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嘧磺隆降解菌的分离与特性

Isolation and characteristics of sulfentrazone-degrading bacteria.

作者信息

Melo Christiane A D, Massenssini André M, Passos Ana Beatriz R J, Carvalho Felipe P, Ferreira Lino R, Silva Antonio Alberto, Costa Maurício D

机构信息

a Department of Crop Science , Federal University of Vicosa , Viçosa , Minas Gerais , Brazil.

b Department of Microbiology , Federal University of Vicosa , Viçosa , Minas Gerais , Brazil.

出版信息

J Environ Sci Health B. 2017 Feb;52(2):115-121. doi: 10.1080/03601234.2016.1248136. Epub 2016 Nov 7.

Abstract

This study aimed to isolate and characterize bacteria able to use sulfentrazone in the commercial formulation as their sole carbon source. The isolation of the potential sulfentrazone-degrading bacteria was made from soil samples with a recent history of herbicide application and from isolates identified through rDNA sequencing. Subsequently, we assessed the growth of the isolates and their sulfentrazone degradation ability using high-performance liquid chromatography. Twenty-six potential sulfentrazone-degrading bacterial isolates were obtained in pure culture. Through analysis of the rDNA sequences, the predominance of bacterial species of the genus Pseudomonas was found. The isolates presented a differentiated ability of sulfentrazone degradation. The presence of herbicide in the culture medium reduced the log phase of four isolates. Pseudomonas putida, Pseudomonas lutea, Pseudomonas plecoglossicida and three isolates of Pseudomonas sp. showed higher sulfentrazone degradation capacity, which varied from 4 to 15%. This is the first report of the Pseudomonas genre capable of sulfentrazone degradation. The isolates obtained present potential use in bioremediation programs for soil contaminated with sulfentrazone.

摘要

本研究旨在分离和鉴定能够利用商业配方中的嗪酮作为唯一碳源的细菌。从近期使用过除草剂的土壤样本以及通过rDNA测序鉴定出的菌株中分离出潜在的嗪酮降解细菌。随后,我们使用高效液相色谱法评估了这些菌株的生长情况及其嗪酮降解能力。通过纯培养获得了26株潜在的嗪酮降解细菌分离株。通过对rDNA序列的分析,发现假单胞菌属细菌占优势。这些分离株表现出不同的嗪酮降解能力。培养基中除草剂的存在缩短了4株分离株的对数期。恶臭假单胞菌、淡黄假单胞菌、鳜鱼假单胞菌和3株假单胞菌属分离株表现出较高的嗪酮降解能力,降解率在4%至15%之间。这是关于假单胞菌属能够降解嗪酮的首次报道。所获得的分离株在被嗪酮污染的土壤生物修复计划中具有潜在用途。

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