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Salt and oxidative stresses uniquely regulate tomato cytokinin levels and transcriptomic response

机译:盐和氧化胁迫独特地调节番茄细胞分裂素水平和转录组反应

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摘要

Cytokinins are well‐known to be involved in processes responsible for plant growth and development. More recently, these hormones have begun to be associated with stress responses as well. However, it is unclear how changes in cytokinin biosynthesis, signaling, or transport relate to stress effects. This study examines in parallel how two different stresses, salt, and oxidative stress, affect changes in both cytokinin levels and whole plant transcriptome response. Solanum lycopersicum seedlings were given a short‐term (6 hr) exposure to either salt (150 mM NaCl) or oxidative (20 mM H2O2) stress and then examined to determine both changes in cytokinin levels and transcriptome. LC‐MS/MS was used to determine the levels of 22 different types of cytokinins in tomato plants including precursors, active, transported, and conjugated forms. When examining cytokinin levels we found that salt treatment caused an increase in both active and inactive cytokinin levels and oxidative stress caused a decrease in these levels. RNA‐sequencing analyses of these same stress‐treated tissues revealed 6,643 significantly differentially expressed genes (DEGs). Although many DEGs are similar between the two stresses, approximately one‐third of the DEGs in each treatment were unique to that stress. Several cytokinin‐related genes were among the DEGs. Examination of photosystem II efficiency revealed that cytokinins affect physiological response to stress in tomato, further validating the changes in cytokinin levels seen in planta.
机译:细胞分裂素众所周知参与植物生长和发育的过程。最近,这些激素也开始与压力反应有关。然而,目前尚不清楚细胞分裂​​素生物合成,信号传导或转运的变化与应激效应之间的关系。这项研究平行研究了两种不同的胁迫(盐和氧化胁迫)如何影响细胞分裂素水平和整个植物转录组反应的变化。将番茄茄子幼苗短期(6小时)暴露于盐(150mM NaCl)或氧化性(20mM H2O2)胁迫下,然后检查以确定细胞分裂素水平和转录组的变化。 LC-MS / MS用于确定番茄植物中22种不同类型细胞分裂素的水平,包括前体,活性形式,转运形式和结合形式。在检查细胞分裂素水平时,我们发现盐处理导致活性和非活化细胞分裂素水平均增加,而氧化应激导致这些水平降低。对这些经过相同压力处理的组织的RNA测序分析显示6,643个差异显着表达的基因(DEG)。尽管两个应力之间的许多DEG相似,但每种处理中约有三分之一的DEG是该应力所特有的。 DEG中有几个与细胞分裂素相关的基因。对光系统II效率的检查表明,细胞分裂素会影响番茄对胁迫的生理反应,从而进一步验证植物中所见细胞分裂素水平的变化。

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