Using temperature-dependent changes in leaf scaling relationships to quantitatively account for thermal acclimation of respiration in a coupled global climate-vegetation model
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Atkin, Owen; Atkinson, Lindsey J; Fisher, Rosie A; Campbell, Catherine D; Zaragoza-Castells, Joana; Pitchford, Jon W; Woodward, F Ian; Hurry, Vaughan
Description
The response of plant respiration (R) to temperature is an important component of the biosphere's response to climate change. At present, most global models assume that R increases exponentially with temperature and does not thermally acclimate. Although
Collections | ANU Research Publications |
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Date published: | 2008 |
Type: | Journal article |
URI: | http://hdl.handle.net/1885/59531 |
Source: | Global Change Biology |
DOI: | 10.1111/j.1365-2486.2008.01664.x |
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