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首页> 外文期刊>Plant Molecular Biology >Genome-wide transcriptomic analysis of cotton under drought stress reveal significant down-regulation of genes and pathways involved in fibre elongation and up-regulation of defense responsive genes
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Genome-wide transcriptomic analysis of cotton under drought stress reveal significant down-regulation of genes and pathways involved in fibre elongation and up-regulation of defense responsive genes

机译:棉花在干旱胁迫下的全基因组转录组分析显示基因的显着下调以及参与纤维伸长和防御反应基因上调的途径

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Cotton is an important source of natural fibre used in the textile industry and the productivity of the crop is adversely affected by drought stress. High throughput transcriptomic analyses were used to identify genes involved in fibre development. However, not much information is available on cotton genome response in developing fibres under drought stress. In the present study a genome wide transcriptome analysis was carried out to identify differentially expressed genes at various stages of fibre growth under drought stress. Our study identified a number of genes differentially expressed during fibre elongation as compared to other stages. High level up-regulation of genes encoding for enzymes involved in pectin modification and cytoskeleton proteins was observed at fibre initiation stage. While a large number of genes encoding transcription factors (AP2-EREBP, WRKY, NAC and C2H2), osmoprotectants, ion transporters and heat shock proteins and pathways involved in hormone (ABA, ethylene and JA) biosynthesis and signal transduction were up-regulated and genes involved in phenylpropanoid and flavonoid biosynthesis, pentose and glucuronate interconversions and starch and sucrose metabolism pathways were down-regulated during fibre elongation. This study showed that drought has relatively less impact on fibre initiation but has profound effect on fibre elongation by down-regulating important genes involved in cell wall loosening and expansion process. The comprehensive transcriptome analysis under drought stress has provided valuable information on differentially expressed genes and pathways during fibre development that will be useful in developing drought tolerant cotton cultivars without compromising fibre quality.
机译:棉花是纺织工业中使用的天然纤维的重要来源,干旱压力对作物的生产力造成不利影响。高通量转录组学分析用于鉴定参与纤维发育的基因。然而,关于干旱胁迫下发育中的纤维中棉花基因组反应的信息不多。在本研究中,进行了全基因组转录组分析,以鉴定干旱胁迫下纤维生长各个阶段的差异表达基因。我们的研究确定了与其他阶段相比在纤维伸长过程中差异表达的许多基因。在纤维起始阶段观察到了编码参与果胶修饰和细胞骨架蛋白的酶的基因的高水平上调。虽然大量编码转录因子的基因(AP2-EREBP,WRKY,NAC和C2H2),渗透保护剂,离子转运蛋白和热休克蛋白以及涉及激素(ABA,乙烯和JA)生物合成和信号转导的途径被上调并在纤维伸长过程中,参与苯丙烷和类黄酮生物合成,戊糖和葡糖醛酸酯的相互转化以及淀粉和蔗糖代谢途径的基因被下调。这项研究表明,干旱对纤维萌发的影响相对较小,但通过下调与细胞壁松弛和扩张过程有关的重要基因,对纤维伸长具有深远的影响。干旱胁迫下的综合转录组分析为纤维发育过程中差异表达的基因和途径提供了有价值的信息,这将有助于开发耐旱的棉花品种而不损害纤维质量。

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