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小麦品种对气温上升的物候适应:对产量构成因素和籽粒品质的影响

Phenological Adaptation of Wheat Varieties to Rising Temperatures: Implications for Yield Components and Grain Quality.

作者信息

Gulino Davide, Lopes Marta S

机构信息

Sustainable Field Crops Program, Institute of Agrifood Research and Technology (IRTA), 25198 Lleida, Spain.

出版信息

Plants (Basel). 2024 Oct 18;13(20):2929. doi: 10.3390/plants13202929.

Abstract

This study examined the effects of late sowing, water restrictions, and interannual weather variations on wheat grain yield and quality through field trials in Spain over two growing seasons. Delayed sowing and water scarcity significantly reduced yields, with grain quality mainly affected under rainfed conditions. Early-maturing varieties performed better in these conditions, benefiting from lower temperatures and extended grain-filling periods, leading to higher solar radiation interception, potentially increased photosynthetic activity, and improved yields. These varieties also saved water through reduced total cumulative evapotranspiration from sowing to maturity (ETo TOT), which was advantageous in water-limited environments. In contrast, late-maturing varieties were exposed to higher maximum temperatures during grain filling and experienced greater ETo TOT, leading to lower yields, reduced hectoliter weight, and a lower P/L ratio (tenacity/extensibility). This study highlighted the importance of optimizing temperature exposure and evapotranspiration for improved grain yield and quality, especially under climate change conditions with higher temperatures and water shortages. Notably, it established, for the first time, the importance of phenology on wheat quality of different varieties, suggesting that targeted selection for specific phenology could mitigate the negative impacts of heat stress not only on grain yield but also on grain quality.

摘要

本研究通过在西班牙两个生长季节进行田间试验,考察了晚播、水分限制和年际气候变化对小麦籽粒产量和品质的影响。晚播和缺水显著降低了产量,在雨养条件下籽粒品质受到的影响更大。早熟品种在这些条件下表现更好,受益于较低的温度和延长的灌浆期,导致更高的太阳辐射截获量,可能增加光合活性,并提高产量。这些品种还通过减少从播种到成熟的总累积蒸散量(ETo TOT)来节约用水,这在水分有限的环境中是有利的。相比之下,晚熟品种在灌浆期暴露于更高的最高温度下,且经历了更大的ETo TOT,导致产量降低、容重降低和更低的P/L比(韧性/延伸性)。本研究强调了优化温度暴露和蒸散量对提高籽粒产量和品质的重要性,特别是在温度升高和缺水的气候变化条件下。值得注意的是,该研究首次确立了物候对不同品种小麦品质的重要性,表明针对特定物候进行定向选择不仅可以减轻热胁迫对籽粒产量的负面影响,还可以减轻对籽粒品质的负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a9b/11510792/75bbfd5ad043/plants-13-02929-g001.jpg

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