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Characterization of wheat (Triticum aestivum) TIFY family and role of Triticum Durum TdTIFY11a in salt stress tolerance

机译:小麦TIFY家族的特征及硬粒小麦TdTIFY11a在耐盐胁迫中的作用

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摘要

The TIFY proteins constitute a plant-specific super-family and they are involved in regulating many plant processes, such as development, defences and stress responses. The Jasmonate-ZIM-Domain (JAZ) proteins, the best-characterized sub-group of the TIFY family are key regulator of the jasmonic acid (JA) signalling pathway. Jasmonates regulate several aspects of plant development, and play a primary role in defence mechanisms as well as in plant responses to abiotic stresses. The TIFY family is well studied in dicots but poorly investigated in monocots. The present study reports an extensive genomic identification of TIFY proteins from Triticum aestivum. We identified 49 TIFY genes, which were annotated according to three sub-genomes (AABBDD) of T. aestivum. Following their clustering with Oryza sativa and Brachypodium distachyon, the 49 genes were grouped in 18 different TIFY homeologous subsets. Expression analyses of 6 representative TIFY genes on Tunisian durum wheat seedlings revealed their differential regulation by various stress treatment, including JA, ABA and salt stress. TIFY11a was specifically induced after salt treatment. Transgenic lines over-expressing TdTIFY11a showed higher germination and growth rates under high salinity conditions, compared to wild type plants. In summary, our results outline a relevant role of wheat TIFY proteins in promoting germination under salt stress.
机译:TIFY蛋白质构成植物特有的超家族,它们参与调节许多植物过程,例如发育,防御和胁迫反应。茉莉酸-ZIM-域(JAZ)蛋白是TIFY家族中最典型的亚组,是茉莉酸(JA)信号传导途径的关键调节剂。茉莉酸酯调节植物发育的多个方面,并在防御机制以及植物对非生物胁迫的响应中起主要作用。 TIFY家族在双子叶植物中的研究很好,但在单子叶植物中的研究很少。本研究报告了小麦的TIFY蛋白的广泛基因组鉴定。我们鉴定了49个TIFY基因,这些基因根据普通小麦的三个亚基因组(AABBDD)进行了注释。在将它们与稻(Oryza sativa)和短枝曲霉(Brachypodium distachyon)聚在一起后,将49个基因分为18个不同的TIFY同源子集。突尼斯硬质小麦幼苗上6个代表性TIFY基因的表达分析表明,它们受JA,ABA和盐胁迫等多种胁迫处理的差异调节。盐处理后特异性诱导了TIFY11a。与野生型植物相比,过表达TdTIFY11a的转基因品系在高盐度条件下显示出更高的发芽和生长速率。总之,我们的结果概述了小麦TIFY蛋白在盐胁迫下促进发芽的相关作用。

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