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Prolonged Water Deficit Reveals New Profile of Sugarcane Gene Expression and Metabolic Pathway Related to Tolerance

机译:长期缺水揭示了甘蔗基因表达和耐性相关的代谢途径的新特性

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Drought is the abiotic stress that most influences the sugarcane energy production, and has become even more critical after sugarcane cultivation expanded to regions with water scarcity. To overcome this problem, it is necessary to develop and use cultivars that are more adapted to drought stress. The present work analyzed biometrics, physiological behavior and the gene expression profiles of sugarcane subjected to different periods of water deficit simulating field conditions. The cultivars SP81-3250 (drought-tolerant) and RB855453 (drought-sensitive) were cultivated in a greenhouse at three levels of soil-water potential (control, moderate and severe). The biometric, physiological and molecular characteristics of these cultivars were evaluated at 30, 60 and 90days post-treatment. We found significant differences in the biometric and physiological parameters in response to the treatments. The de novo assembly of the transcriptomes allowed us to identify a total of 5236 genes that were exclusive to either of the two cultivars. We analyzed 2635 genes exclusive to the drought-tolerant cultivar and involved in the response to prolonged water deficit. Some of these genes showed a very interesting expression profile: DNA helicase, NAC proteins, E3 ligase, serine/threonine kinase and proteins of the salicylic acid pathway. This work also identified 39 orphan genes in the drought-tolerant cultivar that can be considered target genes for future studies regarding water stress.
机译:干旱是最能影响甘蔗能源生产的非生物胁迫,在甘蔗种植扩大到缺水地区后,干旱就变得更加严重。为了克服这个问题,有必要开发和使用更适应干旱胁迫的品种。本工作分析了甘蔗在不同水分亏缺时期模拟田间条件下的生物特征,生理行为和基因表达谱。将SP81-3250(耐旱)和RB855453(耐旱)两个品种在温室中以三种土壤水势水平(对照,中度和重度)种植。在处理后30、60和90天评估这些品种的生物学,生理和分子特性。我们发现对治疗的反应在生物特征和生理参数上存在显着差异。转录组的从头组装使我们能够鉴定出总共5236个基因,这两个基因都是其中一个。我们分析了2635个耐旱品种专有的基因,并参与了对长期缺水的反应。这些基因中的一些表现出非常有趣的表达特征:DNA解旋酶,NAC蛋白,E3连接酶,丝氨酸/苏氨酸激酶和水杨酸途径的蛋白。这项工作还确定了耐旱品种中的39个孤儿基因,可以将其视为未来有关水分胁迫研究的目标基因。

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