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Different Cold-Signaling Pathways Function in the Responses to Rapid and Gradual Decreases in Temperature

机译:不同的冷信令途径在响应中的响应,在温度下快速且逐渐降低

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In plants, cold temperatures trigger stress responses and long-term responses that result in cold tolerance. In Arabidopsis thaliana, three dehydration-responsive element (DRE) binding protein 1/C-repeat binding factors (DREB1/CBFs) act as master switches in cold-responsive gene expression. Induction of DREB1 genes triggers the cold stress-inducible transcriptional cascade, followed by the induction of numerous genes that function in the cold stress response and cold tolerance. Many regulatory factors involved in DREB1 induction have been identified, but how these factors orchestrate the cold stress-specific expression of DREB1s has not yet been clarified. Here, we revealed that plants recognize cold stress as two different signals, rapid and gradual temperature decreases, and induce expression of the DREB1 genes. CALMODULIN BINDING TRANSCRIPTION ACTIVATOR3 (CAMTA3) and CAMTA5 respond to a rapid decrease in temperature and induce the expression of DREB1s, but these proteins do not respond to a gradual decrease in temperature. Moreover, they function during the day and night, in contrast to some key circadian components, including CIRCADIAN CLOCK ASSOCIATED1 and LATE ELONGATED HYPOCOTYL, which regulate cold-responsive DREB1 expression as transcriptional activators only during the day. Thus, plants efficiently control the acquisition of freezing tolerance using two different signaling pathways in response to a gradual temperature decrease during seasonal changes and a sudden temperature drop during the night.
机译:在植物中,寒冷的温度引发应力响应和导致耐寒性的长期反应。在拟南芥中,三种脱水响应元件(DRE)结合蛋白1 / c重复结合因子(DREB1 / CBFS)作为冷响应基因表达中的主切换。 DREB1基因的诱导触发了冷应激诱导的转录级联,然后诱导了在冷应激反应和耐冷耐耐寒性中起作用的许多基因。已经确定了DREB1诱导的许多监管因素,但如何统治DREB1S的冷应激特异性表达的这些因素是如何澄清的。在这里,我们透露,植物识别冷应力作为两种不同的信号,快速且逐渐的温度降低,并诱导DREB1基因的表达。钙调蛋白结合转录活化剂3(CAMTA3)和CAMTA5响应温度的快速降低并诱导DREB1S的表达,但这些蛋白质不会响应温度逐渐降低。此外,它们在白天和夜间起作用,与某些关键的昼夜组件相反,包括昼夜钟表相关联的1和晚细长的幼杆基,其在白天仅调节冷响应性DREB1表达作为转录活化剂。因此,植物有效地控制使用两种不同的信号传导途径获取冷冻耐受响应于季节性变化期间的逐渐变化和夜间突然温度下降。

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