Yadav Amit, Mathan Jyotirmaya, Dubey Arvind Kumar, Singh Anuradha
Department of Microbiology & Molecular Genetics, Michigan State University, East Lansing, MI 48824, USA.
Sashi Bhusan Rath Government Autonomous Women's College, Brahmapur 760001, India.
Noncoding RNA. 2024 Feb 7;10(1):13. doi: 10.3390/ncrna10010013.
Plant species utilize a variety of regulatory mechanisms to ensure sustainable productivity. Within this intricate framework, numerous non-coding RNAs (ncRNAs) play a crucial regulatory role in plant biology, surpassing the essential functions of RNA molecules as messengers, ribosomal, and transfer RNAs. ncRNAs represent an emerging class of regulators, operating directly in the form of small interfering RNAs (siRNAs), microRNAs (miRNAs), long noncoding RNAs (lncRNAs), and circular RNAs (circRNAs). These ncRNAs exert control at various levels, including transcription, post-transcription, translation, and epigenetic. Furthermore, they interact with each other, contributing to a variety of biological processes and mechanisms associated with stress resilience. This review primarily concentrates on the recent advancements in plant ncRNAs, delineating their functions in growth and development across various organs such as root, leaf, seed/endosperm, and seed nutrient development. Additionally, this review broadens its scope by examining the role of ncRNAs in response to environmental stresses such as drought, salt, flood, heat, and cold in plants. This compilation offers updated information and insights to guide the characterization of the potential functions of ncRNAs in plant growth, development, and stress resilience in future research.
植物物种利用多种调控机制来确保可持续的生产力。在这个复杂的框架内,众多非编码RNA(ncRNA)在植物生物学中发挥着关键的调控作用,超越了RNA分子作为信使RNA、核糖体RNA和转运RNA的基本功能。ncRNA代表了一类新兴的调控因子,以小干扰RNA(siRNA)、微小RNA(miRNA)、长链非编码RNA(lncRNA)和环状RNA(circRNA)的形式直接发挥作用。这些ncRNA在转录、转录后、翻译和表观遗传等多个层面发挥调控作用。此外,它们相互作用,参与了与胁迫耐受性相关的多种生物学过程和机制。本综述主要聚焦于植物ncRNA的最新进展,阐述它们在根、叶、种子/胚乳等各个器官的生长发育以及种子养分发育中的功能。此外,本综述还通过研究ncRNA在植物应对干旱、盐害、洪涝、高温和低温等环境胁迫中的作用来拓宽其范围。这一汇编提供了最新信息和见解,以指导未来研究中ncRNA在植物生长、发育和胁迫耐受性方面潜在功能的表征。