Moh Nann Miky Moh, Zhang Peijing, Chen Yujie, Chen Ming
Biotechnology Research Department, Ministry of Education, Kyaukse, Myanmar.
State Key Laboratory of Plant Physiology and Biochemistry, Department of Bioinformatics, College of Life Sciences, Zhejiang University, Hangzhou, China.
Front Genet. 2021 Jun 7;12:607248. doi: 10.3389/fgene.2021.607248. eCollection 2021.
Mango is a major tropical fruit in the world and is known as the king of fruits because of its flavor, aroma, taste, and nutritional values. Although various regulatory roles of microRNAs (miRNAs) and long non-coding RNAs (lncRNAs) have been investigated in many plants, there is yet an absence of such study in mango. This is the first study to provide information on non-coding RNAs (ncRNAs) of mango with the aims of identifying miRNAs and lncRNAs and discovering their potential functions by interaction prediction of the miRNAs, lncRNAs, and their target genes. In this analysis, about a hundred miRNAs and over 7,000 temperature-responsive lncRNAs were identified and the target genes of these ncRNAs were characterized. According to these results, the newly identified mango ncRNAs, like other plant ncRNAs, have a potential role in biological and metabolic pathways including plant growth and developmental process, pathogen defense mechanism, and stress-responsive process. Moreover, mango lncRNAs can target miRNAs to reduce the stability of lncRNAs and can function as molecular decoys or sponges of miRNAs. This paper would provide information about miRNAs and lncRNAs of mango and would help for further investigation of the specific functions of mango ncRNAs through wet lab experiments.
芒果是世界上一种主要的热带水果,因其风味、香气、口感和营养价值而被誉为“水果之王”。尽管微小RNA(miRNA)和长链非编码RNA(lncRNA)在许多植物中的各种调控作用已得到研究,但在芒果中尚未有此类研究。这是第一项提供芒果非编码RNA(ncRNA)信息的研究,目的是鉴定miRNA和lncRNA,并通过miRNA、lncRNA及其靶基因的相互作用预测来发现它们的潜在功能。在该分析中,鉴定出了约100个miRNA和7000多个温度响应性lncRNA,并对这些ncRNA的靶基因进行了表征。根据这些结果,新鉴定出的芒果ncRNA与其他植物ncRNA一样,在包括植物生长发育过程、病原体防御机制和应激反应过程在内的生物和代谢途径中具有潜在作用。此外,芒果lncRNA可以靶向miRNA以降低lncRNA的稳定性,并可作为miRNA的分子诱饵或海绵发挥作用。本文将提供有关芒果miRNA和lncRNA的信息,并有助于通过湿实验室实验进一步研究芒果ncRNA的具体功能。