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Genetic analysis of osmotic and cold stress signal transduction in Arabidopsis: interactions and convergence of abscisic acid-dependent and abscisic acid-independent pathways.

机译:拟南芥中渗透和冷胁迫信号转导的遗传分析:脱落酸依赖性和脱落酸依赖性途径的相互作用和趋同。

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摘要

To dissect genetically the complex network of osmotic and cold stress signaling, we constructed lines of Arabidopsis plants displaying bioluminescence in response to low temperature, drought, salinity, and the phytohormone abscisic acid (ABA). This was achieved by introducing into Arabidopsis plants a chimeric gene construct consisting of the firefly luciferase coding sequence (LUC) under the control of the stress-responsive RD29A promoter. LUC activity in the transgenic plants, as assessed by using in vivo luminescence imaging, faithfully reports the expression of the endogenous RD29A gene. A large number of cos (for constitutive expression of osmotically responsive genes), los (for low expression of osmotically responsive genes), and hos (for high expression of osmotically responsive genes) mutants were identified by using a high-throughput luminescence imaging system. The los and hos mutants were grouped into 14 classes according to defects in their responses to one or a combination of stress and ABA signals. Based on the classes of mutants recovered, we propose a model for stress signaling in higher plants. Contrary to the current belief that ABA-dependent and ABA-independent stress signaling pathways act in a parallel manner, our data reveal that these pathways cross-talk and converge to activate stress gene expression.
机译:为了从遗传角度剖析渗透和冷胁迫信号转导的复杂网络,我们构建了拟南芥植物品系,这些植物在低温,干旱,盐度和植物激素脱落酸(ABA)的作用下显示出生物发光。这是通过在拟南芥植物中引入由萤火虫荧光素酶编码序列(LUC)组成的嵌合基因构建体,该构建体在应激反应性RD29A启动子的控制下进行的。通过使用体内发光成像评估,转基因植物中的LUC活性忠实地报告了内源RD29A基因的表达。通过使用高通量发光成像系统鉴定了大量的cos(用于表达渗透性反应基因),los(用于表达低渗透性基因)和hos(用于表达高渗透性基因)的突变体。 los和hos突变体根据它们对一种或多种应力和ABA信号的响应缺陷而分为14类。基于恢复的突变体的类别,我们提出了一种在高等植物中进行胁迫信号传递的模型。与目前认为ABA依赖性和ABA依赖性应激信号通路以并行方式起作用的看法相反,我们的数据表明,这些通路相互干扰并汇聚以激活应激基因表达。

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