Melatonin Priming Promotes Crop Seed Germination and Seedling Establishment Under Flooding Stress by Mediating ABA, GA, and ROS Cascades

Author:

Luo Xiaofeng12ORCID,Xu Xiaojing12,Xu Jiahui12,Zhao Xiaoting12,Zhang Ranran12,Shi Yiping12,Xia Mingyu12,Xian Baoshan12,Zhou Wenguan1,Zheng Chuan1,Wei Shaowei12,Wang Lei12,Du Junbo3,Liu Weiguo3,Shu Kai12ORCID

Affiliation:

1. Shaanxi Key Laboratory of Qinling Ecological Intelligent Monitoring and Protection, School of Ecology and Environment Northwestern Polytechnical University Xi'an China

2. Research & Development Institute of Northwestern Polytechnical University in Shenzhen Shenzhen China

3. Institute of Ecological Agriculture Sichuan Agricultural University Chengdu China

Abstract

ABSTRACTBoth 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 H2O2 and superoxide anions (O2) after MT priming were consistent with the results of transcriptome analysis and qRT‐PCR. Finally, exogenous application of GA, fluridone (an ABA biosynthesis inhibitor), or H2O2 partially rescued the poor germination of non‐primed seeds under flooding stress. Collectively, this study uncovers the application and molecular mechanisms underlying MT priming in modulating crop seed vigor under flooding stress.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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