Kajal Monika, Kaushal Nishant, Kaur Ravneet, Singh Kashmir
Department of Biotechnology, Panjab University, BMS Block-I, Sector 25, Chandigarh, 160014, India.
Noncoding RNA Res. 2019 Nov 25;4(4):141-154. doi: 10.1016/j.ncrna.2019.11.004. eCollection 2019 Dec.
Plant specific miRNAs (Novel miRNAs) are well known to perform distinctive functions in biological processes. Identification of new miRNAs is necessary to understand their gene regulation. Degradome provides an opportunity to explore the miRNA functions by comparing the miRNA population and their degraded products. In the present study, Small RNA sequencing data was used to identify novel miRNAs. Further, degradome sequencing was carried out to identify miRNAs targets in the plant, . The present study supplemented 40 more novel miRNAs correlating degradome data with smallRNAome. Novel miRNAs, complementary to mRNA partial sequences obtained from degradome sequencing were actually targeting the later. A big pool of miRNA was established by using and genomic data. Targets were identified for novel miRNAs and total 109 targets were predicted. BLAST2GO analysis elaborate about localization of novel miRNAs' targets and their corresponding KEGG (Kyoto Encyclopedia for Genes and Genomes) pathways. Identified targets were annotated and were found to be involved in significant biological processes like Nitrogen metabolism, Pyruvate metabolism, Citrate cycle (TCA cycle), photosynthesis, and Glycolysis/Gluconeogenesis. The present study provides an overall view of the miRNA regulation in multiple metabolic pathways that are involved in plant growth, pathogen resistance and secondary metabolism of .
植物特有的微小RNA(新微小RNA)在生物学过程中发挥独特功能已广为人知。鉴定新的微小RNA对于理解其基因调控至关重要。降解组通过比较微小RNA群体及其降解产物,为探索微小RNA功能提供了契机。在本研究中,利用小RNA测序数据鉴定新的微小RNA。此外,进行降解组测序以鉴定植物中的微小RNA靶标。本研究补充了40多个将降解组数据与小RNA组相关联的新微小RNA。与从降解组测序获得的mRNA部分序列互补的新微小RNA实际上靶向后者。通过使用[具体数据来源1]和[具体数据来源2]基因组数据建立了大量微小RNA。鉴定了新微小RNA的靶标,共预测了109个靶标。BLAST2GO分析阐述了新微小RNA靶标的定位及其相应的KEGG(京都基因与基因组百科全书)途径。对鉴定出的靶标进行注释,发现它们参与了诸如氮代谢、丙酮酸代谢、柠檬酸循环(三羧酸循环)、光合作用以及糖酵解/糖异生等重要生物学过程。本研究提供了参与植物生长、病原体抗性和[具体植物名称]次生代谢的多个代谢途径中微小RNA调控的总体情况。