Aims: Given the key functional role of understorey plant communities and the substantial extent of forest cover at the global scale, investigating understorey community responses to elevated CO2 (eCO2) concentrations, and the role of soil resources in these responses, is important for understanding the ecosystem-level consequences of rising CO2 concentrations for forest ecosystems. Here, we evaluated how experimentally manipulating the availabilities of the two most limiting resources in an extremely phosphorus-limited eucalypt woodland in eastern Australia (i.e. water and phosphorus) can modulate the response of the understorey community to eCO2 in terms of germination, phenology, cover, community composition and leaf traits. Methods: We c...
In vegetated terrestrial ecosystems, carbon in below- and aboveground biomass (BGB, AGB) often const...
Rising atmospheric [CO2] and associated climate change are expected to modify primary productivity a...
Elevated atmospheric [CO2] (eCO2) is currently altering nutrient cycling and availability in ecosyst...
Compared to tree responses to elevated (e)CO2, little attention has been paid to understorey plant c...
Fine roots are a key component of carbon and nutrient dynamics in forest ecosystems. Rising atmosphe...
Eucalypts are likely to play a critical role in the response of Australian forests to rising atmosph...
Background and aims: Rhizosphere processes are integral to carbon sequestration by terrestrial ecosy...
Free-Air CO2 Enrichment (FACE) experiments have demonstrated increased plant productivity in respons...
Forest ecosystems contribute substantially to biogeochemical processes on the earth. Understanding t...
Aims: Few direct tests of phosphorus (P) limitation on highly-weathered soils have been conducted, e...
This PhD research investigated the impact of variable soil [P] on the growth and photosynthetic resp...
Elevated atmospheric [CO2] (‘eCO2’) may alter species composition within vegetation types by favouri...
International audienceElevated atmospheric carbon dioxide (eCO 2) often enhances rates of photosynth...
Despite knowledge of the interaction between climate change factors significant uncertainty exists c...
Projections of future climate are highly sensitive to uncertainties regarding carbon (C) uptake and ...
In vegetated terrestrial ecosystems, carbon in below- and aboveground biomass (BGB, AGB) often const...
Rising atmospheric [CO2] and associated climate change are expected to modify primary productivity a...
Elevated atmospheric [CO2] (eCO2) is currently altering nutrient cycling and availability in ecosyst...
Compared to tree responses to elevated (e)CO2, little attention has been paid to understorey plant c...
Fine roots are a key component of carbon and nutrient dynamics in forest ecosystems. Rising atmosphe...
Eucalypts are likely to play a critical role in the response of Australian forests to rising atmosph...
Background and aims: Rhizosphere processes are integral to carbon sequestration by terrestrial ecosy...
Free-Air CO2 Enrichment (FACE) experiments have demonstrated increased plant productivity in respons...
Forest ecosystems contribute substantially to biogeochemical processes on the earth. Understanding t...
Aims: Few direct tests of phosphorus (P) limitation on highly-weathered soils have been conducted, e...
This PhD research investigated the impact of variable soil [P] on the growth and photosynthetic resp...
Elevated atmospheric [CO2] (‘eCO2’) may alter species composition within vegetation types by favouri...
International audienceElevated atmospheric carbon dioxide (eCO 2) often enhances rates of photosynth...
Despite knowledge of the interaction between climate change factors significant uncertainty exists c...
Projections of future climate are highly sensitive to uncertainties regarding carbon (C) uptake and ...
In vegetated terrestrial ecosystems, carbon in below- and aboveground biomass (BGB, AGB) often const...
Rising atmospheric [CO2] and associated climate change are expected to modify primary productivity a...
Elevated atmospheric [CO2] (eCO2) is currently altering nutrient cycling and availability in ecosyst...