Microbial controls of greenhouse gas emissions from boreal lakes
Publisher
University of JyväskyläISBN
978-951-39-6127-5ISSN Search the Publication Forum
1456-9701Contains publications
- Article I: Karhunen J., Arvola L., Peura S. & Tiirola M. 2013. Green sulphur bacteria as a component of the photosynthetic plankton community in small dimictic humic lakes with an anoxic hypolimnion. Aquatic Microbial Ecology 68: 267–272. DOI: 10.3354/ame01620
- Article II: Saarenheimo J., Rissanen A., Nykänen H., Arvola L., Lehmann M.F. & Tiirola M. 2015. Genetic and environmental factors controlling nitrous oxide accumulation in lakes. PLoS ONE. 10 (3), e0121201 DOI: 10.1371/journal.pone.0121201
- Article III: Saarenheimo J., Tiirola M. & Rissanen A. 2015. Functional gene pyrosequencing indicates that denitrification is driven by a few core proteobacterial populations in boreal lakes. Submitted manuscript.
- Article IV: Devlin S., Saarenheimo J., Syväranta J. & Jones R.I. 2015. Top consumer abundance influences lake methane efflux. Submitted manuscript.
- Article V: Saarenheimo J., Syväranta J., Devlin S., Aalto S.L., Tiirola M. & Jones R.I. 2015. Influence of a trophic cascade on the bacterial community in a whole-lake manipulation.Manuscript.
Keywords
Chlorobium denitrification humic lakes methanotrophs next generation sequencing nitrous oxide stratification järvet humusjärvet boreaalinen vyöhyke kerrostuneisuus mikrobit bakteerit DNA-analyysi mikrobisto mikrobiekologia ravintoverkot kalat kalanistutus kasvihuonekaasut ilmastonmuutokset metaani dityppioksidi hiilinielut denitrifikaatio
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