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Dominant role of plant physiology in trend and variability of gross primary productivity in North America

机译:在北美植物生理学在总初级生产力的趋势和变异中的主导作用

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摘要

Annual gross primary productivity (GPP) varies considerably due to climate-induced changes in plant phenology and physiology. However, the relative importance of plant phenology and physiology on annual GPP variation is not clear. In this study, a Statistical Model of Integrated Phenology and Physiology (SMIPP) was used to evaluate the relative contributions of maximum daily GPP (GPPmax) and the start and end of growing season (GSstart and GSend) to annual GPP variability, using a regional GPP product in North America during 2000–2014 and GPP data from 24 AmeriFlux sites. Climatic sensitivity of the three indicators was assessed to investigate the climate impacts on plant phenology and physiology. The SMIPP can explain 98% of inter-annual variability of GPP over mid- and high latitudes in North America. The long-term trend and inter-annual variability of GPP are dominated by GPPmax both at the ecosystem and regional scales. During warmer spring and autumn, GSstart is advanced and GSend delayed, respectively. GPPmax responds positively to summer temperature over high latitudes (40–80°N), but negatively in mid-latitudes (25–40°N). This study demonstrates that plant physiology, rather than phenology, plays a dominant role in annual GPP variability, indicating more attention should be paid to physiological change under futher climate change.
机译:由于气候引起的植物物候和生理变化,年总初级生产力(GPP)差异很大。但是,尚不清楚植物物候和生理学对年度GPP变化的相对重要性。在这项研究中,使用综合物候和生理统计模型(SMIPP)来评估最大每日GPP(GPPmax)和生长期的开始和结束(GSstart和GSend)对GPP年度可变性的相对贡献,并使用区域2000-2014年期间北美的GPP产品以及来自24个AmeriFlux站点的GPP数据。评估了三个指标的气候敏感性,以调查气候对植物物候和生理的影响。 SMIPP可以解释北美中高纬度地区GPP的98%的年际变化。 GPP的长期趋势和年际变化在生态系统和区域尺度上均受GPPmax支配。在春季和秋季温暖的时候,GSstart提前,GSend延迟。 GPPmax对高纬度(40–80°N)的夏季温度有正响应,而在中纬度(25–40°N)则有负响应。这项研究表明,植物生理而不是物候在年度GPP变异中起着主导作用,这表明在进一步的气候变化下应更加注意生理变化。

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