Dataset: Pterosiphonia bipinnata and Corallina vancouveriensis initial experiment attachment and duration at Deadman Bay on San Juan Island, Washington

Final no updates expectedDOI: 10.1575/1912/bco-dmo.710033.1Version 1 (2019-10-01)Dataset Type:experimental

Principal Investigator: Emily Carrington (University of Washington Friday Harbor Laboratories)

Co-Principal Investigator: Patrick Martone (University of British Columbia)

Contact: Rebecca Guenther (University of British Columbia)

BCO-DMO Data Manager: Mathew Biddle (Woods Hole Oceanographic Institution)


Program: Science, Engineering and Education for Sustainability NSF-Wide Investment (SEES): Ocean Acidification (formerly CRI-OA) (SEES-OA)

Project: Effects of Ocean Acidification on Coastal Organisms: An Ecomaterials Perspective (OA - Ecomaterials Perspective)


Abstract

Pterosiphonia bipinnata and Corallina vancouveriensis initial experiment attachment and duration at Deadman Bay on San Juan Island, Washington

The effect of pH on the attachment of Pterosiphonia bipinnata and Corallina vancouveriensis spores.


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Related Publications

Methods

Dickson, A.G., Sabine, C.L. and Christian, J.R. (Eds.) 2007. Guide to best practices for ocean CO2 measurements. PICES Special Publication 3, 191 pp. ISBN: 1-897176-07-4. URL: https://www.nodc.noaa.gov/ocads/oceans/Handbook_2007.html
Methods

Guenther, R., Miklasz, K., Carrington, E., & Martone, P. T. (2018). Macroalgal spore dysfunction: ocean acidification delays and weakens adhesion. Journal of Phycology, 54(2), 153–158. doi:10.1111/jpy.12614