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Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale. Global Biogeochemical Cycles 36, doi:10.1029/2021GB007057
. 2022. Dissolved and gaseous nitrogen losses in forests controlled by soil nutrient stoichiometry. Environmental Research Letters 16: 064025.
. 2021. . 2021.
Microbiome structure and functional potential in permafrost soils of the Western Canadian Arctic. FEMS Microbiology Ecology 97: fiab008.
. 2021. Revisiting the concept of ‘enzymic latch’ on carbon in peatlands. Science of the Total Environment 779: 146384.
. 2021. Recovery of methanogenic community and its activity in long-term drained peatlands after rewetting. Ecological Engineering 150: 105852.
. 2020. Spatial heterogeneity of belowground microbial communities linked to peatland microhabitats with different plant dominants. FEMS Microbiology Ecology 95, doi:10.1093/femsec/fiz130
. 2019. . 2018.
A plant–microbe interaction framework explaining nutrient effects on primary production. Nature Ecology & Evolution 2: 1588–1596.
. 2018. Quality of DOC produced during litter decomposition of peatland plant dominants. Soil Biology & Biochemistry 121: 221-230.
. 2018. Response of peat biogeochemistry and soil organic matter quality to rewetting in bogs and spruce swamp forests. European Journal of Soil Biology 85: 12-22.
. 2018. Scale deformity descriptions for 23 species of fish, from various geographical areas and habitats. Marine and Freshwater Research , doi:10.1071/MF17110
. 2017. Effects of long-term drainage on microbial community composition vary between peatland types. Soil Biology & Biochemistry 92: 16-26.
. 2016. Distinct microbial communities associated with buried soils in the Siberian tundra. ISME JOURNAL 8: 841-853.
. 2014. Effects of Soil Organic Matter Properties and Microbial Community Composition on Enzyme Activities in Cryoturbated Arctic Soils. PLOS ONE 9, doi:10.1371/journal.pone.0094076
. 2014. . 2014.
. 2014.
Input of easily available organic C and N stimulates microbial decomposition of soil organic matter in arctic permafrost soil. SOIL BIOLOGY & BIOCHEMISTRY 75: 143-151.
. 2014. Litter decomposition along a primary post-mining chronosequence. BIOLOGY AND FERTILITY OF SOILS 50: 827-837.
. 2014. Microbial community composition and in silico predicted metabolic potential reflect biogeochemical gradients between distinct peatland types. FEMS Microbiology Ecology 90: 633-646.
. 2014. Site- and horizon-specific patterns of microbial community structure and enzyme activities in permafrost-affected soils of Greenland. Frontiers in Microbiology 5, doi:10.3389/fmicb.2014.00541
. 2014. Can fisheries-induced evolution shift reference points for fisheries management?. ICES JOURNAL OF MARINE SCIENCE 70: 707-721.
. 2013. Can fisheries-induced evolution shift reference points for fisheries management?. ICES JOURNAL OF MARINE SCIENCE 70: 707-721.
. 2013.