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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Spatiotemporal Consistency of Four Gross Primary Production Products and Solar-Induced Chlorophyll Fluorescence in Response to Climate Extremes Across CONUS in 2012
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Spatiotemporal Consistency of Four Gross Primary Production Products and Solar-Induced Chlorophyll Fluorescence in Response to Climate Extremes Across CONUS in 2012

机译:四种总初级生产产品和太阳能抗叶绿素荧光的时空普通符合2012年康明斯气候极端的叶绿素荧光

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摘要

Large spatial-scale effects of climate extremes on gross primary production (GPP), the largest terrestrial carbon flux, are highly uncertain even as these extremes increase in frequency and extent. Here we report the impacts of spring warming and summer drought in 2012 on GPP across the contiguous United States (CONUS) using estimates from four GPP models: Vegetation Photosynthesis Model (VPM), MOD17A2H V006, Carnegie-Ames-Stanford Approach, and Simple Biosphere/Carnegie-Ames-Stanford Approach. VPM simulations are driven by Moderate Resolution Imaging Spectroradiometer, North American Regional Reanalysis climate data, and C_3 and C_4 cropland maps from the United States Department of Agriculture Cropland Data Layer data set. Across 25 eddy covariance flux tower sites, GPP estimates from VPM (GPP_(VPM)) showed better accuracy in terms of cross-site variability and interannual variability (R~2 = 0.84 and 0.46, respectively) when compared to MOD17 GPP. We further assessed the spatial and temporal (seasonal) consistency between GPP products and the Global Ozone Monitoring Experiment-2 solar-induced chlorophyll fluorescence over CONUS during 2008-2014. The results suggested that GPP_(VPM) agrees best with solar-induced chlorophyll fluorescence across space and time, capturing seasonal dynamics and interannual variations. Anomaly analyses showed that increased GPP during the spring compensated for the reduced GPP during the summer, resulting in near-neutral changes in annual GPP for the CONUS. This study demonstrates the importance of assessing the impacts of different types and timing of climate extremes on GPP and the need to improve light use efficiency models by incorporating C_3 and C_4 plant functional types.
机译:气候极端对初级生产总产(GPP)的大型空间尺度效应,最大的陆地碳通量,即使这些极端的频率和范围增加,也非常不确定。在这里,我们举报了2012年在2012年对2012年春季变暖和夏季干旱的影响,使用四个GPP模型的估计数:植被光合作型(VPM),Mod17A2H V006,Carnegie-Ames-Stanford方法和简单的生物圈/ Carnegie-Ames-Stanford方法。 VPM仿真由中度分辨率的成像分光镜,北美区域再分析气候数据,以及来自美国农业部农业部数据层数据集数据集的C_3和C_4农田地图。在25个EDDY协方差磁通塔网站上,VPM(GPP_(VPM))的GPP估计在与MOD17 GPP相比时,VPM(GPP_(VPM))在跨场变异性和续变性方面(分别为r〜2 = 0.84和0.46)显示出更好的准确性。我们进一步评估了GPP产品与全球臭氧监测实验-2在2008 - 2014年期间康明斯的全球臭氧监测实验-2太阳能诱导的叶绿素荧光之间的空间和时间(季节性)一致性。结果表明,GPP_(VPM)在太阳能诱导的叶绿素荧光横跨空间和时间,捕获季节性动态和持续变化。异常分析表明,春季期间春季期间的GPP增加了GPP,在夏季减少了GPP,导致康明斯的年度GPP近中立变化。本研究表明,评估不同类型和气候极端的时机对GPP的影响的重要性以及通过掺入C_3和C_4植物功能类型来改善光利用效率模型的需要。

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  • 作者单位

    Department of Microbiology and Plant Biology Center for Spatial Analysis University of Oklahoma Norman OK USA;

    Department of Microbiology and Plant Biology Center for Spatial Analysis University of Oklahoma Norman OK USA;

    Department of Microbiology and Plant Biology Center for Spatial Analysis University of Oklahoma Norman OK USA;

    International Institute for Earth System Science Nanjing University Nanjing China;

    Department of Environmental Systems Science ETH Zurich Zurich Switzerland;

    Center for Global Change and Earth Observations (CGCEO) Michigan State University East Lansing MI USA;

    Numerical Terradynamic Simulation Group College of Forestry and Conservation University of Montana Missoula MT USA;

    Department of Biology Virginia Commonwealth University Richmond VA USA;

    Department of Microbiology and Plant Biology Center for Spatial Analysis University of Oklahoma Norman OK USA;

    Jiangsu Provincial Key Laboratory of Geographic Information Science and Technology School of Geographic and Oceanographic Sciences Nanjing University Nanjing China;

    Department of Microbiology and Plant Biology Center for Spatial Analysis University of Oklahoma Norman OK USA;

    Department of Geography University of Colorado Boulder Boulder CO USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物分布与生物地理学 ;
  • 关键词

    Spatiotemporal Consistency; Four Gross; Primary Production;

    机译:时空一致性;四个总计;主要生产;

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