Targeted metagenomics using probe capture detect a larger diversity of nitrogen and methane cycling genes in complex microbial communities than traditional metagenomicsHenri Siljanen, Christa Schleper, Lokeshwaran Manoharan et al.|ISME Communications|2025Cited by 11
Targeted metagenomics using probe capture detect a larger diversity of nitrogen and methane cycling genes in complex microbial communities than traditional metagenomicsHenri Siljanen, Christa Schleper, Lokeshwaran Manoharan et al.|bioRxiv (Cold Spring Harbor Laboratory)|2022Cited by 7
Author response of: Targeted metagenomics using probe capture detect a larger diversity of nitrogen and methane cycling genes in complex microbial communities than traditional metagenomics. Round#2Henri Siljanen, Christa Schleper, Lokeshwaran Manoharan et al.|Peer Community In Microbiology|2025Cited by 1
Author response of: Targeted metagenomics using probe capture detect a larger diversity of nitrogen and methane cycling genes in complex microbial communities than traditional metagenomics. Round#1Henri Siljanen, Christa Schleper, Lokeshwaran Manoharan et al.|Peer Community In Microbiology|2024Cited by 0
Author response of: Targeted metagenomics using probe capture detect a larger diversity of nitrogen and methane cycling genes in complex microbial communities than traditional metagenomics. Round#4Henri Siljanen, Christa Schleper, Lokeshwaran Manoharan et al.|Peer Community In Microbiology|2025Cited by 0