Sharma Shailesh, Taneja Mehak, Tyagi Shivi, Singh Kashmir, Upadhyay Santosh K
Department of Botany, Panjab UniversityChandigarh, India.
National Agri-Food Biotechnology InstituteMohali, India.
Front Plant Sci. 2017 Jun 9;8:1019. doi: 10.3389/fpls.2017.01019. eCollection 2017.
Long non-coding RNAs (lncRNAs) are a family of regulatory RNAs that play essential role in the various developmental processes and stress responses. Recent advances in sequencing technology and computational methods enabled identification and characterization of lncRNAs in certain plant species, but they are less known in (bread wheat). Herein, we analyzed 52 RNA seq data (>30 billion reads) and identified 44,698 lncRNAs in genome, which were characterized in comparison to the coding sequences (mRNAs). Similar to the mRNAs, lncRNAs were also derived from each sub-genome and chromosome, and showed tissue developmental stage specific and differential expression, as well. The modulated expression of lncRNAs during abiotic stresses like heat, drought, and salt indicated their putative role in stress response. The co-expression of lncRNAs with vital mRNAs including various transcription factors and enzymes involved in Abscisic acid (ABA) biosynthesis, and gene ontology mapping inferred their regulatory roles in numerous biological processes. A few lncRNAs were predicted as precursor (19 lncRNAs), while some as target mimics (1,047 lncRNAs) of known miRNAs involved in various regulatory functions. The results suggested numerous functions of lncRNAs in , and unfolded the opportunities for functional characterization of individual lncRNA in future studies.
长链非编码RNA(lncRNAs)是一类调控RNA,在各种发育过程和应激反应中发挥着重要作用。测序技术和计算方法的最新进展使得在某些植物物种中能够鉴定和表征lncRNAs,但在(普通小麦)中它们却鲜为人知。在此,我们分析了52个RNA测序数据(超过300亿条读数),并在基因组中鉴定出44,698个lncRNAs,与编码序列(mRNAs)相比对其进行了表征。与mRNAs类似,lncRNAs也源自每个亚基因组和染色体,并且也表现出组织发育阶段特异性和差异表达。lncRNAs在热、干旱和盐等非生物胁迫期间的表达受到调控,表明它们在应激反应中可能发挥作用。lncRNAs与包括参与脱落酸(ABA)生物合成的各种转录因子和酶在内的重要mRNAs共表达,并且基因本体映射推断它们在众多生物学过程中的调控作用。一些lncRNAs被预测为已知参与各种调控功能的miRNAs的前体(19个lncRNAs),而一些则被预测为靶标模拟物(1,047个lncRNAs)。结果表明lncRNAs在中有多种功能,并为未来研究中单个lncRNA的功能表征提供了机会。