Xu Hui, Hassan Muhammad A, Sun Dongyue, Wu Zhaochen, Jiang Gang, Liu Binbin, Ni Qianqian, Yang Wenkang, Fang Hao, Li Jincai, Chen Xiang
College of Agronomy, Anhui Agricultural University, Hefei, China.
Jiangsu Collaborative Innovation Centre for Modern Crop Production, Nanjing, China.
Front Plant Sci. 2022 Feb 11;13:807844. doi: 10.3389/fpls.2022.807844. eCollection 2022.
The 21st century presents many challenges to mankind, including climate change, fast growing human population, and serious concerns over food security. Wheat is a leading cereal crop that largely fulfills the global food needs. Low temperature stress accompanied by nutrient-starved soils is badly disrupting the source-sink relationship of wheat, thus causing an acute decline in final yield and deteriorating the grain quality. This review paper aimed to understand how low temperature stress affects wheat source-sink organs (i.e., leaves, roots, and spikes) and how phosphorus application reliefs in alleviating its harmful consequences. Also, we discussed mitigation strategies to enhance wheat capacity to adapt to varying temperature extremes and made rational recommendations based on modern agronomic and breeding approaches. Therefore, this study is likely to establish a solid foundation for improving the tolerance to low temperature stress and to improve its phosphorus utilization efficiency in wheat.
21世纪给人类带来了诸多挑战,包括气候变化、人口快速增长以及对粮食安全的严重担忧。小麦是一种主要的谷类作物,在很大程度上满足了全球粮食需求。低温胁迫伴随着土壤养分匮乏,严重破坏了小麦的源库关系,从而导致最终产量急剧下降,并使谷物品质恶化。这篇综述文章旨在了解低温胁迫如何影响小麦的源库器官(即叶片、根系和穗),以及施磷如何缓解其有害影响。此外,我们还讨论了增强小麦适应不同极端温度能力的缓解策略,并基于现代农艺和育种方法提出了合理建议。因此,本研究可能为提高小麦对低温胁迫的耐受性及其磷利用效率奠定坚实基础。