非编码rna作为推进植物翻译生物学的工具

Carolina Attallah, Gabriela Conti, Federico Zuljan, Diego Zavallo, Federico Ariel
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引用次数: 0

摘要

曾经被认为是基因组“暗物质”的非编码rna (ncRNAs)已经成为植物基因表达的关键调控因子。最初专注于模式生物的研究为利用ncrna在农业中的潜力,特别是在作物保护、改良和调节方面的潜力奠定了基础。本文综述了长链和小链ncrna在植物生物学中的作用,重点介绍了它们在农业生物技术中的应用。我们研究了作物中ncRNA表达和传递的最新策略,包括转基因和非转基因方法,以及能够精确和有效地调节植物和病原体中基因活性的新兴技术。此外,我们还全面概述了目前基于rna的产品监管的最新技术,解决了将这些创新整合到可持续农业实践中的挑战和机遇。随着监管环境的发展,了解基于ncrna的技术的安全性、有效性和对环境的影响将是其成功部署的关键。通过利用植物科学研究的进展,长而小的ncrna有望设计出高度特异性的工具,以提高作物生产力,同时保护遗传多样性,为全球粮食安全和可持续农业做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Noncoding RNAs as Tools for Advancing Translational Biology in Plants
Noncoding RNAs (ncRNAs), once considered the "dark matter" of the genome, have emerged as critical regulators of gene expression in plants. Research initially focused on model organisms has laid the groundwork for harnessing the potential of ncRNAs in agriculture, particularly for crop protection, improvement and modulation. This review explores the role of long and small ncRNAs in plant biology, highlighting their application as powerful tools in agricultural biotechnology. We examine the latest strategies for ncRNA expression and delivery in crops, including transgenic and non-transgenic approaches, as well as emerging technologies that enable precise and efficient modulation of gene activity in plants and pathogens. Additionally, we provide a comprehensive overview of the current state-of-the-art in the regulation of RNA-based products, addressing the challenges and opportunities for integrating these innovations into sustainable agricultural practices. As the regulatory landscape evolves, understanding the safety, efficacy, and environmental impact of ncRNA-based technologies will be crucial for their successful deployment. By leveraging the advances in plant science research, long and small ncRNAs hold promise for designing highly specific tools to boost crop productivity while preserving genetic diversity, contributing to global food security and sustainable agriculture.
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