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Journal Article

Impact of nitrogen availability upon the electron requirement for carbon fixation in Australian coastal phytoplankton communities

David J. Hughes; Deepa Varkey; Martina A. Doblin; Tim Ingleton; Allison Mcinnes; Peter J. Ralph; Virginie van Dongen‐Vogels; David J. Suggett
Limnology and Oceanography · Vol. 63, Issue 5 · pp. 1891-1910 · 2018

Abstract

Nitrogen (N) availability affects phytoplankton photosynthetic performance and regulates marine primary production (MPP) across the global coast and oceans. Bio‐optical tools including Fast Repetition Rate fluorometry (FRRf) are particularly well suited to examine MPP variability in coastal regions subjected to dynamic spatio‐temporal fluctuations in nutrient availability. FRRf determines photosynthesis as an electron transport rate through Photosystem II (ETR PSII ), requiring knowledge of an additional parameter, the electron requirement for carbon fixation ( K C ), to retrieve rates of CO 2 ‐fixation. K C strongly depends upon environmental conditions regulating photosynthesis, yet the importance of N‐availability to this parameter has not been examined. Here, we use nutrient bioassays to isolate how N (relative to other macronutrients P, Si) regulates K C of phytoplankton communities from the Australian coast during summer, when N‐availability is often highly variable. K C consistently responded to N‐amendment, exhibiting up to a threefold reduction and hence an apparent increase in the efficiency with which electrons were used to drive C‐fixation. However, the process driving this consistent reduction was dependent upon initial conditions. When diatoms dominated assemblages and N was undetectable (e.g., post bloom), K C decreased predominantly via a physiological adjustment of the existing community to N‐amendment. Conversely, for mixed assemblages, N‐addition achieved a similar reduction in K C through a change in community structure toward diatom domination. We generate new understanding and parameterization of K C that is particularly critical to advance how FRRf can be applied to examine C‐uptake throughout the global ocean where nitrogen availability is highly variable and thus frequently limits primary productivity.

Bibliographic Information

JournalLimnology and Oceanography
PublisherWiley
Publication Date2018-09-01
Publication Year2018
Volume63
Issue5
Pages1891-1910
Document TypeJournal Article
Print ISSN0024-3590
eISSN1939-5590
DOI10.1002/lno.10814
SubjectAquatic Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://aslopubs.onlinelibrary.wiley.com/loi/19395590
Publisher PageOpen Publisher Page
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