研究者詳細

顔写真

ケ-シー ジヨン ロシター
Casey John Rossiter
Casey John Rossiter
所属
高等研究機構変動海洋エコシステム高等研究所
職名
准教授
学位
  • Ph.D.(University of Hawaii)

経歴 5

  • 2025年12月 ~ 継続中
    東北大学 海洋生態系変化に関する先端研究所 准教授

  • 2022年9月 ~ 2025年9月
    ローレンス・リバモア国立研究所 物理科学および生命科学 ポスドク研究員

  • 2019年5月 ~ 2022年9月
    マサチューセッツ工科大学 地球・大気・惑星科学科 ポスドク研究員

  • 2017年7月 ~ 2019年5月
    ハワイ大学マノア校 海洋地球科学技術学部 ポスドク研究員

  • 2007年5月 ~ 2010年7月
    バミューダ海洋科学研究所 海洋植物プランクトン生態学研究室 研究技術者

学歴 1

  • ハワイ大学マノア校 海洋学部 博士号

    2010年9月 ~ 2017年5月

委員歴 1

  • SRIインターナショナル シアノサイク

    2022年6月 ~ 継続中

研究キーワード 4

  • 強化学習

  • 生態系モデリング

  • 代謝モデリング

  • 微生物海洋学

研究分野 1

  • ライフサイエンス / 水圏生命科学 / 微生物海洋学

論文 26

  1. Spatially structured bacterial interactions alter algal carbon flow to bacteria

    Hyungseok Kim, Vanessa L Brisson, John R Casey, Courtney Swink, Kristina A Rolison, Nathan McCall, Amber N Golini, Trent R Northen, Dušan Veličković, Peter K Weber, Cullen R Buie, Xavier Mayali, Rhona K Stuart

    The ISME Journal 2025年1月2日

    DOI: 10.1093/ismejo/wraf096  

    ISSN:1751-7362 1751-7370

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    <jats:title>Abstract</jats:title> <jats:p>Phytoplankton account for nearly half of global photosynthetic carbon fixation, and the fate of that carbon is regulated in large part by microbial food web processing. We currently lack a mechanistic understanding of how interactions among heterotrophic bacteria impact the fate of photosynthetically fixed carbon. Here, we used a set of bacterial isolates capable of growing on exudates from the diatom Phaeodactylum tricornutum to investigate how bacteria-bacteria interactions affect the balance between exudate remineralization and incorporation into biomass. With exometabolomics and genome-scale metabolic modeling, we estimated the degree of resource competition between bacterial pairs. In a sequential spent media experiment, we found that pairwise interactions were more beneficial than predicted based on resource competition alone, and 30% exhibited facilitative interactions. To link this to carbon fate, we used single-cell isotope tracing in a custom cultivation system to compare the impact of different “primary” bacterial strains in close proximity to live P. tricornutum on a distal “secondary” strain. We found that a primary strain with a high degree of competition decreased secondary strain carbon drawdown by 51% at the single-cell level, providing a quantitative metric for the “cost” of competition on algal carbon fate. Additionally, a primary strain classified as facilitative based on sequential interactions increased total algal-derived carbon assimilation by 7.6 times, integrated over all members, compared to the competitive primary strain. Our findings suggest that the degree of interaction between bacteria along a spectrum from competitive to facilitative is directly linked to algal carbon drawdown.</jats:p>

  2. Transporter annotations are holding up progress in metabolic modeling

    John Casey, Brian Bennion, Patrik D’haeseleer, Jeffrey Kimbrel, Gianna Marschmann, Ali Navid

    Frontiers in Systems Biology 2024年7月24日

    DOI: 10.3389/fsysb.2024.1394084  

    ISSN:2674-0702

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    <jats:p>Mechanistic, constraint-based models of microbial isolates or communities are a staple in the metabolic analysis toolbox, but predictions about microbe-microbe and microbe-environment interactions are only as good as the accuracy of transporter annotations. A number of hurdles stand in the way of comprehensive functional assignments for membrane transporters. These include general or non-specific substrate assignments, ambiguity in the localization, directionality and reversibility of a transporter, and the many-to-many mapping of substrates, transporters and genes. In this perspective, we summarize progress in both experimental and computational approaches used to determine the function of transporters and consider paths forward that integrate both. Investment in accurate, high-throughput functional characterization is needed to train the next-generation of predictive tools toward genome-scale metabolic network reconstructions that better predict phenotypes and interactions. More reliable predictions in this domain will benefit fields ranging from personalized medicine to metabolic engineering to microbial ecology.</jats:p>

  3. CyanoCyc cyanobacterial web portal

    Moore, L.R., Caspi, R., Campbell, D.A., Casey, J.R., Crevecoeur, S., Lea-Smith, D.J., Long, B., Omar, N.M., Paley, S.M., Schmelling, N.M., Torrado, A., Zehr, J.P., Karp, P.D.

    Frontiers in Microbiology 15 2024年

    DOI: 10.3389/fmicb.2024.1340413  

    ISSN:1664-302X

  4. Disentangling top-down drivers of mortality underlying diel population dynamics of Prochlorococcus in the North Pacific Subtropical Gyre

    Beckett, S.J., Demory, D., Coenen, A.R., Casey, J.R., Dugenne, M., Follett, C.L., Connell, P., Carlson, M.C.G., Hu, S.K., Wilson, S.T., Muratore, D., Rodriguez-Gonzalez, R.A., Peng, S., Becker, K.W., Mende, D.R., Armbrust, E.V., Caron, D.A., Lindell, D., White, A.E., Ribalet, F., Weitz, J.S.

    Nature Communications 15 (1) 2024年

    DOI: 10.1038/s41467-024-46165-3  

    ISSN:2041-1723

  5. Determining drivers of phytoplankton carbon to chlorophyll ratio at Atlantic Basin scale

    Smyth, T., Moffat, D., Tarran, G., Sathyendranath, S., Ribalet, F., Casey, J.

    Frontiers in Marine Science 10 2023年

    DOI: 10.3389/fmars.2023.1191216  

    ISSN:2296-7745

  6. Basin-scale biogeography of marine phytoplankton reflects cellular-scale optimization of metabolism and physiology

    John R. Casey, Rene M. Boiteau, Martin K. M. Engqvist, Zoe V. Finkel, Gang Li, Justin Liefer, Christian L. Müller, Nathalie Muñoz, Michael J. Follows

    Science Advances 8 (3) 2022年1月21日

    出版者・発行元: American Association for the Advancement of Science ({AAAS})

    DOI: 10.1126/sciadv.abl4930  

  7. Complex marine microbial communities partition metabolism of scarce resources over the diel cycle

    Daniel Muratore, Angela K. Boysen, Matthew J. Harke, Kevin W. Becker, John R. Casey, Sacha N. Coesel, Daniel R. Mende, Samuel T. Wilson, Frank O. Aylward, John M. Eppley, Alice Vislova, Shengyun Peng, Rogelio A. Rodriguez-Gonzalez, Stephen J. Beckett, E. Virginia Armbrust, Edward F. DeLong, David M. Karl, Angelicque E. White, Jonathan P. Zehr, Benjamin A. S. Van Mooy, Sonya T. Dyhrman, Anitra E. Ingalls, Joshua S. Weitz

    Nature Ecology & Evolution 2022年1月20日

    DOI: 10.1038/s41559-021-01606-w  

  8. A Bayesian approach to modeling phytoplankton population dynamics from size distribution time series

    Jann Paul Mattern, Kristof Glauninger, Gregory L. Britten, John R. Casey, Sangwon Hyun, Zhen Wu, E. Virginia Armbrust, Zaid Harchaoui, François Ribalet

    PLOS Computational Biology 18 (1) 2022年1月14日

    出版者・発行元: Public Library of Science ({PLoS})

    DOI: 10.1371/journal.pcbi.1009733  

  9. Disentangling top-down drivers of mortality underlying diel population dynamics ofProchlorococcusin the North Pacific Subtropical Gyre

    Stephen J. Beckett, David Demory, Ashley R. Coenen, John R. Casey, Mathilde Dugenne, Christopher L. Follett, Paige Connell, Michael C.G. Carlson, Sarah K. Hu, Samuel T. Wilson, Daniel Muratore, Rogelio A. Rodriguez-Gonzalez, Shengyun Peng, Kevin W. Becker, Daniel R. Mende, E. Virginia Armbrust, David A. Caron, Debbie Lindell, Angelicque E. White, François Ribalet, Joshua S. Weitz

    2021年6月16日

    DOI: 10.1101/2021.06.15.448546  

  10. A steady-state model of microbial acclimation to substrate limitation

    John R. Casey, Michael J. Follows

    PLOS Computational Biology 16 (8) 2020年8月26日

    出版者・発行元: Public Library of Science ({PLoS})

    DOI: 10.1371/journal.pcbi.1008140  

  11. Community-scale Synchronization and Temporal Partitioning of Gene Expression, Metabolism, and Lipid Biosynthesis in Oligotrophic Ocean Surface Waters

    Daniel Muratore, Angie K. Boysen, Matthew J. Harke, Kevin W. Becker, John R. Casey, Sacha N. Coesel, Daniel R. Mende, Samuel T. Wilson, Frank O. Aylward, John M. Eppley, Alice Vislova, Shengyun Peng, Rogelio A. Rodriguez-Gonzalez, Stephen J. Beckett, E. Virginia Armbrust, Edward F. DeLong, David M. Karl, Angelicque E. White, Jonathan P. Zehr, Benjamin A.S. Van Mooy, Sonya T. Dyhrman, Anitra E. Ingalls, Joshua S. Weitz

    2020年5月16日

    DOI: 10.1101/2020.05.15.098020  

  12. Kīlauea lava fuels phytoplankton bloom in the North Pacific Ocean

    Samuel T. Wilson, Nicholas J. Hawco, E. Virginia Armbrust, Benedetto Barone, Karin M. Björkman, Angela K. Boysen, Macarena Burgos, Timothy J. Burrell, John R. Casey, Edward F. DeLong, Mathilde Dugenne, Stephanie Dutkiewicz, Sonya T. Dyhrman, Sara Ferrón, Michael J. Follows, Rhea K. Foreman, Carolina P. Funkey, Matthew J. Harke, Britt A. Henke, Christopher N. Hill, Annette M. Hynes, Anitra E. Ingalls, Oliver Jahn, Rachel L. Kelly, Angela N. Knapp, Ricardo M. Letelier, Francois Ribalet, Eric M. Shimabukuro, Ryan K. S. Tabata, Kendra A. Turk-Kubo, Angelicque E. White, Jonathan P. Zehr, Seth John, David M. Karl

    Science 365 (6457) 1040-1044 2019年9月6日

    出版者・発行元: American Association for the Advancement of Science ({AAAS})

    DOI: 10.1126/science.aax4767  

  13. Methylphosphonate Oxidation in Prochlorococcus Strain MIT9301 Supports Phosphate Acquisition, Formate Excretion, and Carbon Assimilation into Purines

    Oscar A. Sosa, John R. Casey, David M. Karl

    Applied and Environmental Microbiology 2019年7月

    DOI: 10.1128/AEM.00289-19  

  14. Size dependence of metabolism within marine picoplankton populations

    John R. Casey, Karin M. Björkman, Sara Ferrón, David M. Karl

    Limnology and Oceanography 2019年7月

    DOI: 10.1002/lno.11153  

  15. Light-Enhanced Microbial Organic Carbon Yield

    John Casey

    Frontiers in Microbiology 2017年11月16日

    DOI: 10.3389/fmicb.2017.02157  

    ISSN:1664-302X

  16. Coordinated regulation of growth, activity and transcription in natural populations of the unicellular nitrogen-fixing cyanobacterium Crocosphaera

    Wilson, S.T., Aylward, F.O., Ribalet, F., Barone, B., Casey, J.R., Connell, P.E., Eppley, J.M., Ferron, S., Fitzsimmons, J.N., Hayes, C.T., Romano, A.E., Turk-Kubo, K.A., Vislova, A., Virginia Armbrust, E., Caron, D.A., Church, M.J., Zehr, J.P., Karl, D.M., De Long, E.F.

    Nature Microbiology 2 2017年

    DOI: 10.1038/nmicrobiol.2017.118  

    ISSN:2058-5276

  17. Adaptive Evolution of Phosphorus Metabolism in Prochlorococcus

    John R. Casey, Adil Mardinoglu, Jens Nielsen, David M. Karl

    mSystems 1 (6) 2016年12月27日

    出版者・発行元: American Society for Microbiology

    DOI: 10.1128/mSystems.00065-16  

  18. Draft genome sequence of marine alphaproteobacterial strain HIMB11, the first cultivated representative of a unique lineage within the Roseobacter clade possessing an unusually small genome

    Durham, B.P., Grote, J., Whittaker, K.A., Bender, S.J., Luo, H., Grim, S.L., Brown, J.M., Casey, J.R., Dron, A., Florez-Leiva, L., Krupke, A., Luria, C.M., Mine, A.H., Nigro, O.D., Pather, S., Talarmin, A., Wear, E.K., Weber, T.S., Wilson, J.M., Church, M.J., DeLong, E.F., Karl, D.M., Steward, G.F., Eppley, J.M., Kyrpides, N.C., Schuster, S., Ra, e}, M.

    Standards in Genomic Sciences 9 (3) 2015年

    DOI: 10.4056/sigs.4998989  

  19. Substrate selection for heterotrophic bacterial growth in the sea

    Casey, J.R., Falkowski, P.G., Karl, D.M.

    Marine Chemistry 177 2015年

    DOI: 10.1016/j.marchem.2015.06.032  

  20. Long-term variability of phytoplankton carbon biomass in the Sargasso Sea

    Wallhead, P.J., Gar?on, V.C., Casey, J.R., Lomas, M.

    Global Biogeochemical Cycles 28 2014年

    DOI: 10.1002/2013GB004797  

  21. Changes in partitioning of carbon amongst photosynthetic pico- and nano-plankton groups in the Sargasso Sea in response to changes in the North Atlantic Oscillation

    Casey, J.R., Aucan, J.P., Goldberg, S.R., Lomas, M.

    Deep-Sea Research Part II: Topical Studies in Oceanography 93 2013年

    DOI: 10.1016/j.dsr2.2013.02.002  

  22. Spatial and seasonal variability of primary production on the Eastern Bering Sea shelf

    Lomas, M.W., Moran, S.B., Casey, J.R., Bell, D.W., Tiahlo, M., Whitefield, J., Kelly, R.P., Mathis, J.T., Cokelet, E.D.

    Deep-Sea Research Part II: Topical Studies in Oceanography 65-70 2012年

    DOI: 10.1016/j.dsr2.2012.02.010  

  23. Phytoplankton responses to atmospheric metal deposition in the coastal and open-ocean Sargasso Sea

    Mackey, K.R.M., Buck, K.N., Casey, J.R., Cid, A., Lomas, M.W., Sohrin, Y., Paytan, A.

    Frontiers in Microbiology 3 (OCT) 2012年

    DOI: 10.3389/fmicb.2012.00359  

  24. Assimilation of upwelled nitrate by small eukaryotes in the Sargasso Sea

    Fawcett, S.E., Lomas, M.W., Casey, J.R., Ward, B.B., Sigman, D.M.

    Nature Geoscience 4 (10) 2011年

    DOI: 10.1038/ngeo1265  

  25. Phytoplankton taxon-specific orthophosphate (Pi) and ATP utilization in the western subtropical North Atlantic

    Casey, J.R., Lomas, M.W., Michelou, V.K., Dyhrman, S.T., Orchard, E.D., Ammerman, J.W., Sylvan, J.

    Aquatic Microbial Ecology 58 (1) 2010年

    DOI: 10.3354/ame01348  

  26. Prochlorococcus contributes to new poduction in the Sargasso Sea deep chlorophyll maximum

    Casey, J.R., Lomas, M.W., Mandecki, J., Walker, D.E.

    Geophysical Research Letters 34 (10) 2007年

    DOI: 10.1029/2006GL028725  

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