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首页> 外文期刊>Plant, Cell & Environment >Sequencing over 13 000 expressed sequence tags from six subtractive cDNA libraries of wild and modern wheats following slow drought stress
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Sequencing over 13 000 expressed sequence tags from six subtractive cDNA libraries of wild and modern wheats following slow drought stress

机译:在缓慢干旱胁迫下,从野生和现代小麦的六个减性cDNA文库中测序超过13000个表达序列标签

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A deeper understanding of the drought response and genetic improvement of the cultivated crops for better tolerance requires attention because of the complexity of the drought response syndrome and the loss of genetic diversity during domestication.We initially screened about 200 wild emmer wheat genotypes and then focused on 26 of these lines, which led to the selection of two genotypes with contrasting responses to water deficiency. Six subtractive cDNA libraries were constructed, and over 13 000 expressed sequence tags (ESTs) were sequenced using leaf and root tissues of wild emmer wheat genotypes TR39477 (tolerant) and TTD-22 (sensitive), and modern wheat variety Kiziltan drought stressed for 7 d. Clustering and assembly of ESTs resulted in 2376 unique sequences (1159 without hypothetical proteins and no hits), 75% of which were represented only once. At this level of EST sampling, each tissue shared a very low percentage of transcripts (13-26%). The data obtained indicated that the genotypes shared common elements of drought stress as well as distinctly differential expression patterns that might be illustrative of their contrasting ability to tolerate water deficiencies. The new EST data generated here provide a highly diverse and rich source for gene discovery in wheat and other grasses.
机译:由于干旱反应综合症的复杂性和驯化过程中遗传多样性的丧失,对栽培作物的干旱反应和遗传改良的更深入了解需要引起关注。我们最初筛选了约200种野生Emmer小麦基因型,然后重点研究了这些品系中有26个品系,导致选择了两种对缺水反应不同的基因型。构建了六个消减cDNA文库,并使用野生型小麦基因型TR39477(耐性)和TTD-22(敏感)和现代小麦品种Kiziltan干旱胁迫了7 000多个叶和根组织,对超过13000个表达序列标签(EST)进行了测序。 d。 EST的聚类和组装产生了2376个独特序列(1159个没有假设的蛋白质,没有命中),其中75%仅代表一次。在此EST采样水平下,每个组织共享非常低的转录本百分比(13-26%)。获得的数据表明,基因型具有干旱胁迫的共同要素以及明显的差异表达模式,这可能说明了它们在耐受缺水方面的对比能力。这里产生的新的EST数据为小麦和其他草丛中的基因发现提供了高度多样化和丰富的资源。

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