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The effects of elevated CO 2 and temperature on principal carbon constituents (PCC) and C and N allocation between needle, woody (stem and branches) and root tissue of Pseudotsuga menziesii Mirb. Franco seedlings were determined. The seedlings were grown in sun‐lit controlled‐environment chambers that contained a native soil. Chambers were controlled to reproduce ambient or ambient +180 ppm CO 2 and either ambient temperature...
Effects of climate change on labile and structural carbon in Douglas‐fir needles as estimated by δ 13 C and C area measurementsNARA Subscribed
Models of photosynthesis, respiration, and export predict that foliar labile carbon (C) should increase with elevated CO 2 but decrease with elevated temperature. Sugars, starch, and protein can be compared between treatments, but these compounds make up only a fraction of the total labile pool. Moreover, it is difficult to assess the turnover of labile carbon between years for evergreen foliage. Here, we combined changes in f...
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