Bottom-up and top-down control of bacterioplankton from eutrophic to oligotrophic sites in the tropical northeastern Atlantic Ocean
Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500 m deep) in the tropical NE Atlantic Ocean during a EUMELI cruise in May–June 1992. This resulted in an exceptionally large amplitude of data...
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Published in | Deep-sea research. Part I, Oceanographic research papers Vol. 43; no. 8; pp. 1305 - 1320 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
01.08.1996
Pergamon Press Inc |
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Abstract | Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500 m deep) in the tropical NE Atlantic Ocean during a EUMELI cruise in May–June 1992. This resulted in an exceptionally large amplitude of data, with abundance, biomass and production ranging from 1.2 × 10
7 to 3.9 × 10
9 cell 1
−1, 1.2 × 10
−7 gC1
−1 to 4.7 × 10
−5 gC1
−1 and 2.0 × 10
−11 gC1
−1 h
−1 to 9.6 × 10
−7 gC1
−1 h
−1, respectively. These data were analyzed in order to determine whether bacterioplankton was controlled by bottom-up or top-down processes. Regressions of log-transformed bacterioplankton biomass versus log-transformed production were tested at the different sites and in different layers. Slopes of 0.40–0.55 suggest that bacterioplankton is moderately controlled by bottom-up processes increasing from the eutrophic coastal site to the open ocean oligotrophic site and from surface layers (< 250 m) to deep waters. These conclusions are in agreement with other indices of bottom-up control like cell size, doubling times of the biomass, per cent of active cells, and relationships of bacterial biomass versus phytoplanktonic biomass and production. |
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AbstractList | Bacterioplankton biomass production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500 m deep) in the tropical NE Atlantic Ocean during a EUMELI cruise in May-June 1992. This resulted in an exceptionally large amplitude of data, with abundance, biomass and production ranging from 1.2 x 10 super(7) to 3.9 x 10 super(9) cell l super(-1), 1.2 x 10 super(-7) gCl super(-1) to 4.7 x 10 super(-5) gCl super(-1) and 2.0 x 10 super(-11) gCl super(-1) h super(-1) to 9.6 x 10 super(-7) gCl super(-1) h super(-1), respectively. These data were analyzed in order to determine whether bacterioplankton was controlled by bottom-up or top-down processes. Regressions of log-transformed bacterioplankton biomass versus log-transformed production were tested at the different sites and in different layers. Slopes of 0.40-0.55 suggest that bacterioplankton is moderately controlled by bottom-up processes increasing from the eutrophic coastal site to the open ocean oligotrophic site and from surface layers (<250 m) to deep waters. These conclusions are in agreement with other indices of bottom-up control like cell size, doubling times of the biomass, per cent of active cells, and relationships of bacterial biomass versus phytoplanktonic biomass and production. Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500 m deep) in the tropical NE Atlantic Ocean during a EUMELI cruise in May–June 1992. This resulted in an exceptionally large amplitude of data, with abundance, biomass and production ranging from 1.2 × 10 7 to 3.9 × 10 9 cell 1 −1, 1.2 × 10 −7 gC1 −1 to 4.7 × 10 −5 gC1 −1 and 2.0 × 10 −11 gC1 −1 h −1 to 9.6 × 10 −7 gC1 −1 h −1, respectively. These data were analyzed in order to determine whether bacterioplankton was controlled by bottom-up or top-down processes. Regressions of log-transformed bacterioplankton biomass versus log-transformed production were tested at the different sites and in different layers. Slopes of 0.40–0.55 suggest that bacterioplankton is moderately controlled by bottom-up processes increasing from the eutrophic coastal site to the open ocean oligotrophic site and from surface layers (< 250 m) to deep waters. These conclusions are in agreement with other indices of bottom-up control like cell size, doubling times of the biomass, per cent of active cells, and relationships of bacterial biomass versus phytoplanktonic biomass and production. Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site in the tropical northeast Atlantic Ocean during an EUMELI cruise in May-Jun 1992. |
Author | Torréton, J.-P. Dufour, P.H. |
Author_xml | – sequence: 1 givenname: P.H. surname: Dufour fullname: Dufour, P.H. email: dufour@orstom.orstom.fr organization: ORSTOM-C.O.M. rue de la batterie des Lions, 13007 Marseille, France – sequence: 2 givenname: J.-P. surname: Torréton fullname: Torréton, J.-P. email: torreton@tahiti.orstom.fr organization: ORSTOM-BP 529, Papeete, Polynésie Francaise, France |
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Snippet | Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500... Bacterioplankton biomass and production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site in the tropical... Bacterioplankton biomass production were determined over the whole water column of a eutrophic, a mesotrophic and an oligotrophic site (2300, 3200 and 4500 m... |
SourceID | proquest crossref elsevier |
SourceType | Aggregation Database Publisher |
StartPage | 1305 |
SubjectTerms | Bacteria Marine Oceanography Oceans Plankton |
Title | Bottom-up and top-down control of bacterioplankton from eutrophic to oligotrophic sites in the tropical northeastern Atlantic Ocean |
URI | https://dx.doi.org/10.1016/0967-0637(96)00060-X https://www.proquest.com/docview/196650261 https://search.proquest.com/docview/15888615 |
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