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一株内生细菌菌株,阴沟肠杆菌 TMX-6,可增强水稻植株中噻虫嗪的降解。

An endophytic bacterial strain, Enterobacter cloacae TMX-6, enhances the degradation of thiamethoxam in rice plants.

机构信息

College of Marine Science and Biological Engineering, Qingdao University of Science and Technology, Qingdao, 266042, China; Jiangsu Key Laboratory for Food Quality and Safety-State Key Laboratory Cultivation Base of Ministry of Science and Technology, 50 Zhongling Street, Nanjing, 210014, China.

Jiangsu Key Laboratory for Food Quality and Safety-State Key Laboratory Cultivation Base of Ministry of Science and Technology, 50 Zhongling Street, Nanjing, 210014, China.

出版信息

Chemosphere. 2021 Apr;269:128751. doi: 10.1016/j.chemosphere.2020.128751. Epub 2020 Oct 26.

Abstract

Thiamethoxam (TMX) has been widely used over the last two decades. TMX residue in the environment has drawn great public attention. An endophytic bacterial strain, TMX-6, capable of degrading TMX was isolated from wild Ophiopogon japonicus and was identified as Enterobacter cloacae by morphology and 16S ribosomal DNA sequence analysis. After being marked with green fluorescent protein plasmid, TMX-6 was successfully inoculated in the rice plants (Oryza sativa L.). The numbers of TMX-6 in non-TMX treated rice plants ranged from 3.9 to 4.6 log CFU g in the roots, and from 2.7 to 4.0 log CFU g in the shoots; while ranged from 3.9 to 5.3 log CFU g in roots and from 2.7 to 4.1 log CFU g in shoots of TMX treated rice plants. Nearly 28%, 33%, 77% and 99% of TMX was removed from the hydroponic medium (HM), HM with strain TMX-6, HM with uninoculated rice and HM with inoculated rice, respectively, at the end of a 21-day (d) experiment period, and the correspondent half-lives of TMX were 46.2, 38.5, 9.9 and 4.7 d, respectively. Eleven TMX metabolites were identified in both inoculated and uninoculated rice plants through metabolomics data analysis. The intensity of TMX- NH, TMX-urea and clothianidin increased more than 3 times in inoculated rice plants on day 6. This demonstrates the usefulness of the strain TMX-6 to enhance the degradation of TMX-contaminated substrates and reduce levels of toxic insecticides in crop plants.

摘要

噻虫嗪(TMX)在过去二十年中被广泛使用。环境中的 TMX 残留引起了公众的极大关注。从野生麦冬中分离到一株能够降解 TMX 的内生细菌菌株 TMX-6,通过形态学和 16S 核糖体 DNA 序列分析鉴定为阴沟肠杆菌。在被绿色荧光蛋白质粒标记后,TMX-6 成功接种到水稻(Oryza sativa L.)中。在未处理 TMX 的水稻植株中,TMX-6 的数量在根部分别为 3.9 到 4.6 log CFU g,在茎叶部分分别为 2.7 到 4.0 log CFU g;而在处理 TMX 的水稻植株中,TMX-6 的数量在根部分别为 3.9 到 5.3 log CFU g,在茎叶部分分别为 2.7 到 4.1 log CFU g。在为期 21 天的实验结束时,从水培培养基(HM)、接种 TMX-6 的 HM、未接种水稻的 HM 和接种水稻的 HM 中分别去除了近 28%、33%、77%和 99%的 TMX,相应的 TMX 半衰期分别为 46.2、38.5、9.9 和 4.7 d。通过代谢组学数据分析,在接种和未接种水稻植株中鉴定出 11 种 TMX 代谢物。在接种水稻植株中,TMX-NH、TMX-urea 和噻虫啉的强度在第 6 天增加了 3 倍以上。这表明菌株 TMX-6 可用于增强 TMX 污染底物的降解并降低作物中有毒杀虫剂的水平。

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