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Expression profiles of sugarcane under drought conditions: Variation in gene regulation

机译:干旱条件下甘蔗的表达谱:基因调控的变化

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摘要

Drought is a major factor in decreased sugarcane productivity because of the resulting morphophysiological effects that it causes. Gene expression studies that have examined the influence of water stress in sugarcane have yielded divergent results, indicating the absence of a fixed pattern of changes in gene expression. In this work, we investigated the expression profiles of 12 genes in the leaves of a drought-tolerant genotype (RB72910) of sugarcane and compared the results with those of other studies. The genotype was subjected to 80–100% water availability (control condition) and 0–20% water availability (simulated drought). To analyze the physiological status, the SPAD index, Fv/Fm ratio, net photosynthesis (A), stomatal conductance (g s) and stomatal transpiration (E) were measured. Total RNA was extracted from leaves and the expression of SAMDC, ZmPIP2-1 protein, ZmTIP4-2 protein, WIP protein, LTP protein, histone H3, DNAj, ferredoxin I, β-tubulin, photosystem I, gene 1 and gene 2 was analyzed by quantitative real-time PCR (RT-PCR). Important differences in the expression profiles of these genes were observed when compared with other genotypes, suggesting that complex defense mechanisms are activated in response to water stress. However, there was no recognizable pattern for the changes in expression of the different proteins associated with tolerance to drought stress.
机译:干旱是造成甘蔗生产力下降的主要因素,因为干旱会引起甘蔗的形态生理效应。研究甘蔗中水分胁迫影响的基因表达研究得出了不同的结果,表明基因表达没有固定的变化模式。在这项工作中,我们调查了甘蔗的耐旱基因型(RB72910)的叶片中12个基因的表达谱,并将结果与​​其他研究的结果进行了比较。基因型受80-100%的水分利用(对照条件)和0-20%的水分利用(模拟干旱)。为了分析生理状态,测量了SPAD指数,Fv / Fm比,净光合作用(A),气孔导度(g s)和气孔蒸腾量(E)。从叶片中提取总RNA,并分析SAMDC,ZmPIP2-1蛋白,ZmTIP4-2蛋白,WIP蛋白,LTP蛋白,组蛋白H3,DNAj,铁氧还蛋白I,β-微管蛋白,光系统I,基因1和基因2的表达。通过实时定量PCR(RT-PCR)。与其他基因型相比,观察到这些基因表达谱的重要差异,这表明复杂的防御机制可响应水分胁迫而被激活。然而,没有与干旱耐受性相关的不同蛋白质表达变化的可识别模式。

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