Dataset: Synechococcus batch culture data (cell quotas and ratios (C,N,P), size, and diameter) from laboratory experiments in 2021 to 2022 with related isolates cultured across a range of temperatures (16-25C)

Final no updates expectedDOI: 10.26008/1912/bco-dmo.926311.1Version 1 (2024-04-30)Dataset Type:experimental

Principal Investigator: Adam Martiny (University of California-Irvine)

Scientist: Nathan S. Garcia (University of California-Irvine)

Scientist: Renne Harcourt (University of California-Irvine)

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


Project: Collaborative Research: The stoichiometric trait distribution of the marine microbiome (StoichTraitD)


Abstract

Diverse phytoplankton modulate the coupling between the ocean carbon and nutrient cycles through life-history traits such as cell size, elemental quotas, and ratios. Biodiversity is mostly considered at broad functional levels, but major phytoplankton lineages are themselves highly diverse. As an example, Synechococcus is found in nearly all ocean regions, and we demonstrate contains extensive intraspecific variation. Here, we grew four closely related Synechococcus isolates in serially transfer...

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These data were published in the results publication Harcourt R, Garcia NS, Martiny AC (2024).  The data table for this dataset was derived from table S8 in Harcourt R, Garcia NS, Martiny AC (2024), with additional culture information (sample date, lat, lon, site location) from the Roscoff Culture Collection (RCC), Station Biologique de Roscoff.  See Harcourt R, Garcia NS, Martiny AC (2024) for additional related supplemental figures and tables.


Related Datasets

IsSupplementedBy

Dataset: https://doi.org/10.1371/journal.pone.0292337.t001
Harcourt, R., Garcia, N. S., & Martiny, A. C. (2024). Table 1. Synechococcus strain information. https://doi.org/10.1371/journal.pone.0292337.t001

Related Publications

Results

Harcourt, R., Garcia, N. S., & Martiny, A. C. (2024). Intraspecific trait variation modulates the temperature effect on elemental quotas and stoichiometry in marine Synechococcus. PLOS ONE, 19(3), e0292337. https://doi.org/10.1371/journal.pone.0292337
IsSupplementedBy

Station Biologique de Roscoff (1998). RCC32 (Strain ROS8604) Synechococcus_sp. Roscoff Culture Collection: Marine Microalgae, Macroalgae, Protists, Bacteria and Viruses. Accessed 7 Apr 2023. https://roscoff-culture-collection.org/rcc-strain-details/32
IsSupplementedBy

Station Biologique de Roscoff (2002). RCC515 (Strain BL107) Synechococcus_sp. Roscoff Culture Collection: Marine Microalgae, Macroalgae, Protists, Bacteria and Viruses. Accessed 7 Apr 2023. https://roscoff-culture-collection.org/rcc-strain-details/515
IsSupplementedBy

Station Biologique de Roscoff (2007). RCC1086 (Strain CC9311) Synechococcus_sp. Roscoff Culture Collection: Marine Microalgae, Macroalgae, Protists, Bacteria and Viruses. Accessed 7 Apr 2023. https://roscoff-culture-collection.org/rcc-strain-details/1086
IsSupplementedBy

Station Biologique de Roscoff (2012). RCC2673 (Strain CC9902) Synechococcus_sp. Roscoff Culture Collection: Marine Microalgae, Macroalgae, Protists, Bacteria and Viruses. Accessed 7 Apr 2023. https://roscoff-culture-collection.org/rcc-strain-details/2673