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Iain C Clark

Showing results (11-20 of 39) with videos related to

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Journal of Bacteriology|May 21, 2013
Fe(II) oxidation is an innate capability of nitrate-reducing bacteria that involves abiotic and biotic reactionsHans K Carlson, Iain C Clark, Steven J Blazewicz, et al.
Molecular Microbiology|August 8, 2014
Chlorate reduction in Shewanella algae ACDC is a recently acquired metabolism characterized by gene loss, suboptimal regulation and oxidative stressIain C Clark, Ryan A Melnyk, Anthony T Iavarone, et al.
Applied and Environmental Microbiology|August 23, 2011
Identification of a perchlorate reduction genomic island with novel regulatory and metabolic genesRyan A Melnyk, Anna Engelbrektson, Iain C Clark, et al.
Nature Communications|November 26, 2025
scGALA advances graph link prediction-based cell alignment for comprehensive data integration and harmonizationGuo Jiang, Kailu Song, Gregory J Fonseca, et al.
Microsystems & Nanoengineering|August 28, 2018
Measurement of copy number variation in single cancer cells using rapid-emulsification digital droplet MDASamuel C Kim, Gayatri Premasekharan, Iain C Clark, et al.
Environmental Microbiology|September 29, 2015
Genetic dissection of chlorate respiration in Pseudomonas stutzeri PDA reveals syntrophic (per)chlorate reductionIain C Clark, Matt Youngblut, Gillian Jacobsen, et al.
Mbio|May 21, 2015
Synthetic and Evolutionary Construction of a Chlorate-Reducing Shewanella oneidensis MR-1Iain C Clark, Ryan A Melnyk, Matthew D Youngblut, et al.
Nature Protocols|September 26, 2024
Droplet-based functional CRISPR screening of cell-cell interactions by SPEAC-seqCamilo Faust Akl, Mathias Linnerbauer, Zhaorong Li, et al.
Mbio|March 26, 2015
(Per)chlorate-reducing bacteria can utilize aerobic and anaerobic pathways of aromatic degradation with (per)chlorate as an electron acceptorCharlotte I Carlström, Dana Loutey, Stefan Bauer, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 16, 2021
Protein design-scapes generated by microfluidic DNA assembly elucidate domain coupling in the bacterial histidine kinase CpxAIain C Clark, Bruk Mensa, Christopher J Ochs, et al.
Pageof 4

Showing results (11-20 of 39) with videos related to

Sort By:
Pageof 4
Journal of Bacteriology|May 21, 2013
Fe(II) oxidation is an innate capability of nitrate-reducing bacteria that involves abiotic and biotic reactionsHans K Carlson, Iain C Clark, Steven J Blazewicz, et al.
Molecular Microbiology|August 8, 2014
Chlorate reduction in Shewanella algae ACDC is a recently acquired metabolism characterized by gene loss, suboptimal regulation and oxidative stressIain C Clark, Ryan A Melnyk, Anthony T Iavarone, et al.
Applied and Environmental Microbiology|August 23, 2011
Identification of a perchlorate reduction genomic island with novel regulatory and metabolic genesRyan A Melnyk, Anna Engelbrektson, Iain C Clark, et al.
Nature Communications|November 26, 2025
scGALA advances graph link prediction-based cell alignment for comprehensive data integration and harmonizationGuo Jiang, Kailu Song, Gregory J Fonseca, et al.
Microsystems & Nanoengineering|August 28, 2018
Measurement of copy number variation in single cancer cells using rapid-emulsification digital droplet MDASamuel C Kim, Gayatri Premasekharan, Iain C Clark, et al.
Environmental Microbiology|September 29, 2015
Genetic dissection of chlorate respiration in Pseudomonas stutzeri PDA reveals syntrophic (per)chlorate reductionIain C Clark, Matt Youngblut, Gillian Jacobsen, et al.
Mbio|May 21, 2015
Synthetic and Evolutionary Construction of a Chlorate-Reducing Shewanella oneidensis MR-1Iain C Clark, Ryan A Melnyk, Matthew D Youngblut, et al.
Nature Protocols|September 26, 2024
Droplet-based functional CRISPR screening of cell-cell interactions by SPEAC-seqCamilo Faust Akl, Mathias Linnerbauer, Zhaorong Li, et al.
Mbio|March 26, 2015
(Per)chlorate-reducing bacteria can utilize aerobic and anaerobic pathways of aromatic degradation with (per)chlorate as an electron acceptorCharlotte I Carlström, Dana Loutey, Stefan Bauer, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 16, 2021
Protein design-scapes generated by microfluidic DNA assembly elucidate domain coupling in the bacterial histidine kinase CpxAIain C Clark, Bruk Mensa, Christopher J Ochs, et al.
Pageof 4