Dataset: Whole cellular metal quotas, metal to phosphorous ratios, and metal to carbon ratios of Pseudoalteromonas sp. strain BB2-AT2 cultures originally collected from Scripps Pier, California coast in 1995

This dataset has not been validatedPreliminary and in progressVersion 1 (2020-04-20)Dataset Type:experimental

Principal Investigator: Mak A. Saito (Woods Hole Oceanographic Institution)

Co-Principal Investigator: Michael G. Mazzotta (Woods Hole Oceanographic Institution)

Technician: Matthew R. McIlvin (Woods Hole Oceanographic Institution)

BCO-DMO Data Manager: Amber D. York (Woods Hole Oceanographic Institution)


Project: US GEOTRACES PMT: Cobalt Biogeochemical Cycling and Connections to Metalloenzymes in the Pacific Ocean (PMT Cobalt and Metalloenzymes)

Project: Collaborative Research: Underexplored Connections between Nitrogen and Trace Metal Cycling in Oxygen Minimum Zones Mediated by Metalloenzyme Inventories (CliOMZ)

Whole cellular metal quotas, metal to phosphorous ratios, and metal to carbon ratios of Pseudoalteromonas sp. strain BB2-AT2 cultures originally collected from Scripps Pier, California coast in 1995.  Physiological work was conducted at the Woods Hole Oceanographic Institution, Woods Hole, MA in 2019. These data will be published in Mazzotta, et al. (in press). 

Related Datasets:
BB2-AT2 Cytosolic Metallome https://www.bco-dmo.org/dataset/808610
BB2-AT2 Metalloproteome Proteins https://www.bco-dmo.org/dataset/808619

These data were also supported by a Camille and Henry Dreyfus Foundation Environmental Chemistry Postdoctoral Fellowship.


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Related Publications

Results

Mazzotta, M. G., McIlvin, M. R., & Saito, M. A. (2020). Characterization of the Fe metalloproteome of a ubiquitous marine heterotroph, Pseudoalteromonas (BB2-AT2): multiple bacterioferritin copies enable significant Fe storage. Metallomics, 12(5), 654–667. https://doi.org/10.1039/d0mt00034e