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Characterization and molecular mechanism of a naturally occurring metsulfuron-methyl resistant strain of Pseudomonas aeruginosa

机译:铜绿假单胞菌天然抗甲磺隆的菌株的表征和分子机理

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摘要

Strain L36, naturally resistant to the herbicide metsulfuron-methyl (SM), was isolated and characterized with respect to the molecular mechanism of resistance. The isolate was identified as Pseudomonas aeruginosa based on bacterial morphology, physiology, cellular fatty acid, and 16S rRNA gene sequence. Minimal inhibitory concentrations of metsulfuron-methyl against the growth of L36 and wild type isolate PAO1 were 6.03 and 1.33 mM, respectively. L36 carried a nucleotide base change in the acetolactate synthase (ALS) gene that coded for a single amino acid mutation (Ala29 → Val29). The mutated ilvIH gene was functionally expressed, purified, and the kinetic properties of the purified ALS were tested. The mutant enzyme had K m for pyruvate fourfold higher than the wild type enzyme, and K i app for sulfonylureas some 30-fold higher. The A29 V mutation in the ALS resulted in the resistance of P. aeruginosa to sulfonylurea herbicides but not to imidazolinone herbicides.
机译:分离出对除草剂甲磺隆甲基(SM)具有天然抗性的菌株L36,并根据抗性的分子机理对其进行了表征。根据细菌的形态,生理,细胞脂肪酸和16S rRNA基因序列,该分离株被鉴定为铜绿假单胞菌。甲磺隆对L36和野生型分离株PAO1生长的最小抑制浓度分别为6.03和1.33 mM。 L36在乙酰乳酸合酶(ALS)基因中携带一个碱基碱基变化,该基因编码单个氨基酸突变(Ala29→Val29)。突变的ilvIH基因在功能上得到表达,纯化,并测试了纯化的ALS的动力学性质。突变酶的丙酮酸K m 比野生型酶高4倍,磺酰脲的K i app 高30倍。 ALS中的A29 V突变导致铜绿假单胞菌对磺酰脲类除草剂具有抗性,但对咪唑啉酮类除草剂无抗性。

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