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Transcriptomic Analysis of Gibberellin- and Paclobutrazol-Treated Rice Seedlings under Submergence

机译:浸没赤霉素和多效唑处理的水稻幼苗的转录组学分析

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摘要

Submergence stress is a limiting factor for rice growing in rainfed lowland areas of the world. It is known that the phytohormone gibberellin (GA) has negative effects on submergence tolerance in rice, while its inhibitor paclobutrazol (PB) does the opposite. However, the physiological and molecular basis underlying the GA- and PB-regulated submergence response remains largely unknown. In this study, we reveal that PB could significantly enhance rice seedling survival by retaining a higher level of chlorophyll content and alcohol dehydrogenase activity, and decelerating the consumption of non-structure carbohydrate when compared with the control and GA-treated samples. Further transcriptomic analysis identified 3936 differentially expressed genes (DEGs) among the GA- and PB-treated samples and control, which are extensively involved in the submergence and other abiotic stress responses, phytohormone biosynthesis and signaling, photosynthesis, and nutrient metabolism. The results suggested that PB enhances rice survival under submergence through maintaining the photosynthesis capacity and reducing nutrient metabolism. Taken together, the current study provided new insight into the mechanism of phytohormone-regulated submergence response in rice.
机译:淹水胁迫是世界上雨养低地地区水稻生长的限制因素。众所周知,植物激素赤霉素(GA)对水稻的淹没耐受性具有负面影响,而其抑制剂多效唑(PB)则相反。然而,GA和PB调控的淹没反应的生理和分子基础仍是未知之数。在这项研究中,我们发现与对照和GA处理的样品相比,PB可以通过保留较高水平的叶绿素含量和乙醇脱氢酶活性,并减少非结构碳水化合物的消耗来显着提高水稻幼苗的存活率。进一步的转录组分析确定了GA和PB处理的样品和对照中的3936个差异表达基因(DEG),这些基因广泛参与了淹没和其他非生物胁迫反应,植物激素的生物合成和信号传导,光合作用以及养分代谢。结果表明,PB通过保持光合作用能力和减少养分代谢来提高水稻在淹水下的存活率。综上所述,当前的研究为水稻中植物激素调节的淹没反应机理提供了新的见解。

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