FP6Reintegration grant2005–2006

SCALERECPRO · Scale-dependent recruitment processes in soft-sediments and its environmental controls

FP6 — Marie Curie Actions (Human Resources and Mobility)

Duration
2005-05-01 → 2006-04-30
EU contribution
€40,000
Participants
1
Scheme
ERG

Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.

Results in brief

Final Activity Report Summary - SCALERECPRO (Scale-dependent recruitment processes in soft-sediments and its environmental controls)

While significant efforts have been directed towards disturbance and recovery processes in soft-sediment systems, very few have conducted empirical tests of scale-dependency in recovery. However, this is imperative in order to bridge the gap between the scale of environmental problems (usually large) and the scale over which marine ecologists usually conduct their studies (usually small). The overall objective of this project was to investigate the mechanisms and patterns of early benthic recruitment and their relation to environmental forcing factors, and further, to link the mechanisms elucidated in relatively large-scale field experiments to recovery dynamics of soft-sediment communities at large, basin-wide scales, such as the entire Baltic Sea. While the importance of scale has received increasing recognition among benthic ecologists, prevailing theory has not fully acknowledged its significance. The study built on, and further developed, approaches and methodology that had been established during my initial Marie Curie Individual Fellowship in 2003-2005. A large-scale disturbance-recovery field experiment was conducted on the Swedish west coast, where different sized experimental plots were de-faunated and the subsequent recovery of the benthic community followed over time. Similar experiments were then initiated in the Baltic Sea. The patterns elucidated were linked to a comprehensive analysis of long-term benthic monitoring data from the entire open Baltic Sea. In this analysis, the focus was on the relationship between diversity and recovery potential in benthic communities and the role of different intensities and frequencies of hypoxic disturbance for the recovery of the communities. The results highlight the importance of biodiversity to the resilience and stability of benthic communities. Thus, this project adds to our knowledge on scale-dependence of disturbance and recovery in soft-sediment communities and elucidates mechanisms important in assessing the resilience of these systems.

Data: CORDIS, © European Union

Project objective

While significant efforts have been directed towards disturbance and recovery processes in soft-sediment systems, very few have conducted empirical tests of scale-dependency in recovery. However, doing this is important as it addresses the role of scale in ecological processes and thus aims at bridging the gap between the scale of environmental problems (usually large) and the scale over which marine ecologists typically employ their studies (usually small). In the proposed study I will use disturbance at different scales to investigate the patterns in early recruitment of benthic invertebrates and its environmental control.To date the key issue hampering the development of an understanding of recruitment mechanisms is:(a) the difficulty to separate larval and post-settlement stages because of the need for more or less continuous sampling of the water column and sediment for recruits and,(b) linking this information to the environmental variables (e.g. wind-waves) that trigger recruitment events.This study will implement newly developed technology to address these issues and experimentally investigate recruitment in soft-sediment communities of the Baltic Sea. The specific objectives are to (1) determine the relative contribution of larval and post-settlement stages and the role of wind-wave disturbance in early recruitment in shallow sediments, and (2) apply studies of scale-dependent colonisation to deeper Baltic Sea sediments.The project will expand our ability to decipher the critical factors that interact to determine responses to disturbance and recovery dynamics. The project will further build on the capacity for the forecasting of environmental change and developing the research base required to support the sustainable management of marine biodiversity including, for example, monitoring the health of marine ecosystems, and the conservation of marine biodiversity.

Original text from CORDIS.

Participants

  • FINNISH INSTITUTE OF MARINE RESEARCH · HELSINKICoordinatorCity levelFinland

Links

Data: CORDIS, © European Union