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Warming influences the yield and water use efficiency of winter wheat in the semiarid regions of Northwest China

机译:增温影响西北半干旱地区冬小麦的产量和水分利用效率

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Global warming directly influences crop growth and water use, which poses new challenges for food safety. The research base was at Guyuan Agricultural Meteorology Experiment Station in the semiarid region of Northwest China, and the soil was a loessal soil. A simulation experiment that warmed the farm soil with an infrared heater showed that winter wheat growth stages, including sowing-seedling emergence, seedling emergence-trefoil, trefoil stage-wintering, wintering-returning green, returning green-jointing, jointing-heading, heading-blooming and blooming-matured, were considerably affected by temperature rises. If the temperature increased 0.5-2.0 degrees C,the seedling emergence, trefoil, wintering, turning green, jointing, heading, and blooming stages were shortened by 2-4 d, 1-2 d, 10-12 d, 2-3 d, 1-3 d, 1-2 d, and 1-3 d, respectively, and the overall number of growing days was shortened by 15-28 d. Furthermore, a temperature rise of 0.5-2.0 degrees C improved winter wheat yield by 2.4%-7.9%. However, if the temperature rise was more than 1.0 degrees C, then the yield increase dropped by 2.4%-4.0%. Winter wheat water use efficiency increased by 14.7%-17.6% when the temperature rose by 0.5-1.0 degrees C. However, when the temperature,increased by more than 1.0 degrees C, water use efficiency dropped by between 13.2% and 18.4%. If the temperature increased by 0.5-2.0 degrees C, then there was a considerable increase in the winter wheat protein content, but fat levels decreased. These results suggest that continued warming in the future will significantly influence the yield and quality of winter wheat. (C) 2016 Published by Elsevier B.V.
机译:全球变暖直接影响作物的生长和用水,这对食品安全提出了新的挑战。研究基地位于中国西北半干旱地区的固原农业气象实验站,土壤为黄土。通过红外加热器加热农田土壤的模拟实验表明,冬小麦的生长阶段包括播种,出苗,三叶草,三叶期冬,越冬返青,返青,交,、抽穗-开花和开花成熟,受温度上升的影响很大。如果温度升高0.5-2.0摄氏度,幼苗出苗,三叶,越冬,变绿,拔节,抽穗和开花期缩短2-4 d,1-2 d,10-12 d,2-3 d。分别为1-3 d,1-2 d和1-3 d,总生长天数缩短了15-28 d。此外,温度升高0.5-2.0摄氏度可使冬小麦单产提高2.4%-7.9%。但是,如果温度升高超过1.0摄氏度,则产率提高将下降2.4%-4.0%。当温度升高0.5-1.0摄氏度时,冬小麦的水分利用效率提高了14.7%-17.6%。但是,当温度升高超过1.0摄氏度时,水分利用效率降低了13.2%至18.4%。如果温度升高0.5-2.0摄氏度,则冬小麦的蛋白质含量会大幅增加,但脂肪含量会下降。这些结果表明,未来的持续变暖将显着影响冬小麦的产量和品质。 (C)2016由Elsevier B.V.发布

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