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Nucleic Acids Research|March 22, 2018
GraftM: a tool for scalable, phylogenetically informed classification of genes within metagenomesJoel A Boyd, Ben J Woodcroft, Gene W TysonBioinformatics (Oxford, England)|May 7, 2016
OrfM: a fast open reading frame predictor for metagenomic dataBen J Woodcroft, Joel A Boyd, Gene W TysonNature Reviews. Microbiology|January 22, 2019
An evolving view of methane metabolism in the ArchaeaPaul N Evans, Joel A Boyd, Andy O Leu, et al.BMC Research Notes|August 17, 2023
Draft genome sequence of two "Candidatus Intestinicoccus colisanans" strains isolated from faeces of healthy humansJoyce Zhou, Joel A Boyd, Bozica Nyeverecz, et al.The ISME Journal|January 18, 2019
Divergent methyl-coenzyme M reductase genes in a deep-subseafloor ArchaeoglobiJoel A Boyd, Sean P Jungbluth, Andy O Leu, et al.Microbiome|October 7, 2021
Successional dynamics and alternative stable states in a saline activated sludge microbial community over 9 yearsYulin Wang, Jun Ye, Feng Ju, et al.ISME Communications|November 8, 2023
Critical evaluation of faecal microbiome preservation using metagenomic analysisAlena L Pribyl, Donovan H Parks, Nicola Z Angel, et al.The ISME Journal|June 30, 2018
Methanotrophy across a natural permafrost thaw environmentCaitlin M Singleton, Carmody K McCalley, Ben J Woodcroft, et al.Systematic and Applied Microbiology|January 9, 2019
Discovery and ecogenomic context of a global Caldiserica-related phylum active in thawing permafrost, Candidatus Cryosericota phylum nov., Ca. Cryosericia class nov., Ca. Cryosericales ord. nov., Ca. Cryosericaceae fam. nov., comprising the four species Cryosericum septentrionale gen. nov. sp. nov., Ca. C. hinesii sp. nov., Ca. C. odellii sp. nov., Ca. C. terrychapinii sp. novMiguel A Martinez, Ben J Woodcroft, Julio C Ignacio Espinoza, et al.Nature|July 18, 2018
Genome-centric view of carbon processing in thawing permafrostBen J Woodcroft, Caitlin M Singleton, Joel A Boyd, et al.Pageof 2