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FEMS Microbiology Ecology|January 24, 2018
Nitrite-oxidizing activity responds to nitrite accumulation in soilAndrew T Giguere, Anne E Taylor, David D Myrold, et al.
Applied and Environmental Microbiology|August 20, 2013
Use of aliphatic n-alkynes to discriminate soil nitrification activities of ammonia-oxidizing thaumarchaea and bacteriaAnne E Taylor, Neeraja Vajrala, Andrew T Giguere, et al.
FEMS Microbiology Ecology|August 7, 2009
Termination of belowground C allocation by trees alters soil fungal and bacterial communities in a boreal forestStephanie A Yarwood, David D Myrold, Mona N Högberg
Indian Journal of Microbiology|October 27, 2012
Molecular diversity of Frankia from root nodules of Hippophae salicifolia D.Don found in SikkimAnindita Khan, David D Myrold, Arvind Kumar Misra
Oecologia|March 21, 2006
Root controls on soil microbial community structure in forest soilsJustin B Brant, David D Myrold, Elizabeth W Sulzman
Frontiers in Microbiology|March 21, 2019
Distributions of Extracellular Peptidases Across Prokaryotic Genomes Reflect Phylogeny and HabitatTrang T H Nguyen, David D Myrold, Ryan S Mueller
Ecological Applications : a Publication of the Ecological Society of America|January 9, 2007
Environmental controls on denitrifying communities and denitrification rates: insights from molecular methodsMatthew D Wallenstein, David D Myrold, Mary Firestone, et al.
Oecologia|September 30, 2005
Contrasting patterns of soil N-cycling in model ecosystems of Fennoscandian boreal forestsMona N Högberg, David D Myrold, Reiner Giesler, et al.
Oecologia|April 9, 2009
Host species and habitat affect nodulation by specific Frankia genotypes in two species of Alnus in interior AlaskaMichael Damon Anderson, Roger W Ruess, David D Myrold, et al.
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