TY - JOUR
T1 - Continental scientific drilling and microbiology: (extremely) low biomass in bedrock of central Sweden
AU - Westmeijer, George
AU - Escudero, Cristina
AU - Bergin, Claudia
AU - Turner, Stephanie
AU - Stahle, Magnus
AU - Mehrshad, Maliheh
AU - Leroy, Prune
AU - Buck, Moritz
AU - Lopez-Hernandez, Pilar
AU - Kallmeyer, Jens
AU - Amils, Ricardo
AU - Bertilsson, Stefan
AU - Dopson, Mark
N1 - Publisher Copyright:
© 2024 George Westmeijer et al.
PY - 2024
Y1 - 2024
N2 - Scientific drilling expeditions offer a unique opportunity to characterize microbial communities in the subsurface that have long been isolated from the surface. With subsurface microbial biomass being low in general, biological contamination from the drilling fluid, sample processing, or molecular work is a major concern. To address this, characterization of the contaminant populations in the drilling fluid and negative extraction controls are essential for assessing and evaluating such sequencing data. Here, rock cores down to 2250 m depth, groundwater-bearing fractures, and the drilling fluid were sampled for DNA to characterize the microbial communities using a broad genomic approach. However, even after removing potential contaminant populations present in the drilling fluid, notorious contaminants were abundant and mainly affiliated with the bacterial order Burkholderiales. These contaminant microorganisms likely originated from the reagents used for isolating DNA despite stringent quality standards during the molecular work. The detection of strictly anaerobic sulfate reducers such as Candidatus Desulforudis audaxviator suggested the presence of autochthonous deep biosphere taxa in the sequenced libraries, yet these clades represented only a minor fraction of the sequence counts ( < 0.1 %), hindering further ecological interpretations. The described methods and findings emphasize the importance of sequencing extraction controls and can support experimental design for future microbiological studies in conjunction with continental drilling operations.
AB - Scientific drilling expeditions offer a unique opportunity to characterize microbial communities in the subsurface that have long been isolated from the surface. With subsurface microbial biomass being low in general, biological contamination from the drilling fluid, sample processing, or molecular work is a major concern. To address this, characterization of the contaminant populations in the drilling fluid and negative extraction controls are essential for assessing and evaluating such sequencing data. Here, rock cores down to 2250 m depth, groundwater-bearing fractures, and the drilling fluid were sampled for DNA to characterize the microbial communities using a broad genomic approach. However, even after removing potential contaminant populations present in the drilling fluid, notorious contaminants were abundant and mainly affiliated with the bacterial order Burkholderiales. These contaminant microorganisms likely originated from the reagents used for isolating DNA despite stringent quality standards during the molecular work. The detection of strictly anaerobic sulfate reducers such as Candidatus Desulforudis audaxviator suggested the presence of autochthonous deep biosphere taxa in the sequenced libraries, yet these clades represented only a minor fraction of the sequence counts ( < 0.1 %), hindering further ecological interpretations. The described methods and findings emphasize the importance of sequencing extraction controls and can support experimental design for future microbiological studies in conjunction with continental drilling operations.
UR - https://res.slu.se/id/publ/128556
U2 - 10.5194/bg-21-591-2024
DO - 10.5194/bg-21-591-2024
M3 - Journal article
AN - SCOPUS:85184077946
SN - 1726-4170
VL - 21
SP - 591
EP - 604
JO - Biogeosciences
JF - Biogeosciences
IS - 2
ER -