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Seasonal divergence in the interannual responses of Northern Hemisphere vegetation activity to variations in diurnal climate

机译:北半球植被活动对年际气候变化的年际响应中的季节差异

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摘要

Seasonal asymmetry in the interannual variations in the daytime and nighttime climate in the Northern Hemisphere (NH) is well documented, but its consequences for vegetation activity remain poorly understood. Here, we investigate the interannual responses of vegetation activity to variations of seasonal mean daytime and nighttime climate in NH (>30 °N) during the past decades using remote sensing retrievals, FLUXNET and tree ring data. Despite a generally significant and positive response of vegetation activity to seasonal mean maximum temperature () in ~22–25% of the boreal (>50 °N) NH between spring and autumn, spring-summer progressive water limitations appear to decouple vegetation activity from the mean summer , particularly in climate zones with dry summers. Drought alleviation during autumn results in vegetation recovery from the marked warming-induced drought limitations observed in spring and summer across 24–26% of the temperate NH. Vegetation activity exhibits a pervasively negative correlation with the autumn mean minimum temperature, which is in contrast to the ambiguous patterns observed in spring and summer. Our findings provide new insights into how seasonal asymmetry in the interannual variations in the mean daytime and nighttime climate interacts with water limitations to produce spatiotemporally variable responses of vegetation growth.
机译:北半球(NH)白天和夜间气候的年际变化存在季节性不对称现象,但对植被活动的影响知之甚少。在这里,我们使用遥感检索,FLUXNET和年轮数据研究了过去几十年中NH(> 30°N)的植被活动对季节性平均白天和夜间气候变化的年际响应。尽管春季和秋季之间,植被活动对北半球(> 50°N)NH的约22–25%的季节平均最高温度普遍具有显着的正响应,但春季-夏季渐进的水分限制似乎使植被活动与平均夏季,特别是在夏季干燥的气候区。秋季干旱缓解导致植被恢复,而春季和夏季在24-26%的温带NH中观测到明显的由增温引起的干旱限制。植被活动与秋季平均最低温度呈普遍负相关,这与春季和夏季观察到的模棱两可的模式形成鲜明对比。我们的发现为日间和夜间平均气候年际变化的季节性不对称性与水分限制相互作用以产生植被生长的时空变化响应提供了新的见解。

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