Exogenous strigolactone alleviates post-waterlogging stress in grapevine

IF 6.1 2区 生物学 Q1 PLANT SCIENCES Plant Physiology and Biochemistry Pub Date : 2024-09-11 DOI:10.1016/j.plaphy.2024.109124
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Abstract

With global climate change, the frequent occurrence of intense rainfall and aggravation of waterlogging disasters have severely threatened the plant growth and fruit quality of grapevines, which are commercially important fruit crops worldwide. There is accordingly an imperative to clarify the responses of grapevine to waterlogging and to propose appropriate remedial measures. Strigolactone (SL) is a phytohormone associated with plant abiotic stress tolerance, while, its function in plant responses to waterlogging stress remain undetermined. In this study, systematic analyses of the morphology, physiology, and transcriptome changes in grapevine leaves and roots under post-waterlogging and GR24 (a synthetic analog of SL) treatments were performed. Morphological and physiological changes in grapevines in response to post-waterlogging stress, including leaf wilting and yellowing, leaf senescence, photosynthesis inhibition, and increased anti-oxidative systems, could be alleviated by the application of GR24. Moreover, transcriptome analysis revealed that the primary gene functions induced by post-waterlogging stress changed over time; however, they were consistently associated with carbohydrate metabolism. The GR24-induced leaf genes were closely associated with carbohydrate metabolism, photosynthesis, antioxidant systems, and hormone signal transduction, which were considered vital aspects that were influenced by GR24 in grapevine to induce post-waterlogging tolerance. Concerning the roots, an enhancement of microtubules and cytoskeleton for cell construction in GR24 application was proposed to facilitate root system recovery after waterlogging. With this study, we comprehend the knowledge regarding the responses of grapevines to post-waterlogging and the ameliorative effect of GR24 with the insight to the transcriptome changes during these processes.

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外源绞股蓝内酯缓解葡萄涝后应激
随着全球气候变化,强降雨频繁发生,内涝灾害加剧,严重威胁着葡萄树的生长和果实质量,而葡萄树是世界上重要的商业水果作物。因此,明确葡萄对水涝的反应并提出适当的补救措施势在必行。石蒜内酯(SL)是一种与植物非生物胁迫耐受性相关的植物激素,但它在植物对水涝胁迫的反应中的功能仍未确定。本研究系统分析了在涝后和 GR24(SL 的合成类似物)处理下葡萄叶片和根系的形态、生理和转录组变化。结果表明,施用 GR24 可以缓解葡萄树在涝后胁迫下的形态和生理变化,包括叶片萎蔫和变黄、叶片衰老、光合作用受抑制以及抗氧化系统增强。此外,转录组分析表明,水涝后胁迫诱导的主要基因功能随时间而变化,但它们始终与碳水化合物代谢有关。GR24诱导的叶片基因与碳水化合物代谢、光合作用、抗氧化系统和激素信号转导密切相关,被认为是GR24影响葡萄树诱导涝后耐受性的重要方面。在根系方面,GR24 可增强微管和细胞骨架对细胞构建的作用,从而促进根系在涝害后的恢复。通过这项研究,我们了解了葡萄树对涝后反应的知识以及 GR24 的改善作用,并深入了解了这些过程中转录组的变化。
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来源期刊
Plant Physiology and Biochemistry
Plant Physiology and Biochemistry 生物-植物科学
CiteScore
11.10
自引率
3.10%
发文量
410
审稿时长
33 days
期刊介绍: Plant Physiology and Biochemistry publishes original theoretical, experimental and technical contributions in the various fields of plant physiology (biochemistry, physiology, structure, genetics, plant-microbe interactions, etc.) at diverse levels of integration (molecular, subcellular, cellular, organ, whole plant, environmental). Opinions expressed in the journal are the sole responsibility of the authors and publication does not imply the editors'' agreement. Manuscripts describing molecular-genetic and/or gene expression data that are not integrated with biochemical analysis and/or actual measurements of plant physiological processes are not suitable for PPB. Also "Omics" studies (transcriptomics, proteomics, metabolomics, etc.) reporting descriptive analysis without an element of functional validation assays, will not be considered. Similarly, applied agronomic or phytochemical studies that generate no new, fundamental insights in plant physiological and/or biochemical processes are not suitable for publication in PPB. Plant Physiology and Biochemistry publishes several types of articles: Reviews, Papers and Short Papers. Articles for Reviews are either invited by the editor or proposed by the authors for the editor''s prior agreement. Reviews should not exceed 40 typewritten pages and Short Papers no more than approximately 8 typewritten pages. The fundamental character of Plant Physiology and Biochemistry remains that of a journal for original results.
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