Bio-optical evidence for increasing Phaeocystis dominance in the Barents Sea
Orkney, A. and Platt, T. and Narayanaswamy, B. E. and Kostakis, I. and Bouman, H. A. (2020) Bio-optical evidence for increasing Phaeocystis dominance in the Barents Sea. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 378 (2181). 20190357. ISSN 1471-2962 (https://doi.org/10.1098/rsta.2019.0357)
Preview |
Text.
Filename: Orkney_etal_PTRSA_2020_Bio_optical_evidence_for_increasing_Phaeocystis_dominance.pdf
Accepted Author Manuscript Download (4MB)| Preview |
Abstract
Increasing contributions of prymnesiophytes such as Phaeocystis pouchetii and Emiliania huxleyi to Barents Sea (BS) phytoplankton production have been suggested based on in situ observations of phytoplankton community composition, but the scattered and discontinuous nature of these records confounds simple inference of community change or its relationship to salient environmental variables. However, provided that meaningful assessments of phytoplankton community composition can be inferred based on their optical characteristics, ocean-colour records offer a potential means to develop a synthesis between sporadic in situ observations. Existing remote-sensing algorithms to retrieve phytoplankton functional types based on chlorophyll-a (chl-a) concentration or indices of pigment packaging may, however, fail to distinguish Phaeocystis from other blooms of phytoplankton with high pigment packaging, such as diatoms. We develop a novel algorithm to distinguish major phytoplankton functional types in the BS and apply it to the MODIS-Aqua ocean-colour record, to study changes in the composition of BS phytoplankton blooms in July, between 2002 and 2018, creating time series of the spatial distribution and intensity of coccolithophore, diatom and Phaeocystis blooms. We confirm a north-eastward expansion in coccolithophore bloom distribution, identified in previous studies, and suggest an inferred increase in chl-a concentrations, reported by previous researchers, may be partly explained by increasing frequencies of Phaeocystis blooms. This article is part of the theme issue 'The changing Arctic Ocean: consequences for biological communities, biogeochemical processes and ecosystem functioning'.
ORCID iDs
Orkney, A., Platt, T., Narayanaswamy, B. E., Kostakis, I. ORCID: https://orcid.org/0000-0003-1167-2227 and Bouman, H. A.;-
-
Item type: Article ID code: 77402 Dates: DateEvent2 October 2020Published31 August 2020Published Online23 April 2020AcceptedSubjects: Science > Physics
Science > MathematicsDepartment: Faculty of Science > Physics Depositing user: Pure Administrator Date deposited: 16 Aug 2021 09:54 Last modified: 11 Nov 2024 13:10 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/77402