Wagh Nilesh, Amane Pranav, Kshirsagar Rahul, Mandal Sayanti, Kavi Kishor P B, Suprasanna Penna
Centre for Drug Discovery and Development, Amity University Maharashtra, Mumbai, Maharashtra, India; Amity Institute of Biotechnology, Amity University Maharashtra, Mumbai, Maharashtra, India.
Amity Institute of Biotechnology, Amity University Maharashtra, Mumbai, Maharashtra, India.
Prog Mol Biol Transl Sci. 2025;214:19-64. doi: 10.1016/bs.pmbts.2025.01.003. Epub 2025 Feb 6.
Non-coding RNAs (ncRNAs), a major fraction of the genome earlier considered as transcriptomic noise has now been uncovered as functional regulators over the past decade. NcRNAs are recognized for their structural and regulatory role in intricate network of plant development and stress response, offering novel insights into molecular mechanisms underlying plant resilience. Advanced sequencing technologies have facilitated the identification and characterization of ncRNAs, highlighting their significance in plant growth, development, and stress responses. This review comprehensively addresses the varied roles of ncRNAs in orchestrating stress perception and response with a brief introduction of various classes of ncRNAs. Further, mode of action and mechanistic role of ncRNAs in modulating genetic regulation of stress response are discussed, along with the role of various ncRNA involved in regulating plant architectural changes. The ncRNA are currently exploited for developing stress-resilient crop varieties with improved yield, especially in the context of global climate change and food security. By integrating molecular perspectives with practical implications, this review offers a thorough understanding of how ncRNAs contribute to plant stress responses, paving the way for innovative strategies in crop improvement and sustainable agriculture.
非编码RNA(ncRNAs),基因组的一大部分,早期被认为是转录组噪音,在过去十年中现已被发现是功能调节器。ncRNAs因其在植物发育和应激反应的复杂网络中的结构和调节作用而受到认可,为植物恢复力的分子机制提供了新的见解。先进的测序技术促进了ncRNAs的鉴定和表征,突出了它们在植物生长、发育和应激反应中的重要性。本综述全面阐述了ncRNAs在协调应激感知和反应中的不同作用,并简要介绍了各类ncRNAs。此外,还讨论了ncRNAs在调节应激反应的基因调控中的作用方式和机制作用,以及各种ncRNA在调节植物结构变化中的作用。目前,ncRNAs被用于培育具有更高产量的抗逆作物品种,特别是在全球气候变化和粮食安全的背景下。通过将分子观点与实际应用相结合,本综述全面阐述了ncRNAs如何促进植物应激反应,为作物改良和可持续农业的创新策略铺平了道路。