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Delayed autumn phenology in the Northern Hemisphere is related to change in both climate and spring phenology

机译:北半球的秋季物候延迟与气候和春季物候的变化有关

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The timing of the end of the vegetation growing season (EOS) plays a key role in terrestrial ecosystem carbon and nutrient cycles. Autumn phenology is, however, still poorly understood, and previous studies generally focused on few species or were very limited in scale. In this study, we applied four methods to extract EOS dates from NDVI records between 1982 and 2011 for the Northern Hemisphere, and determined the temporal correlations between EOS and environmental factors (i.e., temperature, precipitation and insolation), as well as the correlation between spring and autumn phenology, using partial correlation analyses. Overall, we observed a trend toward later EOS in similar to 70% of the pixels in Northern Hemisphere, with a mean rate of 0.18 +/- 0.38 days yr(-1). Warming preseason temperature was positively associated with the rate of EOS in most of our study area, except for arid/semi-arid regions, where the precipitation sum played a dominant positive role. Interestingly, increased preseason insolation sum might also lead to a later date of EOS. In addition to the climatic effects on EOS, we found an influence of spring vegetation green-up dates on EOS, albeit biome dependent. Our study, therefore, suggests that both environmental factors and spring phenology should be included in the modeling of EOS to improve the predictions of autumn phenology as well as our understanding of the global carbon and nutrient balances.
机译:植被生长季节(EOS)结束的时间在陆地生态系统碳和养分循环中起关键作用。但是,对秋天物候的了解仍知之甚少,以前的研究通常集中在少数物种上或规模非常有限。在这项研究中,我们采用了四种方法从1982年至2011年北半球的NDVI记录中提取EOS日期,并确定了EOS与环境因素(即温度,降水和日照)之间的时间相关性,以及EOS与环境因素之间的相关性。使用部分相关分析的春季和秋季物候。总体而言,我们观察到北半球70%像素的后期EOS趋势,平均速率为0.18 +/- 0.38天年(-1)。除干旱/半干旱地区(降水量占主导)的干旱/半干旱地区外,我们大部分研究区域的暖季前温度与EOS速率呈正相关。有趣的是,季前日照总金额的增加也可能导致EOS的推迟。除了对EOS的气候影响外,我们还发现春季植被绿化日期对EOS的影响,尽管它取决于生物群落。因此,我们的研究表明,EOS建模中应同时包括环境因素和春季物候学,以改善对秋季物候学的预测以及我们对全球碳和养分平衡的理解。

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