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实验室之外:为农业应对气候变化和压力管理做好未来准备。

Beyond the lab: future-proofing agriculture for climate resilience and stress management.

作者信息

Pehlivan Necla, Altaf Muhammad Tanveer, Emamverdian Abolghassem, Ghorbani Abazar

机构信息

State Key Laboratory of Tree Genetics and Breeding, Key Laboratory of State Forestry and Grassland Administration on Subtropical Forest Biodiversity Conservation, the Southern Modern Forestry Collaborative Innovation Center, College of Life Sciences, Nanjing Forestry University, Nanjing, China.

Department of Field Crops, Faculty of Agriculture, Recep Tayyip Erdogan University, Rize, Türkiye.

出版信息

Front Plant Sci. 2025 Jun 13;16:1565850. doi: 10.3389/fpls.2025.1565850. eCollection 2025.

Abstract

Biotechnology has revolutionized the agricultural landscape, ushering in a new era of crop improvement. Biotechnological delivery innovations have driven significant advancements, from enhancing nutritional value and shelf life to developing stress-resistant varieties. Leveraging techniques like genome editing, RNA interference (RNAi), and omics approaches, the potential to generate tolerant crops, create beneficial germplasm, achieve higher crop yields, and enable targeted biomolecule delivery has been unlocked, leading to the establishment of novel, sustainable agricultural systems. This review synthesized 481 studies sourced from the Web of Science (WOS) database, reflecting the diversity of plant species, biotechnological approaches, and abiotic/biotic stress categories reported in the literature over the past three years. The findings focused on specific applications and implications of various technologies across different stress categories and plant types, providing a detailed perspective on stress tolerance mechanisms. Furthermore, the review highlights significant areas of controversy, including ethical concerns, debates, challenges, risks, socioeconomic impacts, and limitations associated with these technological advancements. As the world's population surges and dietary demands evolve, biotechnology holds the key to assuring secure food supplies and promoting sustainable agricultural practices amidst the challenges brought about by climate change. This synthesis highlights the significant potential of biotechnological advancements in revolutionizing agriculture, facilitating the creation of resilient, adaptable, and sound systems capable of addressing the needs of a swiftly evolving world.

摘要

生物技术彻底改变了农业面貌,开启了作物改良的新时代。生物技术递送创新推动了重大进展,从提高营养价值和延长保质期到培育抗逆品种。利用基因组编辑、RNA干扰(RNAi)和组学方法等技术,培育耐逆作物、创造有益种质、提高作物产量以及实现靶向生物分子递送的潜力已被释放,从而促成了新型可持续农业系统的建立。本综述综合了来自科学网(WOS)数据库的481项研究,反映了过去三年文献中报道的植物物种、生物技术方法以及非生物/生物胁迫类别的多样性。研究结果聚焦于不同胁迫类别和植物类型中各种技术的具体应用和影响,提供了关于耐逆机制的详细视角。此外,该综述突出了重大争议领域,包括伦理问题、争论、挑战、风险、社会经济影响以及与这些技术进步相关的局限性。随着世界人口激增和饮食需求演变,生物技术是在气候变化带来的挑战中确保粮食供应安全和促进可持续农业实践的关键。本综述强调了生物技术进步在变革农业方面的巨大潜力,有助于创建能够满足快速变化世界需求的有韧性、适应性强且健全的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa74/12202413/5682338ca862/fpls-16-1565850-g001.jpg

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