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Unique and conserved MicroRNAs in wheat chromosome 5D revealed by next-generation sequencing

机译:下一代测序揭示了小麦5D染色体上独特且保守的MicroRNA

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摘要

MicroRNAs are a class of short, non-coding, single-stranded RNAs that act as post-transcriptional regulators in gene expression. miRNA analysis of Triticum aestivum chromosome 5D was performed on 454 GS FLX Titanium sequences of flow sorted chromosome 5D with a total of 3,208,630 good quality reads representing 1.34x and 1.61x coverage of the short (5DS) and long (5DL) arms of the chromosome respectively. In silico and structural analyses revealed a total of 55 miRNAs; 48 and 42 miRNAs were found to be present on 5DL and 5DS respectively, of which 35 were common to both chromosome arms, while 13 miRNAs were specific to 5DL and 7 miRNAs were specific to 5DS. In total, 14 of the predicted miRNAs were identified in wheat for the first time. Representation (the copy number of each miRNA) was also found to be higher in 5DL (1,949) compared to 5DS (1,191). Targets were predicted for each miRNA, while expression analysis gave evidence of expression for 6 out of 55 miRNAs. Occurrences of the same miRNAs were also found in Brachypodium distachyon and Oryza sativa genome sequences to identify syntenic miRNA coding sequences. Based on this analysis, two other miRNAs: miR1133 and miR167 were detected in B. distachyon syntenic region of wheat 5DS. Five of the predicted miRNA coding regions (miR6220, miR5070, miR169, miR5085, miR2118) were experimentally verified to be located to the 5D chromosome and three of them : miR2118, miR169 and miR5085, were shown to be 5D specific. Furthermore miR2118 was shown to beudexpressed in Chinese Spring adult leaves. miRNA genes identified in this study will expand our understanding of gene regulation in bread wheat.
机译:MicroRNA是一类短的非编码单链RNA,在基因表达中充当转录后调控因子。在流动分选的5D染色体的454 GS FLX Titanium序列上进行了普通小麦5D染色体的miRNA分析,共获得3,208,630个高质量读段,分别代表该染色体短臂(5DS)和长臂(5DL)的1.34x和1.61x覆盖率分别。通过计算机和结构分析,发现共有55个miRNA。发现在5DL和5DS上分别存在48和42个miRNA,其中35个是两个染色体臂共有的,而13个miRNA对5DL特异,而7个miRNA对5DS特异。总共首次在小麦中鉴定出14种预测的miRNA。还发现与5DS(1,191)相比,5DL(1,949)中的表示(每个miRNA的拷贝数)更高。可以预测每种miRNA的靶标,而表达分析可提供55种miRNA中6种表达的证据。在短枝曲霉和水稻基因组序列中也发现了相同的miRNA,以鉴定同系的miRNA编码序列。基于此分析,在小麦5DS的B. distachyon同源区域中检测到其他两个miRNA:miR1133和miR167。通过实验验证了五个预测的miRNA编码区(miR6220,miR5070,miR169,miR5085,miR2118)位于5D染色体上,其中三个:miR2118,miR169和miR5085具有5D特异性。此外,在中国春季成年叶片中,miR2118被证明是去表达的。在这项研究中鉴定的miRNA基因将扩大我们对面包小麦基因调控的理解。

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