Pigments at time series station DYNAPROC


Autoria(s): Vidussi, Francesca; Marty, Jean-Claude; Chiavérini, Jacques
Cobertura

MEDIAN LATITUDE: 43.251946 * MEDIAN LONGITUDE: 7.517817 * SOUTH-BOUND LATITUDE: 43.250130 * WEST-BOUND LONGITUDE: 7.512090 * NORTH-BOUND LATITUDE: 43.255870 * EAST-BOUND LONGITUDE: 7.521280 * DATE/TIME START: 1995-05-03T21:41:00 * DATE/TIME END: 1995-06-01T08:06:00

Data(s)

07/06/2000

Resumo

Phytoplankton taxonomic pigments and primary production were measured at the JGOFS-France time-series station DYFAMED in the northwestern Mediterranean Sea during May 1995 to investigate changes in phytoplankton composition and the biogeochemical implications (DYNAPROC experiment). The study period covered the transitional situation from late spring bloom to pre-oligotrophic. The late spring bloom situation, occurring at the beginning of the study, revealed high chlorophyll a concentrations (maximum 3 mg/m**3 at 30 m) and high primary production (maximum 497 mg C/m**2/ 14 h). At the end of the experiment, the trophic regime shifted towards pre-oligotrophic and was characterized by lower chlorophyll a concentrations (<1 mg/m**3), although primary production still remained high (659 mg C/m**2/ 14 h). At termination of the spring bloom, the phytoplankton community was composed of chromophyte nanoflagellates (38±4%), diatoms (29±2%), cryptophytes (12±1%) and cyanobacteria (8±1%). During the transition to the pre-oligotrophic period, the contribution of small cells increased (e.g. cyanobacteria 18±2%, green flagellates 5±1%). Vertical profiles of pigments revealed a partition of the phytoplankton groups: cyanobacteria were most abundant in the surface layer, nanoflagellates containing 19'-HF+19'BF at the depth of chlorophyll maximum, whereas diatoms were located below the chlorophyll maximum. At termination of the spring bloom, a wind event induced vertical transport of nutrients into the euphotic layer. Phytoplankton groups responded differently to the event: initially, diatom concentrations increased (for 24 h) then rapidly decreased. In contrast, all others groups decreased just after the event. The long-term effect was a decrease of biomass of dominant groups (diatoms and chromophyte nanoflagellates), which accelerated the community succession and hence contributed to the oligotrophic transition.

Formato

application/zip, 65 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.738700

doi:10.1594/PANGAEA.738700

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Vidussi, Francesca; Marty, Jean-Claude; Chiavérini, Jacques (1999): Phytoplankton pigment variations during the transition from spring bloom to oligotrophy in the northwestern Mediterranean sea. Deep Sea Research Part I: Oceanographic Research Papers, 47(3), 423-445, doi:10.1016/S0967-0637(99)00097-7

Palavras-Chave #19-Butanoyloxyfucoxanthin; 19-Hexanoyloxyfucoxanthin; a+b-Car; Allo; Alloxanthin; alpha- plus beta-Carotene; Biogeochemical Processes in the Oceans and Fluxes; But-fuco; Chl a; Chl a'; Chl a allom; Chl b; Chl c; Chl c1+c2; Chl c3; Chlorophyll a; Chlorophyll a, epimer; Chlorophyll a allomers; Chlorophyll b; Chlorophyll c; Chlorophyll c1+c2; Chlorophyll c3; CTD/Rosette; CTD-RO; DEPTH, water; Depth water; Diadino; Diadinoxanthin; Diato; Diatoxanthin; Divinyl chlorophyll a; Divinyl chlorophyll b; DV chl a; DV chl b; DYNAPROC; DYNAPROC_026; DYNAPROC_028; DYNAPROC_039; DYNAPROC_044; DYNAPROC_055; DYNAPROC_060; DYNAPROC_071; DYNAPROC_076; DYNAPROC_085; DYNAPROC_105; DYNAPROC_107; DYNAPROC_108; DYNAPROC_109; DYNAPROC_110; DYNAPROC_112; DYNAPROC_113; DYNAPROC_116; DYNAPROC_117; DYNAPROC_119; DYNAPROC_120; DYNAPROC_125; DYNAPROC_128; DYNAPROC_129; DYNAPROC_131; DYNAPROC_132; DYNAPROC_133; DYNAPROC_134; DYNAPROC_135; DYNAPROC_137; DYNAPROC_139; DYNAPROC_140; DYNAPROC_141; DYNAPROC_143; DYNAPROC_166; DYNAPROC_171; DYNAPROC_182; DYNAPROC_187; DYNAPROC_198; DYNAPROC_203; DYNAPROC_214; DYNAPROC_219; DYNAPROC_246; DYNAPROC_248; DYNAPROC_250; DYNAPROC_251; DYNAPROC_252; DYNAPROC_254; DYNAPROC_255; DYNAPROC_257; DYNAPROC_258; DYNAPROC_259; DYNAPROC_260; DYNAPROC_264; DYNAPROC_266; DYNAPROC_269; DYNAPROC_270; DYNAPROC_272; DYNAPROC_273; DYNAPROC_275; DYNAPROC_276; DYNAPROC_278; DYNAPROC_279; DYNAPROC_281; DYNAPROC_283; DYNAPROC_286; Fuco; Fucoxanthin; Fucoxanthinol; Hex-fuco; High Performance Liquid Chromatography (HPLC); JGOFS; Joint Global Ocean Flux Study; Le Suroît; like; like 1; Lut; Lutein; Neo; Neoxanthin; Perid; Peridinin; Pras; Prasinoxanthin; PROOF; SESAME; Southern European Seas: Assessing and Modelling Ecosystem Changes; Zea; Zeaxanthin
Tipo

Dataset