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Differential expression profiles and pathways of genes in sugarcane leaf at elongation stage in response to drought stress

机译:伸长阶段甘蔗叶中甘蔗叶基因差异表达谱和途径响应干旱胁迫

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摘要

Water stress causes considerable yield losses in sugarcane. To investigate differentially expressed genes under water stress, a pot experiment was performed with the sugarcane variety GT21 at three water-deficit levels (mild, moderate, and severe) during the elongation stage and gene expression was analyzed using microarray technology. Physiological parameters of sugarcane showed significant alterations in response to drought stress. Based on the expression profile of 15,593 sugarcane genes, 1,501 (9.6%) genes were differentially expressed under different water-level treatments; 821 genes were upregulated and 680 genes were downregulated. A gene similarity analysis showed that approximately 62.6% of the differentially expressed genes shared homology with functional proteins. In a Gene Ontology (GO) analysis, 901 differentially expressed genes were assigned to 36 GO categories. Moreover, 325 differentially expressed genes were classified into 101 pathway categories involved in various processes, such as the biosynthesis of secondary metabolites, ribosomes, carbon metabolism, etc. In addition, some unannotated genes were detected; these may provide a basis for studies of water-deficit tolerance. The reliability of the observed expression patterns was confirmed by RT-PCR. The results of this study may help identify useful genes for improving drought tolerance in sugarcane.
机译:水应激导致甘蔗中的相当大的产量损失。为了在水分应激下进行差异表达基因,在伸长阶段在三种水 - 缺陷水平(轻度,中度,严重)下用甘蔗品种GT21进行罐实验,并使用微阵列技术分析基因表达。甘蔗的生理参数显示出对干旱胁迫的反应的显着改变。基于15,593甘蔗基因的表达谱,在不同水分处理下差异表达1,501(9.6%)基因;上调821个基因,下调680个基因。基因相似性分析表明,大约62.6%的差异表达基因与功能性蛋白共享同源性。在基因本体学(GO)分析中,将901个差异表达基因分配到36个GO类别。此外,将325个差异表达基因分为101个涉及各种方法的途径类别,例如次级代谢物的生物合成,核糖体,碳代谢等。此外,检测到一些未经讨犯的基因;这些可以为水缺陷耐受性提供基础。通过RT-PCR确认观察到的表达模式的可靠性。该研究的结果可能有助于鉴定改善甘蔗的耐旱性的有用基因。

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