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High-throughput sequence analysis of small RNAs in skotomorphogenic seedlings of Brassica rapa ssp. rapa

机译:甘蓝型油菜种子形态发生幼苗中小RNA的高通量序列分析。拉帕

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Skotomorphogenic development is the process by which seedlings adapt to a stressful dark environment. Such metabolic responses to abiotic stresses in plants are known to be regulated in part by microRNAs (miRNAs); however, little is known about the involvement of miRNAs in the regulation of skotomorphogenesis. To identify miRNAs at the genome-wide level in skotomorphogenic seedlings of turnip (Brassica rapa subsp. rapa), an important worldwide root vegetable, we used Solexa sequencing to sequence a small RNA library from seedlings grown in the dark for 4. days. Deep sequencing showed that the small RNAs (sRNAs) were predominantly 21 to 24 nucleotides long. Specifically, 13,319,035 reads produced 359,531 unique sRNAs including rRNA, tRNA, miRNA, small nuclear RNA (snRNA), small nucleolar RNA (snoRNA), and unannotated sRNAs. Sequence analysis identified 96 conserved miRNAs belonging to 36 miRNA families and 576 novel miRNAs. qRT-PCR confirmed that the miRNAs were expressed during skotomorphogenesis similar to the trends shown by the Solexa sequencing results. A total of 2013 potential targets were predicted, and the targets of BrmiR157, BrmiR159 and BrmiR160 were proved to be regulated by miRNA-guided cleavage. These results show that specific regulatory miRNAs are present in skotomorphogenic seedlings of turnip and may play important roles in growth, development, and response to dark environment.
机译:变态发生发展是幼苗适应胁迫性黑暗环境的过程。已知这种对植物中非生物胁迫的代谢反应部分受microRNA(miRNA)的调节。然而,关于miRNA参与调节形态发生的了解甚少。为了在萝卜的芸苔科植物(Brassica rapa subsp。rapa)的变态发生幼苗中鉴定全基因组水平的miRNA,我们使用Solexa测序对黑暗中生长4天的幼苗的小RNA库进行测序。深度测序表明,小RNA(sRNA)的长度主要为21至24个核苷酸。具体来说,有13,319,035个读段产生了359,531个独特的sRNA,包括rRNA,tRNA,miRNA,小核RNA(snRNA),小核仁RNA(snoRNA)和未注释的sRNA。序列分析鉴定了96个保守的miRNA,它们属于36个miRNA家族和576个新的miRNA。 qRT-PCR证实,miRNA在拟态形成过程中表达,类似于Solexa测序结果所示的趋势。预测了总共2013个潜在靶标,并且证明了mimiRNA指导的切割可以调控BrmiR157,BrmiR159和BrmiR160的靶标。这些结果表明,特定的调节性miRNA存在于萝卜的造形幼苗中,并可能在黑暗环境中的生长,发育和响应中发挥重要作用。

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