Sericultural Research Insitute, Chengde Medical University, Chengde 067000, China; State Key Laboratory of Subtropical Silviculture, College of Forestry and Biotechnology, Zhejiang A&F University, Hangzhou 311300, China.
Chengde College of Applied Technology, Chengde 067000, China.
Plant Sci. 2024 Jul;344:112084. doi: 10.1016/j.plantsci.2024.112084. Epub 2024 Apr 12.
Mulberry (Morus alba L.) is a climacteric and highly perishable fruit. Ethylene has been considered to be an important trigger of fruit ripening process. However, the role of ethylene in the mulberry fruit ripening process remains unclear. In this study, we performed a comprehensive analysis of metabolomic and transcriptomic data of mulberry fruit and the physiological changes accompanying the fruit ripening process. Our study revealed that changes in the accumulation of specific metabolites at different stages of fruit development and ripening were closely correlated to transcriptional changes as well as underlying physiological changes and the development of taste biomolecules. The ripening of mulberry fruits was highly associated with the production of endogenous ethylene, and further application of exogenous ethylene assisted the ripening process. Transcriptomic analysis revealed that differential expression of diverse ripening-related genes was involved in sugar metabolism, anthocyanin biosynthesis, and cell wall modification pathways. Network analysis of transcriptomics and metabolomics data revealed that many transcription factors and ripening-related genes were involved, among which ethylene-responsive transcription factor 3 (MaERF3) plays a crucial role in the ripening process. The role of MaERF3 in ripening was experimentally proven in a transient overexpression assay in apples. Our study indicates that ethylene plays a vital role in modulating mulberry fruit ripening. The results provide a basis for guiding the genetic manipulation of mulberry fruits towards sustainable agricultural practices and improve post-harvest management, potentially enhancing the quality and shelf life of mulberry fruits for sustainable agriculture and forestry.
桑树(Morus alba L.)是一种呼吸跃变型且极易腐烂的果实。乙烯被认为是果实成熟过程的重要触发因素。然而,乙烯在桑椹果实成熟过程中的作用尚不清楚。在这项研究中,我们对桑树果实的代谢组学和转录组学数据以及伴随果实成熟过程的生理变化进行了全面分析。我们的研究表明,不同发育和成熟阶段果实中特定代谢物积累的变化与转录变化以及潜在的生理变化和味觉生物分子的发育密切相关。桑树果实的成熟与内源乙烯的产生高度相关,进一步应用外源乙烯可辅助果实成熟。转录组学分析表明,不同的成熟相关基因在糖代谢、花青素生物合成和细胞壁修饰途径中差异表达。转录组学和代谢组学数据的网络分析表明,许多转录因子和成熟相关基因参与其中,其中乙烯响应转录因子 3(MaERF3)在成熟过程中起着关键作用。MaERF3 在苹果中的瞬时过表达实验证明了其在成熟过程中的作用。本研究表明,乙烯在调节桑树果实成熟过程中起着至关重要的作用。研究结果为指导桑树果实的遗传操作以实现可持续农业实践提供了依据,并改善了采后管理,可能会提高桑树果实的品质和货架期,从而实现可持续农业和林业。