Numan Muhammad, Guo Wanli, Choi Sang-Chul, Wang Xuegeng, Du Boxuan, Jin Weibo, Bhandari Ramji Kumar, Ligaba-Osena Ayalew
Present address: Laboratory of Plant Molecular Biology and Biotechnology, Department of Biology University of North Carolina Greensboro Greensboro North Carolina USA.
Present address: Department of Biotechnology, College of Life Sciences and Medicine Zhejiang Sci-Tech University Hangzhou China.
Plant Direct. 2022 May 10;6(5):e400. doi: 10.1002/pld3.400. eCollection 2022 May.
MicroRNAs (miRNAs) play an important role in growth, development, stress resilience, and epigenetic modifications of plants. However, the effect of calcium (Ca) deficiency on miRNA expression in the orphan crop tef ( remains unknown. In this study, we analyzed expression of miRNAs in roots and shoots of tef in response to Ca treatment. miRNA-seq followed by bioinformatic analysis allowed us to identify a large number of small RNAs (sRNAs) ranging from 17 to 35 nt in length. A total of 1380 miRNAs were identified in tef experiencing long-term Ca deficiency while 1495 miRNAs were detected in control plants. Among the miRNAs identified in this study, 161 miRNAs were similar with those previously characterized in other plant species and 348 miRNAs were novel, while the remaining miRNAs were uncharacterized. Putative target genes and their functions were predicted for all the known and novel miRNAs that we identified. Based on gene ontology (GO) analysis, the predicted target genes are known to have various biological and molecular functions including calcium uptake and transport. Pairwise comparison of differentially expressed miRNAs revealed that some miRNAs were specifically enriched in roots or shoots of low Ca-treated plants. Further characterization of the miRNAs and their targets identified in this study may help in understanding Ca deficiency responses in tef and related orphan crops.
微小RNA(miRNA)在植物的生长、发育、抗逆性和表观遗传修饰中发挥着重要作用。然而,钙(Ca)缺乏对孤生作物画眉草中miRNA表达的影响仍不清楚。在本研究中,我们分析了画眉草根和地上部分中miRNA对Ca处理的响应表达。通过miRNA测序并进行生物信息学分析,我们鉴定出大量长度在17至35 nt之间的小RNA(sRNA)。在长期缺钙的画眉草中总共鉴定出1380个miRNA,而在对照植物中检测到1495个miRNA。在本研究鉴定出的miRNA中,有161个miRNA与先前在其他植物物种中鉴定的miRNA相似,348个miRNA是新的,其余的miRNA未被鉴定。我们对所有鉴定出的已知和新的miRNA预测了推定的靶基因及其功能。基于基因本体(GO)分析,预测的靶基因具有多种生物学和分子功能,包括钙的吸收和运输。对差异表达的miRNA进行成对比较发现,一些miRNA在低钙处理植物的根或地上部分中特异性富集。对本研究中鉴定出的miRNA及其靶标的进一步表征可能有助于理解画眉草和相关孤生作物对缺钙的响应。