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miRNA expression patterns of Triticum dicoccoides in response to shock drought stress

机译:Triticum dicoccoides的miRNA表达模式对干旱干旱胁迫的响应

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Drought is a major environmental stress factor that affects plant growth and development worldwide. Wild emmer wheat (Triticum turgidum ssp. dicoccoides), the ancestor of domesticated durum wheat (Triticum turgidum ssp. durum), has great potential for improving the understanding of the wheat drought response. MicroRNAs (miRNAs) are a recently discovered class of gene expression regulators that have also been linked to several plant stress responses; however, this relationship is just beginning to be understood. miRNA expression patterns of drought-resistant wild emmer wheat in response to drought stress were investigated using a plant miRNA microarray platform. Expression was detected to be 205 miRNAs in control and 438 miRNAs in drought-stressed leaf and root tissues. Of these miRNAs, the following 13 were differentially regulated in response to drought: miR1867, miR896, miR398, miR528, miR474, miR1450, miR396, miR1881, miR894, miR156, miR1432, miR166 and miR171. Regulation of miRNAs upon 4 and 8 h drought stress applications observed by qRT-PCR. Target transcripts of differentially regulated miRNAs were computationally predicted. In addition to miRNA microarray study, five new conserved T. turgidum miRNAs were identified through a homology-based approach, and their secondary structures and putative targets were predicted. These findings both computationally and experimentally highlight the presence of miRNAs in T. dicoccoides and further extend the role of miRNAs under shock drought stress conditions.
机译:干旱是影响全球植物生长发育的主要环境压力因素。野生的Emmer小麦(Triticum turgidum ssp。dicoccoides)是驯化硬质小麦(Triticum turgidum ssp。durum)的祖先,具有极大的潜力,可以增进人们对小麦干旱反应的了解。 MicroRNA(miRNA)是最近发现的一类基因表达调节剂,也与几种植物胁迫反应有关。但是,这种关系才刚刚开始被理解。使用植物miRNA芯片平台研究了抗旱野生Emmer小麦响应干旱胁迫的miRNA表达模式。检测到在对照中的表达为205个miRNA,在干旱胁迫的叶和根组织中为438个miRNA。在这些miRNA中,以下13种在干旱响应中受到差异调节:miR1867,miR896,miR398,miR528,miR474,miR1450,miR396,miR1881,miR894,miR156,miR1432,miR166和miR171。通过qRT-PCR观察4和8 h干旱胁迫后miRNA的调控。通过计算机预测差异调节的miRNA的目标转录本。除了miRNA芯片研究以外,还通过基于同源性的方法鉴定了五个新的保守的T. turgidum miRNA,并预测了其二级结构和推定的靶标。这些发现在计算上和实验上都突出了二轮隐线虫中miRNA的存在,并进一步扩展了miRNA在干旱干旱胁迫条件下的作用。

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