Fu Hailin, Zhang Liwei, Hu Yulin, Liu Ziyi, Wang Zhenyu, Shen Fafu, Wang Wei
College of Agronomy, Shandong Agricultural University, No. 61 Daizong Street, Tai'an 271018, China.
Int J Mol Sci. 2025 Jul 29;26(15):7334. doi: 10.3390/ijms26157334.
MicroRNA528 (miR528) is a microRNA found only in monocotyledonous (monocot) plants. It has been widely reported that miR528 is involved in the regulation of plant growth and development, such as flowering, architecture, and seed and embryogenic development, in addition to playing a crucial role in response to various biotic and abiotic stresses, such as plant pathogens, salt stress, heat/cold stress, water stress, arsenic stress, oxidative stress, heavy-metal stress, and nutrient stress. Given that it is specific to monocot plants, to which the major staple food crops such as rice and wheat belong, a review of studies investigating its diverse functional roles and underlying mechanisms is presented. This review focuses on the processes in which miR528 and its targets are involved and examines their regulatory relationships with significant participation in plant development and stress responses. It is anticipated that more biological functions and evolutionary effects of miRNA targets will be elucidated with the increase in knowledge of miRNA evolution and examination of target mRNAs.
微小RNA528(miR528)是一种仅在单子叶植物中发现的微小RNA。已有广泛报道称,miR528除了在应对各种生物和非生物胁迫(如植物病原体、盐胁迫、热/冷胁迫、水分胁迫、砷胁迫、氧化胁迫、重金属胁迫和营养胁迫)中发挥关键作用外,还参与植物生长发育的调控,如开花、植株形态以及种子和胚胎发育。鉴于它对单子叶植物具有特异性,而水稻和小麦等主要粮食作物就属于单子叶植物,本文对研究其多样功能作用和潜在机制的相关研究进行了综述。本综述聚焦于miR528及其靶标所涉及的过程,并考察它们在植物发育和胁迫反应中的重要参与下的调控关系。预计随着对miRNA进化知识的增加以及对靶标mRNA的研究,将阐明miRNA靶标的更多生物学功能和进化效应。