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增强小麦抗逆性:应对热胁迫和环境挑战的生物技术进展

Enhancing wheat resilience: biotechnological advances in combating heat stress and environmental challenges.

作者信息

Arif Muhammad, Haroon Muhammad, Nawaz Ayesha Fazal, Abbas Hina, Xu Ruhong, Li Luhua

机构信息

College of Agriculture, Guizhou University, Guiyang, Guizhou, China.

Guizhou Sub-center of National Wheat Improvement Center, Guiyang, 550025, China.

出版信息

Plant Mol Biol. 2025 Mar 9;115(2):41. doi: 10.1007/s11103-025-01569-7.

Abstract

Climate change, with its increasing temperatures, is significantly disrupting global agricultural systems, and wheat, a key cereal crop faces severe challenges. Heat stress has emerged as a critical threat, accelerating wheat growth, leading to premature maturation, reduced grain filling, and ultimately lower yields. The situation is exacerbated by more frequent and intense heat waves, particularly in regions already struggling with water scarcity. Maintaining the delicate balance of temperature and water necessary for optimal wheat production is becoming challenging, posing a serious risk to global food security. Therefore, there is an urgent need to develop adaptive strategies with innovations in breeding and transgenic technologies crucial to improving wheat resilience to environmental stresses, especially to combat the growing impacts of heat stress. Modern tools like CRISPR/Cas9, Transcription Activator-Like Effector Nucleases, and Zinc Finger Nucleases have been instrumental in developing wheat varieties with improved traits. However, the future of wheat cultivation requires more than just resistance to a single stressor. As climate change intensifies, there is an urgent need for wheat varieties that can withstand multiple stresses, including heat, drought, and pests. Developing these multi-stress-tolerant cultivars is crucial for ensuring food security in a rapidly changing climate.

摘要

气候变化导致气温不断上升,正在严重扰乱全球农业系统,而主要谷类作物小麦面临着严峻挑战。热胁迫已成为一个关键威胁,加速小麦生长,导致过早成熟、籽粒灌浆减少,最终产量降低。热浪更加频繁和强烈,这使情况更加恶化,尤其是在已经面临水资源短缺的地区。维持小麦最佳生产所需的温度和水分的微妙平衡正变得越来越具有挑战性,对全球粮食安全构成严重风险。因此,迫切需要制定适应性策略,其中育种和转基因技术的创新对于提高小麦对环境胁迫的恢复力至关重要,特别是应对热胁迫日益增加的影响。像CRISPR/Cas9、转录激活样效应核酸酶和锌指核酸酶这样的现代工具在培育具有改良性状的小麦品种方面发挥了重要作用。然而,小麦种植的未来需要的不仅仅是对单一胁迫因素的抗性。随着气候变化加剧,迫切需要能够耐受多种胁迫的小麦品种,包括高温、干旱和病虫害。培育这些多抗品种对于在快速变化的气候中确保粮食安全至关重要。

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