SlABH15 PromotesJasmonate-Mediated Lead Detoxificationin Tomato: A Promising Target for Enhancing Phytoremediation and LeadStress Tolerance
作者:Fengshuo Li, Hossein Ghanizadeh, Hui Wang, Fujing Liu, H Steve Zhang, Wenwei Song, Jie Zhang, Zainab Qamer, Tianyue Yu, X Chen, J Liu, Yang Liu, Yao Zhang, Mozhen Cheng, Peiwen Wang, Aoxue Wang · 发表于:Journal of Agricultural and Food Chemistry · 年份:2026 · DOI:10.1021/acs.jafc.6c00425 · 研究领域:Plant Stress Responses and Tolerance、Plant-Microbe Interactions and Immunity、Insect-Plant Interactions and Control
Lead (Pb2+) toxicity disrupts cellular redox homeostasis and photosynthesis, highlighting the need to uncover the mechanisms underlying Pb2+ tolerance in phytoremediation. In this study, we characterized SlABH15, an α/β-hydrolase gene enhancing Pb2+ tolerance in tomato. SlABH15 was strongly Pb2+-induced (∼30-fold at 24 h) and was localized to the plasma membrane, acting as a methyl jasmonate esterase converting methyl jasmonate (MeJA) to jasmonic acid (JA). Co-immunoprecipitation (Co-IP) revealed that SlABH15 interacts with KAT2, a key peroxisomal enzyme in JA biosynthesis, and this interaction was strongly enhanced by Pb2+ and JA. SlABH15 overexpression improved Pb2+ tolerance, reduced ROS accumulation, sustained photosynthesis, and decreased tissue Pb2+ content. Conversely, silencing SlABH15 reduced JA levels, exacerbated oxidative damage, and repressed genes involved in JA and chlorophyll biosynthesis. Collectively, our results demonstrate that SlABH15 acts as a critical positive regulator integrating MeJA hydrolysis and JA biosynthesis to maintain plant defense and photosynthetic homeostasis under Pb2+ stress.