigation Schemes, in Kenya for the control of pests. In this study, the capacity of native bacteria to degrade carbofuran in soils from NRB was investigated. A gram positive, rod-shaped bacteria capable of degrading carbofuran was isolated through liquid cultures with carbofuran as the only carbon and nitrogen source. The isolate degraded 98% of 100-μg mL(-1) carbofuran within 10 days with the formation of carbofuran phenol as the only detectable metabolite. The degradation of carbofuran was followed by measuring its residues in liquid cultures using high performance liquid chromatography (HPLC). Physical and morphological characteristics as well as molecular characterization confirmed the bacterial isolate to be a member of Bacillus species. The results indicate that this strain of Bacillus sp. could be considered as Bacillus cereus or Bacillus thuringiensis with a bootstrap value of 100% similar to the 16S rRNA gene sequences. The biodegradation capability of the native strains in this study indicates that they have great potential for application in bioremediation of carbofuran-contaminated soil sites.

摘要

克百威(2,3-二氢-2,2-二甲基苯并呋喃-7-基甲基氨基甲酸酯)已在肯尼亚的恩佐亚河流域(NRB)使用,特别是在布尼亚拉水稻灌溉区用于害虫防治。在本研究中,对NRB土壤中天然细菌降解克百威的能力进行了调查。通过以克百威作为唯一碳源和氮源的液体培养,分离出一种能够降解克百威的革兰氏阳性杆状细菌。该分离物在10天内降解了100μg/mL克百威中的98%,形成了克百威酚作为唯一可检测的代谢物。通过使用高效液相色谱(HPLC)测量其在液体培养物中的残留量来跟踪克百威的降解情况。物理和形态特征以及分子特征证实该细菌分离物是芽孢杆菌属的成员。结果表明,这种芽孢杆菌菌株可被认为是蜡样芽孢杆菌或苏云金芽孢杆菌,与16S rRNA基因序列的自展值相似性为100%。本研究中天然菌株的生物降解能力表明它们在克百威污染土壤场地的生物修复中具有巨大的应用潜力。

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