Detailseite
Biotic and abiotic factors that dive the function of microbial communities at biogeochemical interfaces in different soils (BAMISO)
Antragsteller
Professor Dr. Hauke Harms; Professor Dr. Michael Schloter
Fachliche Zuordnung
Bodenwissenschaften
Förderung
Förderung von 2007 bis 2017
Projektkennung
Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 40874154
Biogeochemical interfaces shape microbial community function in soil. On the other hand microbial communities influence the properties of biogeochemical interfaces. Despite the importance of this interplay, basic understanding of the role of biogeochemical interfaces for microbial performance is still missing. We postulate that biogeochemical interfaces in soil are important for the formation of functional consortia of microorganisms, which are able to shape their own microenvironment and therefore influence the properties of interfaces in soil. Furthermore biogeochemical interfaces act as genetic memory of soils, as they can store DNA from dead microbes and protect it from degradation. We propose that for the formation of functional biogeochemical interfaces microbial dispersal (e.g. along fungal networks) in response to quality and quantity of bioavailable carbon and/or water availability plays a major role, as the development of functional guilds of microbes requires energy and depends on the redox state of the habitat.To address these questions, hexadecane degradation will be studied in differently developed artificial and natural soils. To answer the question on the role of carbon quantity and quality, experiments will be performed with and without litter material at different water contents of the soil. Experiments will be performed with intact soil columns as well as soil samples where the developed interface structure has been artificially destroyed. Molecular analysis of hexadecane degrading microbial communties will be done in vitro as well as in situ. The corresponding toolbox has been successfully developed in the first phase of the priority program including methods for genome, transcriptome and proteome analysis.
DFG-Verfahren
Schwerpunktprogramme
Teilprojekt zu
SPP 1315:
Biogeochemical Interfaces in Soil
Beteiligte Personen
Professor Dr. Jean Charles Munch; Professor Dr. Lukas Y. Wick