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Reaumuria trigyna transcription factor RtWRKY23 enhances salt stress tolerance and delays flowering in plants

机译:Reaumuria Trigyna转录因子RTWRKY23增强植物中的盐胁迫耐受性和延迟

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摘要

Reaumuria trigyna (Reaumuria Linn genus, family Tamaricaceae), an endangered dicotyledonous shrub with the features of a recretohalophyte, is endemic to the Eastern Alxa-Western Ordos area of China. Based on R. trigyna transcriptome data and expression pattern analysis of RtWRKYs, RtWRKY23, a Group II WRKY transcription factor, was isolated from R. trigyna cDNA. RtWRKY23 was mainly expressed in the stem and was induced by salt, drought, cold, ultraviolet radiation, and ABA treatments, but suppressed by heat treatment. Overexpression of RtWRKY23 in Arabidopsis increased chlorophyll content, root length, and fresh weight of the transgenic lines under salt stress. Real-time quantitative PCR (qPCR) analysis and yeast one-hybrid analysis demonstrated that RtWRKY23 protein directly or indirectly modulated the expression levels of downstream genes, including stressrelated genes AtPOD, AtPOD22, AtPOD23, AtP5CS1, AtP5CS2, and AtPRODH2, and reproductive developmentrelated genes AtMAF5, AtHAT1, and AtANT. RtWRKY23 transgenic Arabidopsis had higher proline content, peroxidase activity, and superoxide anion clearance rate, and lower H2O2 and malondialdehyde content than WT plants under salt stress conditions. Moreover, RtWRKY23 transgenic Arabidopsis exhibited later flowering and shorter pods, but little change in seed yield, compared with WT plants under salt stress. Our study demonstrated that RtWRKY23 not only enhanced salt stress tolerance through maintaining the ROS and osmotic balances in plants, but also participated in the regulation of flowering under salt stress.
机译:Reaumuria Trigyna(Reaumuria Linn Genus,Family Tamaricaceae),濒临灭绝的双象状灌木,具有中康核菌的特征,是中国东部的鄂尔多斯地区的特有。基于R.Trigyna转录组数据和RTWRKYS的表达模式分析,RTWRKY23,II族衣物转录因子与R.Trigyna cDNA分离。 RTWRKY23主要在茎中表达,并被盐,干旱,冷,紫外线辐射和ABA治疗诱导,但通过热处理抑制。拟南芥中RTWRKY23的过度表达增加了盐胁迫下转基因素的叶绿素含量,根部长度和新鲜重量。实时定量PCR(QPCR)分析和酵母单杂化分析证明RTWRKY23蛋白直接或间接调节下游基因的表达水平,包括rencedrelated基因AtPOD,ATPOD22,ATPOD23,ATP5CS1,ATP5CS2和ATPRODH2以及生殖发展相关基因Atmaf5,Athat1和attant。 RTWRKY23转基因拟南芥具有较高的脯氨酸含量,过氧化物酶活性和超氧化物阴离子清除率,以及低于盐胁迫条件下的WT植物的H 2 O 2和丙二醛含量。此外,与盐胁迫下的WT植物相比,RTWRKY23转基因拟南芥表现出稍后开花和较短的豆荚,但种子产量很小。我们的研究表明,RTWRKY23不仅通过维持植物中的ROS和渗透性平衡而增强了耐盐胁迫耐受性,而且还参与了盐胁迫下开花的调节。

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