Siqiong Xu, Zhimeng Yang, Yiru Wang, Cuiwei Chu, Yongchuang Liu, Hongzhan Liu, Liuyong Xie, Jiguo Qiu, Jian He
Imazamox targets anabolic acetohydroxyacid synthase (AHAS), and studying its resistant mutants is vital for developing herbicide-resistant transgenic crops. In this study, an imazamox-tolerant Paenibacillus sp. JY-9 was isolated, and two AHAS genes, PnAHASc1 and PnAHASc2, were cloned. Additionally, a highly resistant mutant, JYm56, harboring triple mutations (A37S+A65V+D66H) in PnAHASc1 (designated as PnAHASc1m) was obtained. PnAHASc1m exhibited 43.3% higher catalytic efficiency and a 1.36-fold increase in imazamox resistance compared with the wild-type PnAHASc1 enzyme. A37S was the primary resistance site that rescued the catalytic defect of D66H, a novel mutation pattern for bacterial anabolic AHAS. The A37S+D66H double mutant had the highest resistance, and the triple mutant PnAHASc1m achieved a favorable balance between catalytic activity and imazamox resistance. This study provides novel AHAS resources and a multi-mutation synergistic mechanism, supporting the formation of imazamox-resistant crops.