Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities

The relationship between the percent extracellular carbon release (PER) and the specific lysis rates of phytoplankton was examined across a range of communities spanning from highly oligotrophic ones in the subtropical Atlantic Ocean to productive ones in the N. African upwelling and the Southern Oc...

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Main Authors: S. Agustí, C. M. Duarte
Format: Article
Language:English
Published: Copernicus Publications 2013-03-01
Series:Biogeosciences
Online Access:http://www.biogeosciences.net/10/1259/2013/bg-10-1259-2013.pdf
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spelling doaj-4fd8fa3f3cc543d9910bd1a1103c7b522020-11-25T00:47:09ZengCopernicus PublicationsBiogeosciences1726-41701726-41892013-03-011031259126410.5194/bg-10-1259-2013Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communitiesS. AgustíC. M. DuarteThe relationship between the percent extracellular carbon release (PER) and the specific lysis rates of phytoplankton was examined across a range of communities spanning from highly oligotrophic ones in the subtropical Atlantic Ocean to productive ones in the N. African upwelling and the Southern Ocean. Communities in oligotrophic waters supported high phytoplankton cell lysis rates and low particulate primary production rates but high dissolved primary production and PER. The percent extracellular carbon released increased with increasing lysis rates to reach an asymptote at about 80% PER with specific lysis rates > 1.5 d<sup>−1</sup>, observed in the most oligotrophic conditions tested. These results confirm that high phytoplankton mortality in the oligotrophic ocean leads to high PER, accounting for the large fraction of the photosynthetic carbon channelled through bacteria characteristic of oligotrophic marine communities.http://www.biogeosciences.net/10/1259/2013/bg-10-1259-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author S. Agustí
C. M. Duarte
spellingShingle S. Agustí
C. M. Duarte
Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
Biogeosciences
author_facet S. Agustí
C. M. Duarte
author_sort S. Agustí
title Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
title_short Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
title_full Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
title_fullStr Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
title_full_unstemmed Phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
title_sort phytoplankton lysis predicts dissolved organic carbon release in marine plankton communities
publisher Copernicus Publications
series Biogeosciences
issn 1726-4170
1726-4189
publishDate 2013-03-01
description The relationship between the percent extracellular carbon release (PER) and the specific lysis rates of phytoplankton was examined across a range of communities spanning from highly oligotrophic ones in the subtropical Atlantic Ocean to productive ones in the N. African upwelling and the Southern Ocean. Communities in oligotrophic waters supported high phytoplankton cell lysis rates and low particulate primary production rates but high dissolved primary production and PER. The percent extracellular carbon released increased with increasing lysis rates to reach an asymptote at about 80% PER with specific lysis rates > 1.5 d<sup>−1</sup>, observed in the most oligotrophic conditions tested. These results confirm that high phytoplankton mortality in the oligotrophic ocean leads to high PER, accounting for the large fraction of the photosynthetic carbon channelled through bacteria characteristic of oligotrophic marine communities.
url http://www.biogeosciences.net/10/1259/2013/bg-10-1259-2013.pdf
work_keys_str_mv AT sagusti phytoplanktonlysispredictsdissolvedorganiccarbonreleaseinmarineplanktoncommunities
AT cmduarte phytoplanktonlysispredictsdissolvedorganiccarbonreleaseinmarineplanktoncommunities
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