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RNA 干扰在植物功能基因组学中的进展:揭示特性、机制和未来方向。

Advances in RNA Interference for Plant Functional Genomics: Unveiling Traits, Mechanisms, and Future Directions.

机构信息

Department of Genetics and Plant Breeding, College of Agriculture, G B Pant University of Agriculture and Technology, Pantnagar, 263145, Uttarakhand, India.

ICAR- Sugarcane Breeding Institute-Regional Centre, Karnal, 132001, Haryana, India.

出版信息

Appl Biochem Biotechnol. 2024 Sep;196(9):5681-5710. doi: 10.1007/s12010-023-04850-x. Epub 2024 Jan 4.

Abstract

RNA interference (RNAi) is a conserved molecular mechanism that plays a critical role in post-transcriptional gene silencing across diverse organisms. This review delves into the role of RNAi in plant functional genomics and its applications in crop improvement, highlighting its mechanistic insights and practical implications. The review begins with the foundational discovery of RNAi's mechanism, tracing its origins from petunias to its widespread presence in various organisms. Various classes of regulatory non-coding small RNAs, including siRNAs, miRNAs, and phasiRNAs, have been uncovered, expanding the scope of RNAi-mediated gene regulation beyond conventional understanding. These RNA classes participate in intricate post-transcriptional and epigenetic processes that influence gene expression. In the context of crop enhancement, RNAi has emerged as a powerful tool for understanding gene functions. It has proven effective in deciphering gene roles related to stress resistance, metabolic pathways, and more. Additionally, RNAi-based approaches hold promise for integrated pest management and sustainable agriculture, contributing to global efforts in food security. This review discusses RNAi's diverse applications, such as modifying plant architecture, extending shelf life, and enhancing nutritional content in crops. The challenges and future prospects of RNAi technology, including delivery methods and biosafety concerns, are also explored. The global landscape of RNAi research is highlighted, with significant contributions from regions such as China, Europe, and North America. In conclusion, RNAi remains a versatile and pivotal tool in modern plant research, offering novel avenues for understanding gene functions and improving crop traits. Its integration with other biotechnological approaches such as gene editing holds the potential to shape the future of agriculture and sustainable food production.

摘要

RNA 干扰(RNAi)是一种保守的分子机制,在不同的生物体中都起着至关重要的作用,参与转录后基因沉默。本篇综述深入探讨了 RNAi 在植物功能基因组学中的作用及其在作物改良中的应用,重点介绍了其机制见解和实际意义。

综述首先介绍了 RNAi 机制的基础发现,从矮牵牛到其在各种生物体中的广泛存在,追溯了其起源。现已发现多种调控非编码小 RNA 类别,包括 siRNA、miRNA 和 phasiRNA,这扩大了 RNAi 介导的基因调控的范围,超越了传统的理解。这些 RNA 类别参与复杂的转录后和表观遗传过程,影响基因表达。

在作物改良方面,RNAi 已成为理解基因功能的强大工具。它在破译与抗逆性、代谢途径等相关的基因功能方面已被证明非常有效。此外,基于 RNAi 的方法在综合虫害管理和可持续农业方面具有应用前景,为全球粮食安全努力做出了贡献。

本综述讨论了 RNAi 的多种应用,如改变植物结构、延长货架期和提高作物的营养含量。还探讨了 RNAi 技术的挑战和未来前景,包括递送方法和生物安全问题。强调了中国、欧洲和北美等地区在 RNAi 研究中的全球格局。

总之,RNAi 仍然是现代植物研究中一种多功能且关键的工具,为理解基因功能和改良作物特性提供了新途径。它与基因编辑等其他生物技术方法的整合具有塑造农业和可持续粮食生产未来的潜力。

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