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MicroRNA Expression Analysis in the Cellulosic Biofuel Crop Switchgrass (Panicum virgatum) under Abiotic Stress

机译:非生物胁迫下纤维素生物燃料作物柳枝(Panicum virgatum)中的microRNA表达分析

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摘要

Switchgrass has increasingly been recognized as a dedicated biofuel crop for its broad adaptation to marginal lands and high biomass. However, little is known about the basic biology and the regulatory mechanisms of gene expression in switchgrass, particularly under stress conditions. In this study, we investigated the effect of salt and drought stress on switchgrass germination, growth and the expression of small regulatory RNAs. The results indicate that salt stress had a gradual but significant negative effect on switchgrass growth and development. The germination rate was significantly decreased from 82% for control to 36% under 1% NaCl treatment. However, drought stress had little effect on the germination rate but had a significant effect on the growth of switchgrass under the severest salinity stress. Both salt and drought stresses altered the expression pattern of miRNAs in a dose-dependent manner. However, each miRNA responded to drought stress in a different pattern. Salt and drought stress changed the expression level of miRNAs mainly from 0.9-fold up-regulation to 0.7-fold down-regulation. miRNAs were less sensitive to drought treatment than salinity treatment, as evidenced by the narrow fold change in expression levels. Although the range of change in expression level of miRNAs was similar under salt and drought stress, no miRNAs displayed significant change in expression level under all tested salt conditions. Two miRNAs, miR156 and miR162, showed significantly change in expression level under high drought stress. This suggests that miR156 and miR162 may attribute to the adaption of switchgrass to drought stress and are good candidates for improving switchgrass as a biofuel crop by transgenic technology.
机译:柳枝for因广泛适应边缘土地和高生物量而日益被公认为是一种专用的生物燃料作物。然而,人们对于柳枝,尤其是在胁迫条件下的基本生物学和基因表达的调控机制知之甚少。在这项研究中,我们调查了盐和干旱胁迫对柳枝switch发芽,生长和小调节RNA表达的影响。结果表明,盐胁迫对柳枝growth的生长具有逐渐但显着的负面影响。发芽率从对照组的82%显着降低到1%NaCl处理下的36%。但是,干旱胁迫对盐分胁迫最严重的发芽率影响不大,而对柳枝growth的生长影响显着。盐胁迫和干旱胁迫均以剂量依赖性方式改变了miRNA的表达模式。但是,每个miRNA对干旱胁迫的反应均不同。盐和干旱胁迫将miRNA的表达水平主要从0.9倍上调变为0.7倍下调。 miRNA对干旱处理的敏感性不如盐碱处理,表达水平的狭窄倍数变化证明了这一点。尽管在盐和干旱胁迫下,miRNA的表达水平变化范围相似,但在所有测试的盐条件下,没有miRNA表现出显着的表达水平变化。两个miRNA,miR156和miR162,在高干旱胁迫下显示出表达水平的显着变化。这表明miR156和miR162可能归因于柳枝drought对干旱胁迫的适应性,并且是通过转基因技术改良柳枝fuel作为生物燃料作物的良好候选者。

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