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Global microRNA modification in cotton ( Gossypium hirsutum L.)

机译:棉花(陆地棉)中的全球microRNA修饰

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MicroRNAs (miRNAs) are small noncoding RNAs participating in versatile biological processes via post?¢????transcriptionally gene regulation. However, how miRNAs are modified or degraded remains unknown, despite years of studies have unravelled much details of miRNA biogenesis and function. Here, we systematically investigated miRNA modification using six small RNA sequencing libraries generated from cotton seedling as well as cotton fibre at five developmental stages. Our results show that 1?¢????2?¢????nt truncation and addition on both 5?¢???2 and 3?¢???2 ends of miRNAs are the major modification forms. The 5?¢???2 and 3?¢???2 end miRNA modification was almost equal in the six development stages. Truncation was more common than addition on both 5?¢???2 and 3?¢???2 end. Structure analysis of the 5?¢???2 and 3?¢???2 ends of miRNAs and isomiRs shows that uridine is the preferential nucleotide at the first position of both 5?¢???2 and 3?¢???2 ends. According to analysis of nucleotides truncated and tailed from miRNAs, both miRNAs and isomiRs share a similar positional structure distribution at their 5?¢???2 and 3?¢???2 ends, respectively. Furthermore, opposite to previous reports, cytodine is more frequently truncated and tailed from the two ends of isomiRs, implying existence of a complex cytodine balance in isomiRs. Comparison of isomiR expression shows differential miRNA modification amongst the six developmental stages in terms of selective modification form, development?¢????dependent modification and differential expression abundance. Our results globally uncovered miRNA modification features in cotton, which could contribute us to understanding miRNA's postmature modification and its regulatory function.
机译:MicroRNA(miRNA)是小的非编码RNA,通过转录后基因调控参与多种生物学过程。然而,尽管多年的研究揭示了miRNA的生物发生和功能的许多细节,但如何修饰或降解miRNA仍然未知。在这里,我们系统地使用六个小RNA测序文库系统地研究了miRNA修饰,这些文库是从棉花幼苗以及棉花纤维在五个发育阶段生成的。我们的结果表明,miRNA的5′2′和3′′2末端的1′→2′→2′nt截短和加成是主要的修饰形式。在六个发育阶段,5′端2和3′端2末端的miRNA修饰几乎相等。在5′端2和3′端2端均截短比加成更常见。对miRNA和isomiR的5′2和3′2末端的结构分析表明,尿苷是5′2′和3′′2′的第一位置的优先核苷酸。 2结束。根据对从miRNA截短和拖尾的核苷酸的分析,miRNA和isomiRs分别在其5′^ 2 2和3′^ 2 2末端共享相似的位置结构分布。此外,与以前的报道相反,胞嘧啶更经常被截断并从isomiRs的两个末端拖尾,这意味着isomiRs中存在复杂的胞嘧啶平衡。 isomiR表达的比较显示,在六个发育阶段中,在选择性修饰形式,发育依赖依赖性修饰和差异表达丰度方面存在差异性miRNA修饰。我们的研究结果在全球范围内发现了棉花中的miRNA修饰特征,这可能有助于我们了解miRNA的过早修饰及其调控功能。

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