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The rehydration transcriptome of the desiccation-tolerant bryophyte Tortula ruralis: transcript classification and analysis

机译:耐旱苔藓植物Tortula Ruralis的补液转录组:转录本分类和分析

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摘要

BackgroundThe cellular response of plants to water-deficits has both economic and evolutionary importance directly affecting plant productivity in agriculture and plant survival in the natural environment. Genes induced by water-deficit stress have been successfully enumerated in plants that are relatively sensitive to cellular dehydration, however we have little knowledge as to the adaptive role of these genes in establishing tolerance to water loss at the cellular level. Our approach to address this problem has been to investigate the genetic responses of plants that are capable of tolerating extremes of dehydration, in particular the desiccation-tolerant bryophyte, Tortula ruralis. To establish a sound basis for characterizing the Tortula genome in regards to desiccation tolerance, we analyzed 10,368 expressed sequence tags (ESTs) from rehydrated rapid-dried Tortula gametophytes, a stage previously determined to exhibit the maximum stress induced change in gene expression.
机译:背景植物对缺水的细胞应答具有经济和进化重要性,直接影响农业中的植物生产力和自然环境中的植物存活。由缺水胁迫诱导的基因已在对细胞脱水相对敏感的植物中成功枚举,但是我们对这些基因在建立对细胞水平的失水耐受性的适应性作用方面知之甚少。我们解决这个问题的方法是研究能够耐受极端干旱的植物的遗传反应,特别是耐干燥的苔藓植物,Tortula Ruralis。为了建立表征玉米粉虱基因组在干旱耐受性方面的良好基础,我们分析了10,368个来自重新水合的快速干燥的玉米粉虱配子体的表达序列标签(EST),该阶段先前确定为表现出最大的应激诱导的基因表达变化。

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