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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Influence of spring and autumn phenological transitions on forest ecosystem productivity
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Influence of spring and autumn phenological transitions on forest ecosystem productivity

机译:春季和秋季物候转换对森林生态系统生产力的影响

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摘要

We use eddy covariance measurements of net ecosystem productivity (NEP) from 21 FLUXNET sites (153 site-years of data) to investigate relationships between phenology and productivity (in terms of both NEP and gross ecosystem photosynthesis, GEP) in temperate and boreal forests. Results are used to evaluate the plausibility of four different conceptual models. Phenological indicators were derived from the eddy covariance time series, and from remote sensing and models. We examine spatial patterns (across sites) and temporal patterns (across years); an important conclusion is that it is likely that neither of these accurately represents how productivity will respond to future phenological shifts resulting from ongoing climate change. In spring and autumn, increased GEP resulting from an ‘extra’ day tends to be offset by concurrent, but smaller, increases in ecosystem respiration, and thus the effect on NEP is still positive. Spring productivity anomalies appear to have carry-over effects that translate to productivity anomalies in the following autumn, but it is not clear that these result directly from phenological anomalies. Finally, the productivity of evergreen needleleaf forests is less sensitive to phenology than is productivity of deciduous broadleaf forests. This has implications for how climate change may drive shifts in competition within mixedspecies stands.
机译:我们使用21个FLUXNET站点(数据的153个站点-年)的净生态系统生产力(NEP)的涡度协方差测量来研究温带和北方森林的物候与生产力(就NEP和生态系统总光合作用而言,GEP而言)之间的关系。结果用于评估四个不同概念模型的合理性。物候指标是根据涡度协方差时间序列以及遥感和模型得出的。我们研究了空间模式(跨站点)和时间模式(跨年);一个重要的结论是,这两种方法都可能无法准确代表生产力将如何应对气候变化导致的未来物候变化。在春季和秋季,“额外”一天导致的GEP升高往往被生态系统呼吸的并发(但较小)所抵消,因此对NEP的影响仍然是积极的。春季生产力异常似乎具有残留效应,该效应会在接下来的秋天转化为生产力异常,但是尚不清楚这些现象是否直接归因于物候异常。最后,常绿针叶林的生产力对物候学的敏感性低于落叶阔叶林的生产力。这对气候变化如何推动混合物种的竞争发生了影响。

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