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Deep sequencing of wheat sRNA transcriptome reveals distinct temporal expression pattern of miRNAs in response to heat light and UV

机译:小麦sRNA转录组的深度测序揭示了响应热光和紫外线的miRNA的瞬时表达模式

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摘要

Understanding of plant adaptation to abiotic stresses has implications in plant breeding, especially in the context of climate change. MicroRNAs (miRNAs) and short interfering RNAs play a crucial role in gene regulation. Here, wheat plants were exposed to one of the following stresses: continuous light, heat or ultraviolet radiations over five consecutive days and leaf tissues from three biological replicates were harvested at 0, 1, 2, 3, 7 and 10 days after treatment (DAT). A total of 72 small RNA libraries were sequenced on the Illumina platform generating ~524 million reads corresponding to ~129 million distinct tags from which 232 conserved miRNAs were identified. The expression levels of 1, 2 and 79 miRNAs were affected by ultraviolet radiation, continuous light and heat, respectively. Approximately 55% of the differentially expressed miRNAs were downregulated at 0 and 1 DAT including miR398, miR528 and miR156 that control mRNAs involved in activation of signal transduction pathways and flowering. Other putative targets included histone variants and methyltransferases. These results suggest a temporal miRNA-guided post-transcriptional regulation that enables wheat to respond to abiotic stresses, particularly heat. Designing novel wheat breeding strategies such as regulatory gene-based marker assisted selection depends on accurate identification of stress induced miRNAs.
机译:了解植物对非生物胁迫的适应性对植物育种具有影响,特别是在气候变化的背景下。 MicroRNA(miRNA)和短干扰RNA在基因调控中起着至关重要的作用。在此,小麦植物遭受以下压力之一:连续五天连续不断的光,热或紫外线辐射,在处理后0、1、2、3、7和10天(DAT)收获来自三个生物复制品的叶片组织)。在Illumina平台上对总共72个小RNA文库进行了测序,产生了约5.24亿个读取,对应于约1.29亿个不同的标签,从中识别出232个保守的miRNA。 1、2和79个miRNA的表达水平分别受到紫外线,连续光和热的影响。大约55%的差异表达miRNA在0和1 DAT下调,包括控制信号转导途径激活和开花的mRNA的miR398,miR528和miR156。其他推定的靶标包括组蛋白变体和甲基转移酶。这些结果表明,暂时的miRNA指导的转录后调控使小麦能够应对非生物胁迫,特别是热量。设计新的小麦育种策略,例如基于调控基因的标记辅助选择,取决于对应激诱导的miRNA的准确识别。

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