FP7Reintegration grant2011–2013

GWESCB · Global warming effects on the stream carbon balance

FP7 — People (Marie Curie Actions)

Duration
2011-01-01 → 2013-12-31
EU contribution
€45,000
Participants
1
Scheme
MC-ERG

Lines connect the coordinator with its partners.

Results in brief

Global warming effects on the stream carbon balance

The main objective of GWESCB was to assess the effects of the global warming driven alteration of the temperature regimes on the carbon metabolism of stream ecosystems. Specifically, we aimed to develop a mechanistic understanding of the temperature controls on the carbon metabolism, and to understand the effects of the alteration of the temporal components of the temperature regime (diel cycles and heatwaves) on carbon metabolism. To do so, we developed over year and a half the Experimental Streams Facility (ESF, more info at www.icra.cat) at the host institution (ICRA), tested its performance, and successfully performed one experiment on the effects of warmer night-time temperatures on the streams carbon metabolic balance, that is, the balance between primary production and respiration. Results from this first experiment indicate that a the temporal component of the warming matters for the balance between metabolic processes, as warmer night-time temperatures enhanced respiration, driving the carbon metabolism towards heterotrophy. Furthermore, this trend to heterotrophy was also enhanced by the differential sensitivity to temperature of primary production and respiration, as results indicated that respiration was more sensitive to temperature increases according to what predicted by the Metabolic Theory of Ecology. Overall, results from this first experiment stress the need to consider the changes in the diel temperature regime when predicting the effects of global warming on the carbon metabolism in stream ecosystems. A second experiment on the effects of heatwaves is planned for this Spring 2014, as it was not possible to perform it during the reporting period owing to technical difficulties during the construction and testing of the ESF. Thus, regarding the project phases of the GWESCB, all were completed, but a delay in phase 2.1 involved delays in the posterior phases, which especially constrained the dissemination phase. Accordingly, no publications directly tied to this first experiment have been published. However, the GWESCB allowed the fellow to develop the ESF, which brought plenty of possibilities for research collaborations. In fact, the fellow has published during the reporting period 15 peer-reviewed publications, the last one of them in Science. Because of these achievements in terms of developed facilities, ongoing collaborations and projects, and publications, it can be summarized that the GWESCB has certainly contributed to consolidate the transition from postdoc (as Marie Curie Inter-European fellowship) to research scientist at the hosting institution.

Data: CORDIS, © European Union

Project objective

Global warming has altered and will further alter the temporal patterns of the water temperature in stream ecosystems. These changes in the temperature patterns include an increasing frequency and magnitude of heat waves, as well as an alteration of the diel temperature patterns, with warmer night-time temperatures. A growing number of studies are assessing the effect of a mean temperature increase in the ecology of weatlands, forests, streams and other ecosystems, but the effect of the alteration of the temporal patterns is mainly unexplored and might have a major impact on the C balance of streams. Any change in the C balance in streams will be reflected in the global C balance given the connecting role of river networks between donor terrestrial ecosystems and sink marine ecosystems. In this research project, I aim to experimentally assess the effects of the alteration of the previously mentioned temporal temperature patterns on the stream C balance. Thus, 2 different types of mesocosmos will be assembled and used within the framework of this research. Expected results might help better understanding how global warming influences the C cycle at both ecosystem and global scales.

Original text from CORDIS.

Participants

  • FUNDACIO INSTITUT CATALA DE RECERCA DE L'AIGUA · GironaCoordinatorSpain

Links

Data: CORDIS, © European Union