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Biodegradation of Atrazine by the Novel Klebsiella variicola Strain FH-1

机译:新型水痘克雷伯菌菌株FH-1对阿特拉津的生物降解作用

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摘要

Bacterial strain FH-1 with high efficiency of degrading Atrazine is separated by means of enrichment culture from the soil applied with Atrazine for many years. FH-1, recognized as Klebsiella variicola based on phylogenetic analysis of 16S rDNA sequences, can grow with Atrazine which is the sole nitrogen source. In fluid inorganic salt medium, the optimal degradation temperature, pH value, and initial concentration of Atrazine are 25°C, 9.0, and 50 mg L–1, respectively, and the degradation rate of Atrazine by strain FH-1 reached 81.5% in 11 d of culture. The degrading process conforms to the kinetics equation of pesticide degradation. Among the metal ions tested, Zn2+ (0.2 mM) has the most significant effect of facilitation on the degradation of Atrazine. In the fluid medium with Zn2+, the degradation rate of Atrazine is increased to 72.5%, while the Cu2+ (0.2 mM) inhibits the degradation of Atrazine. The degradation products of Atrazine by strain FH-1 were identified as HEIT (2-hydroxyl-4-ethylamino-6-isopropylamino-1,3,5-triazine), MEET (2-hydroxyl-4,6-bis(ethylamino)-1,3,5-triazine), and AEEO (4,6-bis(ethylamino)-1,3,5-triazin-2(1H)-one) by HPLC-MS/MS. Three genes (atzC, trzN, and trzD) encoding for Atrazine degrading enzymes were identified by PCR and sequencing in strain FH-1. This study provides additional theoretical support for the application of strain FH-1 in bioremediation of fields polluted by Atrazine.
机译:多年来,通过富集培养从富含阿特拉津的土壤中分离出高效降解阿特拉津的细菌菌株FH-1。根据对16S rDNA序列的系统进化分析,FH-1被称为水痘克雷伯菌,可以与唯一的氮源阿特拉津一起生长。在液体无机盐介质中,阿特拉津的最佳降解温度,pH值和初始浓度分别为25°C,9.0和50μmgL –1 ,以及菌株对阿特拉津的降解率FH-1在培养11 d时达到81.5%。降解过程符合农药降解动力学方程。在测试的金属离子中,Zn 2 + (0.2μmM)对促进At去津的降解具有最显着的促进作用。在具有Zn 2 + 的流体介质中,At去津的降解率提高到72.5%,而Cu 2 + (0.2μmM)抑制inhibit去津的降解。 FH-1菌株对r去津的降解产物被鉴定为HEIT(2-羟基-4-乙基氨基-6-异丙氨基-1,3,5-三嗪),MEET(2-羟基-4,6-双(乙基氨基) -1,3,5-三嗪)和AEEO(4,6-双(乙基氨基)-1,3,5-三嗪-2(1H)-一)通过HPLC-MS / MS分析。通过PCR和在菌株FH-1中测序鉴定了编码阿特拉津降解酶的三个基因(atzC,trzN和trzD)。这项研究为菌株FH-1在阿特拉津污染田间的生物修复中的应用提供了额外的理论支持。

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