Variable influence of photosynthetic thermal acclimation on future carbon uptake in Australian wooded ecosystems under climate change

环境科学 温带气候 生态系统 林地 气候变化 生态区 初级生产 适应 光合作用 生态学 热带稀树草原气候 生产力 陆地生态系统 地中海气候 大气科学 温带雨林 生物 植物 经济 宏观经济学 地质学
作者
Alison C. Bennett,Jürgen Knauer,Lauren T. Bennett,Vanessa Haverd,Stefan K. Arndt
出处
期刊:Global Change Biology [Wiley]
卷期号:30 (1)
标识
DOI:10.1111/gcb.17021
摘要

Abstract Climate change will impact gross primary productivity (GPP), net primary productivity (NPP), and carbon storage in wooded ecosystems. The extent of change will be influenced by thermal acclimation of photosynthesis—the ability of plants to adjust net photosynthetic rates in response to growth temperatures—yet regional differences in acclimation effects among wooded ecosystems is currently unknown. We examined the effects of changing climate on 17 Australian wooded ecosystems with and without the effects of thermal acclimation of C3 photosynthesis. Ecosystems were drawn from five ecoregions (tropical savanna, tropical forest, Mediterranean woodlands, temperate woodlands, and temperate forests) that span Australia's climatic range. We used the CABLE‐POP land surface model adapted with thermal acclimation functions and forced with HadGEM2‐ES climate projections from RCP8.5. For each site and ecoregion we examined (a) effects of climate change on GPP, NPP, and live tree carbon storage; and (b) impacts of thermal acclimation of photosynthesis on simulated changes. Between the end of the historical (1976–2005) and projected (2070–2099) periods simulated annual carbon uptake increased in the majority of ecosystems by 26.1%–63.3% for GPP and 15%–61.5% for NPP. Thermal acclimation of photosynthesis further increased GPP and NPP in tropical savannas by 27.2% and 22.4% and by 11% and 10.1% in tropical forests with positive effects concentrated in the wet season (tropical savannas) and the warmer months (tropical forests). We predicted minimal effects of thermal acclimation of photosynthesis on GPP, NPP, and carbon storage in Mediterranean woodlands, temperate woodlands, and temperate forests. Overall, positive effects were strongly enhanced by increasing CO 2 concentrations under RCP8.5. We conclude that the direct effects of climate change will enhance carbon uptake and storage in Australian wooded ecosystems (likely due to CO 2 enrichment) and that benefits of thermal acclimation of photosynthesis will be restricted to tropical ecoregions.

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