首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >A wheat R2R3 MYB gene TaMpc1-D4 negatively regulates drought tolerance in transgenic Arabidopsis and wheat
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A wheat R2R3 MYB gene TaMpc1-D4 negatively regulates drought tolerance in transgenic Arabidopsis and wheat

机译:小麦R2R3 MyB基因Tampc1-D4负调节转基因拟南芥和小麦的耐旱性

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MYB transcription factors (TFs) are one of the largest TF families, and R2R3-type MYB TFs participate in the multiply abiotic stress responses in wheat. In this study, an R2R3-type MYB gene Myb protein colourless I located on chromosome D (named TaMpc1-D4), was cloned from wheat. TaMpc1-D4-GFP protein was localized in the nucleus. Overexpression of TaMpc1-D4 reduced drought tolerance in transgenic Arabidopsis lines, which was supported by the lower germination rate, the shorter root length, a higher level of O-2(center dot-) and malonaldehyde (MDA), the decreased proline content, and limited activities of peroxidase (POD), superoxide dismutase (SOD), and catalase (CAT). Furthermore, P5CS1, RD29A, RD29B, DREB2A, ABF3, CBFI, CBF2, CBF3, ERFI, PODI, SOD (Cu/Zn), and CATI genes related to the stress and antioxidant system were remarkably down-regulated in TaMpc1-D4 transgenic Arabidopsis lines under drought stress. Silencing TaMpc1-D4 expression in wheat enhanced the relative water content (RWC), the proline content, and the activities of antioxidant enzymes, and activated stress-related and antioxidant-related genes (DREBI, DREB3, ERF3, ERF4b, ABF, P5CS, POD, SOD (Fe), and CAT). Taken together, these results indicated that TaMpc1-D4 negatively modulated drought tolerance by regulating the capacity of the enzyme system and the expression of stress-related and antioxidant-related genes.
机译:MYB转录因子(TFS)是最大的TF系列之一,R2R3型MYB TFS参与小麦中的繁殖非生物应激反应。在本研究中,从小麦克隆到染色体D(命名为Tampc1-D4)上的R2R3型MYB基因MyB蛋白无色I。 TAMPC1-D4-GFP蛋白在核中局部化。 TAMPC1-D4的过度表达在转基因拟南芥中降低了干旱耐受性,其通过较低的发芽率,较短的根长度,较高水平的O-2(中心点)和恶性醛(MDA),降低脯氨酸含量,过氧化物酶(POD),超氧化物歧化酶(SOD)和过氧化氢酶(猫)的有限活性。此外,在TAMPC1-D4转基因拟南芥中,与应力和抗氧化系统相关的P5CS1,RD29A,RD29B,DREB2A,ABF3,CBFI,CBF2,CBF3,ERFI,PODI,SOD(Cu / Zn)和CATI基因显着下调干旱胁迫下的线条。沉默Tampc1-D4在小麦中的表达增强了相对含水量(RWC),脯氨酸含量和抗氧化酶的活性,以及​​活性应力相关和相关的基因(DRebi,DReb3,ERF3,ERF4B,ABF,P5Cs,豆荚,草皮(Fe)和猫)。总之,这些结果表明TAMPC1-D4通过调节酶系统的能力和相关和抗氧化相关基因的表达来负面调节干旱耐受性。

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