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Genome-Wide Identification of RNA Silencing-Related Genes and Their Expressional Analysis in Response to Heat Stress in Barley (Hordeum vulgare L.)

机译:基因组鉴定RNA沉默相关基因及其响应大麦热应激的表达分析(Hordeum Vulgare L.)

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摘要

Barley (Hordeum vulgare L.) is an economically important crop cultivated in temperate climates all over the world. Adverse environmental factors negatively affect its survival and productivity. RNA silencing is a conserved pathway involved in the regulation of growth, development and stress responses. The key components of RNA silencing are the Dicer-like proteins (DCLs), Argonautes (AGOs) and RNA-dependent RNA polymerases (RDRs). Despite its economic importance, there is no available comprehensive report on barley RNA silencing machinery and its regulation. In this study, we in silico identified five DCL (HvDCL), eleven AGO (HvAGO) and seven RDR (HvRDR) genes in the barley genome. Genomic localization, phylogenetic analysis, domain organization and functional/catalytic motif identification were also performed. To understand the regulation of RNA silencing, we experimentally analysed the transcriptional changes in response to moderate, persistent or gradient heat stress treatments: transcriptional accumulation of siRNA- but not miRNA-based silencing factor was consistently detected. These results suggest that RNA silencing is dynamically regulated and may be involved in the coordination of development and environmental adaptation in barley. In summary, our work provides information about barley RNA silencing components and will be a ground for the selection of candidate factors and in-depth functional/mechanistic analyses.
机译:大麦(Hordeum Vulgare L.)是在全世界的温带气候中培育的经济上重要的作物。不良环境因素对其生存和生产力产生负面影响。 RNA沉默是一种涉及生长,发育和应力反应的监管的保守途径。 RNA沉默的关键组分是Dicer样蛋白(DCLS),Argonautes(AGOS)和RNA依赖性RNA聚合酶(RDRS)。尽管经济重视,但没有关于大麦RNA沉默机械及其监管的全面报告。在这项研究中,我们在硅中鉴定了五个DCL(HVDCL),11英寸(HVAGO)和七个RDR(HVRDR)基因在大麦基因组中。还进行了基因组定位,系统发育分析,结构域组织和功能/催化基序鉴定。为了了解RNA沉默的调节,我们通过实验分析了响应中度,持续或梯度热应激处理的转录变化:始终检测到siRNA-但不是基于miRNA的沉默因子的转录积累。这些结果表明,RNA沉默是动态调节的,并且可以参与大麦开发和环境适应的协调。总之,我们的工作提供了有关大麦RNA沉默组件的信息,并将成为选择候选因素和深入功能/机械分析的理由。

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