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首页> 外文期刊>The Plant Cell >A spatio-temporal understanding of growth regulation during the salt stress response in Arabidopsis.
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A spatio-temporal understanding of growth regulation during the salt stress response in Arabidopsis.

机译:拟南芥盐胁迫响应过程中生长调节的时空理解。

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Plant environmental responses involve dynamic changes in growth and signaling, yet little is understood as to how progress through these events is regulated. Here, we explored the phenotypic and transcriptional events involved in the acclimation of the Arabidopsis thaliana seedling root to a rapid change in salinity. Using live-imaging analysis, we show that growth is dynamically regulated with a period of quiescence followed by recovery then homeostasis. Through the use of a new high-resolution spatio-temporal transcriptional map, we identify the key hormone signaling pathways that regulate specific transcriptional programs, predict their spatial domain of action, and link the activity of these pathways to the regulation of specific phases of growth. We use tissue-specific approaches to suppress the abscisic acid (ABA) signaling pathway and demonstrate that ABA likely acts in select tissue layers to regulate spatially localized transcriptional programs and promote growth recovery. Finally, we show that salt also regulates many tissue-specific and time point-specific transcriptional responses that are expected to modify water transport, Casparian strip formation, and protein translation. Together, our data reveal a sophisticated assortment of regulatory programs acting together to coordinate spatially patterned biological changes involved in the immediate and long-term response to a stressful shift in environment.Registry Number/Name of Substance 0 (Arabidopsis Proteins). 147336-22-9 (Green Fluorescent Proteins). 72S9A8J5GW (Abscisic Acid). 7647-14-5 (Sodium Chloride).
机译:植物的环境反应涉及生长和信号传递的动态变化,但是对于如何调节这些事件的进展却知之甚少。在这里,我们探讨了拟南芥幼苗根系适应盐度快速变化所涉及的表型和转录事件。使用实时成像分析,我们显示生长在一段时间的静止过程中动态调节,然后恢复,然后达到稳态。通过使用新的高分辨率时空转录图,我们确定了调节特定转录程序,预测其空间作用域并将这些途径的活性与特定生长阶段调控联系起来的关键激素信号传导途径。 。我们使用组织特异性方法来抑制脱落酸(ABA)信号通路,并证明ABA可能在选定的组织层中起作用,以调节空间局部的转录程序并促进生长恢复。最后,我们表明盐还调节许多组织特异性和时间点特异性转录反应,这些反应有望改变水的运输,里海带形成和蛋白质翻译。总之,我们的数据揭示了一系列复杂的监管计划,这些计划共同发挥作用,协调对环境压力变化的近期和长期响应中涉及的空间模式生物变化。注册号/物质0(拟南芥蛋白)的名称。 147336-22-9(绿色荧光蛋白)。 72S9A8J5GW(脱落酸)。 7647-14-5(氯化​​钠)。

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