Canopy leaf area constrains [CO2]-induced enhancement of productivity and partitioning among aboveground carbon pools.
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ABSTRACT: Net primary productivity (NPP) is enhanced under future atmospheric [CO2] in temperate forests representing a broad range of productivity. Yet questions remain in regard to how elevated [CO2]-induced NPP enhancement may be affected by climatic variations and limiting nutrient resources, as well as how this additional production is distributed among carbon (C) pools of different longevities. Using 10 years of data from the Duke free-air CO2 enrichment (Duke FACE) site, we show that spatially, the major control of NPP was nitrogen (N) availability, through its control on canopy leaf area index (L). Elevated CO2 levels resulted in greater L, and thus greater NPP. After canopy closure had occurred, elevated [CO2] did not enhance NPP at a given L, regardless of soil water availability. Addition
SUBMITTER: McCarthy HR
PROVIDER: S-EPMC1748230 | biostudies-literature | 2006 Dec
REPOSITORIES: biostudies-literature
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