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Plant and Soil|December 30, 2024
Horticultural additives influence peat biogeochemistry and increase short-term CO2 production from peatBidhya Sharma, Tim R Moore, Klaus-Holger Knorr, et al.
Scientific Reports|March 3, 2018
Long-term nutrient addition increased CH4 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.
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.
Global Change Biology|November 4, 2024
Peatland Fungal Community Responses to Nutrient Enrichment: A Story Beyond NitrogenMeng Wang, Louis J Lamit, Erik A Lilleskov, et al.
Microbial Ecology|May 11, 2020
Peatland Microbial Community Composition Is Driven by a Natural Climate GradientJames Seward, Michael A Carson, L J Lamit, et al.
Environmental Microbiology|March 22, 2014
Distribution and diversity of Verrucomicrobia methanotrophs in geothermal and acidic environmentsChristine E Sharp, Angela V Smirnova, Jaime M Graham, et al.
FEMS Microbiology Letters|December 7, 2021
Beyond the usual suspects: methanogenic communities in eastern North American peatlands are also influenced by nickel and copper concentrationsSydney E Bear, James D Seward, Louis Jamie Lamit, et al.
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