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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Vegetation Greening Despite Weakening Coupling Between Vegetation Growth and Temperature Over the Boreal Region
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Vegetation Greening Despite Weakening Coupling Between Vegetation Growth and Temperature Over the Boreal Region

机译:尽管植被生长与北方地区的温度之间的耦合减弱,但植被绿化

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摘要

The previously reported strong coupling between interannual variations in vegetation growth and mean growing season temperature in the extratropical (>25°N) Northern Hemisphere (NH) has displayed trends of progressive weakening in recent decades. However, the spatiotemporal patterns and drivers of the weakening coupling and its impacts on vegetation growth across the NH remain poorly understood. Here we address these issues using the vegetation index retrieved from remote sensing, global ecosystem model simulations, and gridded climate data. Our results reveal marked fading of the positive coupling between the mean growing season normalized difference vegetation index (NDVI_(GS)) and mean growing season temperature. Areas with significant positive coupling have shrunk from 31.2% to 20.0% over the periods of 1982-1997 and 1997-2012 across the extratropical NH. Vegetation productivity simulations from global ecosystem models did not capture the above mentioned patterns. There shows a continuous vegetation greening, with a greening rate of 0.0007-0.001 NDVI/year, despite the weakening of the positive coupling in the extratropical NH during the past few decades. Our results highlight that a comprehensive understanding of the underlying processes governing vegetation growth-climate coupling is urgently needed for accurate predictions of the future trajectories of the response of boreal terrestrial ecosystems to a warmer and more extreme climate regime.
机译:先前报道际变化之间的植被生长和平均生长季节温度强耦合在逐渐弱化的近几十年来温带(> 25°N)北半球(NH)已显示的趋势。然而,时空格局和弱化耦合驱动器和它的整个NH对植被生长的影响仍然知之甚少。在这里,我们讨论利用遥感,全球生态系统模型模拟,和网格化的气候数据检索的植被指数这些问题。我们的结果显示标平均生长期归一化植被指数(NDVI_(GS))和平均生长季节温度之间的正耦合衰减。与显著正耦合区域已经从31.2%以上的1982-1997和1997-2012横跨温带NH周期缩小到20.0%。从全球生态系统模型植被生产力的模拟并不捕捉上述模式。这里显示了一个连续的植被绿化,以0.0007-0.001 NDVI /年的绿化率,尽管在温带NH的正耦合在过去的几十年里弱化。我们的研究结果强调,治理植被生长气候耦合的基本过程有全面的了解,迫切需要为寒带陆地生态系统的一个温暖的,更极端的气候制度的回应的未来轨迹的准确的预测。

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