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Up-Regulation of HSFA2c and HSPs by ABA Contributing to Improved Heat Tolerance in Tall Fescue and Arabidopsis

机译:ABA上调HSFA2c和HSP有助于提高高羊茅和拟南芥的耐热性

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摘要

Abscisic acid (ABA) is known to play roles in regulating plant tolerance to various abiotic stresses, but whether ABA’s effects on heat tolerance are associated with its regulation of heat stress transcription factors (HSFs) and heat shock proteins (HSPs) is not well documented. The objective of this study was to determine whether improved heat tolerance of tall fescue (Festuca arundinacea Schreb.) by ABA was through the regulation of HSFs and HSPs. ABA-responsive transcriptional factors, ABA-responsive element binding protein 3 (FaAREB3) and dehydration-responsive element binding protein 2A (FaDREB2A) of tall fescue, were able to bind to the cis-elements in the promoter of tall fescue heat stress transcription factor A2c (FaHSFA2c). Exogenous ABA (5 μM) application enhanced heat tolerance of tall fescue, as manifested by increased leaf photochemical efficiency and membrane stability under heat stress (37/32 °C, dayight). The expression levels of FaHSFA2c, several tall fescue HSPs (FaHSPs), and ABA-responsive transcriptional factors were up-regulated in plants treated with ABA. Deficiency of Arabidopsis heat stress transcription factor A2 (AtHSFA2) suppressed ABA-induction of AtHSPs expression and ABA-improved heat tolerance in Arabidopsis. These results suggested that HSFA2 plays an important role in ABA-mediated plant heat tolerance, and FaAREB3 and FaDREB2A may function as upstream trans-acting factors and regulate transcriptional activity of FaHSFA2c and the downstream FaHSPs, leading to improved heat tolerance.
机译:脱落酸(ABA)在调节植物对各种非生物胁迫的耐受性中发挥作用,但是ABA对耐热性的影响是否与其调节热胁迫转录因子(HSFs)和热休克蛋白(HSPs)有关的文献尚不清楚。 。这项研究的目的是确定ABA是否通过调节HSF和HSP来提高高羊茅(Festuca arundinacea Schreb。)的耐热性。高羊茅的ABA反应转录因子,ABA反应元素结合蛋白3(FaAREB3)和脱水反应元素结合蛋白2A(FaDREB2A)能够结合高羊茅热应激转录因子启动子中的顺式元件。 A2c(FaHSFA2c)。外源ABA(5μM)的施用提高了高羊茅的耐热性,表现为在热胁迫(37/32°C,昼/夜)下叶片光化学效率和膜稳定性增强。在用ABA处理的植物中,FaHSFA2c,几种高羊茅HSP(FaHSPs)和ABA响应转录因子的表达水平上调。拟南芥热胁迫转录因子A2(AtHSFA2)的缺乏抑制了拟南芥中ABA诱导的AtHSPs表达和ABA改善了耐热性。这些结果表明,HSFA2在ABA介导的植物耐热性中起重要作用,FaAREB3和FaDREB2A可能充当上游反式作用因子并调节FaHSFA2c和下游FaHSPs的转录活性,从而提高耐热性。

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