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Tuula Larmola

Showing results (1-10 of 15) with videos related to

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Global Change Biology|November 19, 2019
Lakes as nitrous oxide sources in the boreal landscapePirkko Kortelainen, Tuula Larmola, Miitta Rantakari, et al.
The Science of the Total Environment|July 29, 2021
Atmospheric nitrogen enrichment changes nutrient stoichiometry and reduces fungal N supply to peatland ericoid mycorrhizal shrubsRisto Vesala, Heikki Kiheri, Erik A Hobbie, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 1, 2014
Methanotrophy induces nitrogen fixation during peatland developmentTuula Larmola, Sanna M Leppänen, Eeva-Stiina Tuittila, et al.
Frontiers in Plant Science|June 9, 2020
Quantification of Plant Root Species Composition in Peatlands Using FTIR SpectroscopyPetra Straková, Tuula Larmola, Javier Andrés, et al.
FEMS Microbiology Ecology|April 8, 2014
Peatland succession induces a shift in the community composition of Sphagnum-associated active methanotrophsAnuliina Putkinen, Tuula Larmola, Tero Tuomivirta, et al.
Frontiers in Microbiology|February 1, 2012
Water dispersal of methanotrophic bacteria maintains functional methane oxidation in sphagnum mossesAnuliina Putkinen, Tuula Larmola, Tero Tuomivirta, et al.
Ecology|September 15, 2010
The role of Sphagnum mosses in the methane cycling of a boreal mireTuula Larmola, Eeva-Stiina Tuittila, Marja Tiirola, et al.
The New Phytologist|October 27, 2022
Ericoid mycorrhizal fungi mediate the response of ombrotrophic peatlands to fertilization: a modeling studySiya Shao, Jianghua Wu, Hongxing He, et al.
Scientific Reports|March 3, 2018
Long-term nutrient addition increased CH<sub>4</sub> emission from a bog through direct and indirect effectsSari Juutinen, Tim R Moore, Jill L Bubier, et al.
Global Change Biology|July 23, 2013
Vegetation feedbacks of nutrient addition lead to a weaker carbon sink in an ombrotrophic bogTuula Larmola, Jill L Bubier, Christine Kobyljanec, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Global Change Biology|November 19, 2019
Lakes as nitrous oxide sources in the boreal landscapePirkko Kortelainen, Tuula Larmola, Miitta Rantakari, et al.
The Science of the Total Environment|July 29, 2021
Atmospheric nitrogen enrichment changes nutrient stoichiometry and reduces fungal N supply to peatland ericoid mycorrhizal shrubsRisto Vesala, Heikki Kiheri, Erik A Hobbie, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 1, 2014
Methanotrophy induces nitrogen fixation during peatland developmentTuula Larmola, Sanna M Leppänen, Eeva-Stiina Tuittila, et al.
Frontiers in Plant Science|June 9, 2020
Quantification of Plant Root Species Composition in Peatlands Using FTIR SpectroscopyPetra Straková, Tuula Larmola, Javier Andrés, et al.
FEMS Microbiology Ecology|April 8, 2014
Peatland succession induces a shift in the community composition of Sphagnum-associated active methanotrophsAnuliina Putkinen, Tuula Larmola, Tero Tuomivirta, et al.
Frontiers in Microbiology|February 1, 2012
Water dispersal of methanotrophic bacteria maintains functional methane oxidation in sphagnum mossesAnuliina Putkinen, Tuula Larmola, Tero Tuomivirta, et al.
Ecology|September 15, 2010
The role of Sphagnum mosses in the methane cycling of a boreal mireTuula Larmola, Eeva-Stiina Tuittila, Marja Tiirola, et al.
The New Phytologist|October 27, 2022
Ericoid mycorrhizal fungi mediate the response of ombrotrophic peatlands to fertilization: a modeling studySiya Shao, Jianghua Wu, Hongxing He, et al.
Scientific Reports|March 3, 2018
Long-term nutrient addition increased CH<sub>4</sub> emission from a bog through direct and indirect effectsSari Juutinen, Tim R Moore, Jill L Bubier, et al.
Global Change Biology|July 23, 2013
Vegetation feedbacks of nutrient addition lead to a weaker carbon sink in an ombrotrophic bogTuula Larmola, Jill L Bubier, Christine Kobyljanec, et al.
Pageof 2