Department of Biotechnology, Faculty of Science, Mahidol University, Bangkok, Thailand.
Mol Biotechnol. 2013 Mar;53(3):257-69. doi: 10.1007/s12033-012-9521-z.
MicroRNAs (miRNAs) are a newly discovered class of noncoding endogenous small RNAs involved in plant growth and development as well as response to environmental stresses. miRNAs have been extensively studied in various plant species, however, only few information are available in cassava, which serves as one of the staple food crops, a biofuel crop, animal feed and industrial raw materials. In this study, the 169 potential cassava miRNAs belonging to 34 miRNA families were identified by computational approach. Interestingly, mes-miR319b was represented as the first putative mirtron demonstrated in cassava. A total of 15 miRNA clusters involving 7 miRNA families, and 12 pairs of sense and antisense strand cassava miRNAs belonging to six different miRNA families were discovered. Prediction of potential miRNA target genes revealed their functions involved in various important plant biological processes. The cis-regulatory elements relevant to drought stress and plant hormone response were identified in the promoter regions of those miRNA genes. The results provided a foundation for further investigation of the functional role of known transcription factors in the regulation of cassava miRNAs. The better understandings of the complexity of miRNA-mediated genes network in cassava would unravel cassava complex biology in storage root development and in coping with environmental stresses, thus providing more insights for future exploitation in cassava improvement.
微小 RNA(miRNA)是一类新发现的非编码内源性小 RNA,参与植物的生长发育以及对环境胁迫的响应。miRNA 在各种植物物种中得到了广泛的研究,然而,在木薯中,只有很少的信息可用,木薯是一种主要的粮食作物、生物燃料作物、动物饲料和工业原料。在这项研究中,通过计算方法鉴定了 169 个潜在的木薯 miRNA,属于 34 个 miRNA 家族。有趣的是,mes-miR319b 被认为是第一个在木薯中证明的假定 mirtron。总共发现了 15 个 miRNA 簇,涉及 7 个 miRNA 家族,以及 12 对属于 6 个不同 miRNA 家族的 sense 和 antisense 木薯 miRNA。对潜在 miRNA 靶基因的预测揭示了它们在各种重要植物生物学过程中的功能。在那些 miRNA 基因的启动子区域中鉴定到了与干旱胁迫和植物激素反应相关的顺式调控元件。这些结果为进一步研究已知转录因子在调控木薯 miRNA 中的功能作用提供了基础。更好地理解木薯中 miRNA 介导的基因网络的复杂性,将揭示木薯在块根发育和应对环境胁迫方面的复杂生物学,从而为未来在木薯改良方面的开发提供更多的见解。