It is demonstrated that MylERF3 functions positively in waterlogging tolerance by modulation of ethylene biosynthesis via regulating MylACO1, thereby offering new insights into the transcriptional regulation of flood adaptation in woody plants.
Abstract
Ethylene-responsive factors (ERFs) act as pivotal regulators during plant responses to waterlogging, but the specific molecular pathways orchestrating flood adaptation in woody species are still not fully comprehended. Here, we functionally characterized MylERF3, a nucleus-localized AP2/ERF transcription factor from the highly flood-tolerant shrub Myricaria laxiflora. Expression profiling revealed that MylERF3 is rapidly induced by waterlogging stress. Overexpression of MylERF3 in Arabidopsis thaliana markedly enhanced tolerance to waterlogged conditions. Further metabolic and transcriptomic analyses indicated that waterlogging stimulates ethylene emission in M. laxiflora, a process fundamentally driven by the induced expression of MylACO1, which encodes a crucial ethylene biosynthesis enzyme. MylERF3 directly targets and activates MylACO1 transcription by binding within its promoter. Consistently, MylERF3 transgenic lines exhibited elevated levels of ethylene production and ACO enzyme activity, along with up-regulation of ethylene biosynthesis-related genes. Taken together, these results demonstrate that MylERF3 functions positively in waterlogging tolerance by modulation of ethylene biosynthesis via regulating MylACO1, thereby offering new insights into the transcriptional regulation of flood adaptation in woody plants.
The jasmonate (JA) phytohormone signaling pathway is a key regulator of plant resistance to insect herbivores by mediating the biosynthesis of anti-herbivore metabolites and proteins. However, the JA-mediated regulatory network and its downstream defensive compounds in the monocot crop rice remain largely unknown. Here...
Ya-Ze Kong, Zhi-Xin Wu, Meng-Yu Liu et al.· Plant, Cell and Environment· 0 citations
Waterlogging stress is a major abiotic stressor that severely constrains crop growth and productivity. Aerenchyma provides intercellular air spaces to transport oxygen to the root, which is essential for survival under waterlogged conditions. However, the mechanism underlying the response to waterlogging and aerenchyma...
Cucumber (Cucumis sativus L.) requires frequent irrigation due to its shallow root system and high transpiration rate of the aboveground parts. However, it is also prone to waterlogging damage. Therefore, understanding its response to waterlogging is crucial for breeding waterlogging-tolerant varieties. Although Rho of...
Lei Sun, Fang Wang, Ming-Ming Dong et al.· Plant, Cell and Environment· 0 citations
A dual-repression module is defined (ScMYB20-ScTTG1-ScCHS1) that fine-tunes flavonoid flux under abiotic stress, and provide evolutionary and mechanistic insights into how R2R3-MYB repressors evolved to balance metabolic investment and stress survival in land plants.
Jiang-Yuan Xiao, Yan Liang, Jia Liu et al.· Journal of Experimental Bota...· 0 citations
Findings identify MYB21 as a JA-responsive regulator of growth and defense in seedlings and leaves, extending its function beyond reproductive development.
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Findings suggest that FaAP2-11 contributes to coordinating transcriptional and physiological responses associated with abiotic-stress acclimation and supports its potential as a candidate gene for improving drought and salinity resilience in strawberry.
M. D. Moreno-Recio, Facundo Spadoni-Revol, Sara Aguado-Delgado et al.· International Journal of Mol...· 0 citations
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