脱落酸
苗木
发芽
转录组
生物
启动(农业)
氟啶酮
生物合成
植物生理学
赤霉素
活性氧
基因表达
植物
细胞生物学
基因
生物化学
作者
Xiaofeng Luo,Xiaojing Xu,Jiahui Xu,Xiaoting Zhao,Ranran Zhang,Yiping Shi,Mingyu Xia,Baoshan Xian,Wenguan Zhou,Chuan Zheng,Shaowei Wei,Lei Wang,Junbo Du,Weiguo Liu,Kai Shu
摘要
Both seed germination and subsequent seedling establishment are key checkpoints during the life cycle of seed plants, yet flooding stress markedly inhibits both processes, leading to economic losses from agricultural production. Here, we report that melatonin (MT) seed priming treatment enhances the performance of seeds from several crops, including soybean, wheat, maize, and alfalfa, under flooding stress. Transcriptome analysis revealed that MT priming promotes seed germination and seedling establishment associated with changes in abscisic acid (ABA), gibberellin (GA), and reactive oxygen species (ROS) biosynthesis and signaling pathways. Real-time quantitative RT-PCR (qRT-PCR) analysis confirmed that MT priming increases the expression levels of GA biosynthesis genes, ABA catabolism genes, and ROS biosynthesis genes while decreasing the expression of positive ABA regulatory genes. Further, measurements of ABA and GA concentrations are consistent with these trends. Following MT priming, quantification of ROS metabolism-related enzyme activities and the concentrations of H
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