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Genome-wide identification and analysis of small RNAs originated from natural antisense transcripts in Oryza sativa

机译:全基因组鉴定和分析源自稻的天然反义转录本的小RNA

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摘要

Natural antisense transcripts (NATs) have been shown to play important roles in post-transcriptional regulation through the RNA interference pathway. We have combined pyrophosphate-based high-throughput sequencing and computational analysis to identify and analyze, in genome scale, cis-NAT and trans-NAT small RNAs that are derived under normal conditions and in response to drought and salt stresses in the staple plant Oryza sativa. Computationally, we identified 344 cis-NATs and 7142 trans-NATs that are formed by protein-coding genes. From the deep sequencing data, we found 108 cis-NATs and 7141 trans-NATs that gave rise to small RNAs from their overlapping regions. Consistent with early findings, the majority of these 108 cis-NATs seem to be associated with specific conditions or developmental stages. Our analyses also revealed several interesting results. The overlapping regions of the cis-NATs and trans-NATs appear to be more enriched with small RNA loci than non-overlapping regions. The small RNAs generated from cis-NATs and trans-NATs have a length bias of 21 nt, even though their lengths spread over a large range. Furthermore, >40% of the small RNAs from cis-NATs and trans-NATs carry an A as their 5′-terminal nucleotides. A substantial portion of the transcripts are involved in both cis-NATs and trans-NATs, and many trans-NATs can form many-to-many relationships, indicating that NATs may form complex regulatory networks in O. sativa. This study is the first genome-wide investigation of NAT-derived small RNAs in O. sativa. It reveals the importance of NATs in biogenesis of small RNAs and broadens our understanding of the roles of NAT-derived small RNAs in gene regulation, particularly in response to environmental stimuli.
机译:天然反义转录物(NATs)已显示出通过RNA干扰途径在转录后调控中发挥重要作用。我们结合了基于焦磷酸盐的高通量测序和计算分析,以在基因组规模上鉴定和分析在正常条件下以及对主要植物Oryza的干旱和盐胁迫的响应下衍生的顺式NAT和反式NAT小RNA苜蓿。通过计算,我们确定了344个由蛋白质编码基因形成的顺式NAT和7142个反式NAT。从深度测序数据中,我们发现了108个顺式NAT和7141个反式NAT,它们从重叠区域产生了小RNA。与早期发现一致,这108个顺式NAT的大多数似乎与特定条件或发育阶段有关。我们的分析还揭示了一些有趣的结果。顺式-NAT和反式-NAT的重叠区域似乎比非重叠区域更富集小RNA位点。从顺式NAT和反式NAT生成的小RNA的长度偏差为21 nt,即使它们的长度分布在较大范围内。此外,> 40%的来自顺式NAT和反式NAT的小RNA的5'末端核苷酸带有A。转录物中很大一部分涉及顺式NAT和反式NAT,许多反式 -NAT可以形成多对多关系,这表明NAT可能在中形成复杂的调控网络。 > O。苜蓿。这项研究是 O中NAT衍生的小RNA的首次全基因组研究。苜蓿。它揭示了NAT在小RNA的生物发生中的重要性,并拓宽了我们对NAT衍生的小RNA在基因调控中的作用的理解,尤其是对环境刺激的响应。

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