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Global Change Biology · 2008 · Vol. 14 · Issue 5 · Wiley
How soil carbon balance will be affected by plant–mycorrhizal interactions under future climate scenarios remains a significant unknown in our ability to forecast ecosystem carbon storage and fluxes. We examined the effects of soil temperature (14, 20, 26 °C) on the structure and extent of a multispecies community of arbuscular mycorrhizal (AM) fungi associated with Plantago lanceolata . To isolate fungi from roots, we used a...
Global Change Biology · 2007 · Vol. 13 · Issue 12 · Wiley
There has been considerable debate on whether root/rhizosphere respiration or bulk soil respiration is more sensitive to long‐term temperature changes. We investigated the response of belowground respiration to soil warming by 3 °C above ambient in bare soil plots and plots planted with wheat and maize. Initially, belowground respiration responded more to the soil warming in bare soil plots than in planted plots. However, as t...
Global Change Biology · 2007 · Vol. 13 · Issue 8 · Wiley
Forests play a critical role in the global carbon cycle, being considered an important and continuing carbon sink. However, the response of carbon sequestration in forests to global climate change remains a major uncertainty, with a particularly poor understanding of the origins and environmental responses of soil CO 2 efflux. For example, despite their large biomass, the contribution of ectomycorrhizal (EM) fungi to forest so...
Global Change Biology · 2007 · Vol. 13 · Issue 8 · Wiley
In a number of recent field studies, the positive response of soil respiration to warming has been shown to decline over time. The two main differing hypotheses proposed to explain these results are: (1) soil microbial respiration acclimates to the increased temperature, and (2) substrate availability within the soil decreases with warming so reducing the rate of soil respiration. To investigate the relative merits of these tw...
Global Change Biology · 2006 · Vol. 12 · Issue 10 · Wiley
Interactions between photosynthetic substrate supply and temperature in determining the rate of three respiration components (leaf, belowground and ecosystem respiration) were investigated within three environmentally controlled, Populus deltoides forest bays at Biosphere 2, Arizona. Over 2 months, the atmospheric CO 2 concentration and air temperature were manipulated to test the following hypotheses: (1) the responses of the...