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An engineered Pseudomonas putida can simultaneously degrade organophosphates, pyrethroids and carbamates.

Sci. Total Environ.. 2018-07; 
GongTing,XuXiaoqing,DangYulei,KongAnnie,WuYunbo,LiangPeixin,WangShufang,YuHuilei,XuPing,Yang
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Gene Synthesis … The strains, plasmids, and primers used in this study are listed in Table 1. The detailed information on the inserted exogenous genes is shown in Table 2. The five gene cassettes, including mpd-pytH, mcd, cehA, gfp, and vgb, were chemically synthesized by Genscript Co … Get A Quote

摘要

Agricultural soils are often polluted with a variety of pesticides. Unfortunately, natural microorganisms lack the capacity to simultaneously degrade different types of pesticides. Currently, synthetic biology provides powerful approaches to create versatile degraders. In this work, a biosafety strain Pseudomonas putida KT2440 was engineered for simultaneous degradation of organophosphates, pyrethroids, and carbamates, enhanced oxygen-sequestering capability, and real-time monitoring by targeted insertion of four pesticide-degrading genes, vgb, and gfp into the chromosome using a scarless genome-editing method. The resulting recombinant strain, designated as P. putida KTUe, could completel... More

关键词

Bioremediation,Metabolic engineering,Pesticide,Pseudomonas putida KT