EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON

Phytoplankton form the basis of the marine ecosystem and require phosphorus (P) for growth. Typically, phytoplankton utilize inorganic phosphate (PO43-) as it is the more biologically available form of P. Many regions across the global ocean have been found to exhibit vanishingly low concentrations...

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Main Author: Anderson, Caroline
Format: Text
Language:unknown
Published: University of New Hampshire Scholars' Repository 2024
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Online Access:https://scholars.unh.edu/thesis/1820
https://scholars.unh.edu/context/thesis/article/2861/viewcontent/Anderson_unh_0141N_11708.pdf
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spelling ftuninhampshire:oai:scholars.unh.edu:thesis-2861 2024-09-09T19:56:47+00:00 EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON Anderson, Caroline 2024-05-01T07:00:00Z application/pdf https://scholars.unh.edu/thesis/1820 https://scholars.unh.edu/context/thesis/article/2861/viewcontent/Anderson_unh_0141N_11708.pdf unknown University of New Hampshire Scholars' Repository https://scholars.unh.edu/thesis/1820 https://scholars.unh.edu/context/thesis/article/2861/viewcontent/Anderson_unh_0141N_11708.pdf Master's Theses and Capstones text 2024 ftuninhampshire 2024-08-22T23:37:14Z Phytoplankton form the basis of the marine ecosystem and require phosphorus (P) for growth. Typically, phytoplankton utilize inorganic phosphate (PO43-) as it is the more biologically available form of P. Many regions across the global ocean have been found to exhibit vanishingly low concentrations of PO43- including the subtropical North Atlantic and North Pacific. Dissolved organic phosphorus (DOP) has been shown to serve as an alternative P source when PO43- concentrations are low. However, the concentration of PO43- which leads to significant phytoplankton DOP uptake has not been widely established. In this work, both experimental and field DOP data were analyzed to evaluate the role of DOP uptake by phytoplankton. GO-SHIP A20 and A22 transects were analyzed to assess the distribution of DOP concentrations in the Western North Atlantic Subtropical Gyre. For both transects, surface ocean DOP concentrations were generally elevated at the gyre edges with the lowest DOP concentrations located towards the center of the gyre, where PO43- concentrations were also lowest. This pattern largely fits within existing paradigms describing the lateral supply of DOP as an organic nutrient helping sustain subtropical gyre primary productivity. In addition to the DOP field data, phytoplankton batch cultures were performed to experimentally study the importance of DOP for sustaining autotrophic P demand under low PO43- conditions. Emiliania huxleyi (E. huxleyi) and Chaetoceros tenuissimus (C. tenuissimus) cultures were grown under five PO43- concentrations of increasing PO43- scarcity with an addition of DOP in each treatment. Measurements of alkaline phosphatase activity (APA), which is the enzyme used to access the P from DOP, and the consumption of PO43- and DOP were monitored over a 2-week period. Elevated APA rates were observed in the lowest PO43- treatments as expected. Growth rates for E. huxleyi were similar regardless of P source but C. tenuissimus unexpectedly grew faster when utilizing DOP compared to PO43-. C. ... Text North Atlantic University of New Hampshire: Scholars Repository Pacific
institution Open Polar
collection University of New Hampshire: Scholars Repository
op_collection_id ftuninhampshire
language unknown
description Phytoplankton form the basis of the marine ecosystem and require phosphorus (P) for growth. Typically, phytoplankton utilize inorganic phosphate (PO43-) as it is the more biologically available form of P. Many regions across the global ocean have been found to exhibit vanishingly low concentrations of PO43- including the subtropical North Atlantic and North Pacific. Dissolved organic phosphorus (DOP) has been shown to serve as an alternative P source when PO43- concentrations are low. However, the concentration of PO43- which leads to significant phytoplankton DOP uptake has not been widely established. In this work, both experimental and field DOP data were analyzed to evaluate the role of DOP uptake by phytoplankton. GO-SHIP A20 and A22 transects were analyzed to assess the distribution of DOP concentrations in the Western North Atlantic Subtropical Gyre. For both transects, surface ocean DOP concentrations were generally elevated at the gyre edges with the lowest DOP concentrations located towards the center of the gyre, where PO43- concentrations were also lowest. This pattern largely fits within existing paradigms describing the lateral supply of DOP as an organic nutrient helping sustain subtropical gyre primary productivity. In addition to the DOP field data, phytoplankton batch cultures were performed to experimentally study the importance of DOP for sustaining autotrophic P demand under low PO43- conditions. Emiliania huxleyi (E. huxleyi) and Chaetoceros tenuissimus (C. tenuissimus) cultures were grown under five PO43- concentrations of increasing PO43- scarcity with an addition of DOP in each treatment. Measurements of alkaline phosphatase activity (APA), which is the enzyme used to access the P from DOP, and the consumption of PO43- and DOP were monitored over a 2-week period. Elevated APA rates were observed in the lowest PO43- treatments as expected. Growth rates for E. huxleyi were similar regardless of P source but C. tenuissimus unexpectedly grew faster when utilizing DOP compared to PO43-. C. ...
format Text
author Anderson, Caroline
spellingShingle Anderson, Caroline
EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
author_facet Anderson, Caroline
author_sort Anderson, Caroline
title EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
title_short EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
title_full EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
title_fullStr EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
title_full_unstemmed EVALUATING THE ROLE OF DISSOLVED ORGANIC PHOSPHORUS UPTAKE BY PHYTOPLANKTON
title_sort evaluating the role of dissolved organic phosphorus uptake by phytoplankton
publisher University of New Hampshire Scholars' Repository
publishDate 2024
url https://scholars.unh.edu/thesis/1820
https://scholars.unh.edu/context/thesis/article/2861/viewcontent/Anderson_unh_0141N_11708.pdf
geographic Pacific
geographic_facet Pacific
genre North Atlantic
genre_facet North Atlantic
op_source Master's Theses and Capstones
op_relation https://scholars.unh.edu/thesis/1820
https://scholars.unh.edu/context/thesis/article/2861/viewcontent/Anderson_unh_0141N_11708.pdf
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