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Estimating spring frost and its impact on yield across winter wheat in China

机译:估算春季霜冻及其对我国冬小麦产量的影响

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摘要

Frost events in spring pose a serious threat to wheat production in China. These events coincide with late vegetative stages and reproductive development, which are sensitive to frost stress. To understand the spatio-temporal pattern of spring frost and its impact on winter wheat yield, we calculated the accumulated frost degree-days (AFDD) as an index for frost risk affecting yield. Additional indices to characterize the spring frost risk included accumulated frost days and temperature-drop-rate. These indices were calculated for the growth period from stem elongation to flowering with historical data collected from 161 stations across the main winter wheat growing area in China from 1981 to 2009. Frost risk is smaller in the cooler northern and warmer southern regions than in the central winter wheat growing region of China. Huang-Huai Subregion (HHS) has the greatest frost duration, intensity and suffers the largest yield losses due to spring frost. Frost risk during stem elongation to flowering has not been significantly decreased in the winter wheat-growing regions of China under climate warming. While rising temperature reduces frost events in general, it also accelerates wheat phenology which increases the risk of spring frost. Quantifying future trends and impacts of spring frost damage on wheat production will be critical for developing appropriate adaptation and mitigation strategies for food availability in China and other regions of the world affected by frost.
机译:春天的霜事件对中国的小麦产量构成了严重的威胁。这些事件与晚期营养阶段和生殖开发恰逢其敏感,对霜冻应力敏感。要了解春季霜的时空模式及其对冬小麦产量的影响,我们计算了累积的霜度 - 天(AFDD)作为影响产量的霜冻风险的指标。额外的索引表征春季霜冻风险包括累积霜冻日和温度下降率。这些指数是计算从1981年到2009年中国主要冬小麦生长面积的161个站收集的茎伸长率与开花的生长期,从中国主要的冬小麦生长面积收集。冰冷的北部和温暖的南部地区的冰霜风险比中央阵线更小冬小麦生长地区中国。黄淮次区域(HHS)具有最大的霜冻持续时间,强度,并且由于春季霜而导致的产量损失最大。在气候变暖下,冬季小麦生长地区秸秆伸长率的冰霜风险尚未显着下降。虽然温度上升的温度一般地减少了霜冻事件,但它也加速了小麦候选,这增加了春季霜的风险。量化未来趋势和春季霜损伤对小麦生产的影响对于制定中国的食物可用性和受霜冻影响的世界其他地区的适当适应和缓解策略至关重要。

著录项

  • 来源
    《Agricultural and Forest Meteorology》 |2018年第2018期|共11页
  • 作者单位

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    Department of Agricultural and Biological Engineering University of Florida;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

    National Engineering and Technology Center for Information Agriculture Jiangsu Key Laboratory for Information Agriculture Jiangsu Collaborative Innovation Center for Modern Crop Production Nanjing Agricultural University;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 农业基础科学;
  • 关键词

    Climate change; Frost; Spatial and temporal variation; Yield variability; Phenology shift; Winter wheat;

    机译:气候变化;霜;空间和时间变化;屈服变异性;候选;冬小麦;

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