Distribution of diatoms, coccolithophores and planktic foraminifera in the Arabian Sea

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Hauptverfasser: Schiebel, Ralf, Zeltner, A, Treppke, Ute F, Waniek, Joanna J, Bollmann, Jörg, Rixen, Tim, Hemleben, Christoph
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Veröffentlicht: PANGAEA 2004
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author Schiebel, Ralf
Zeltner, A
Treppke, Ute F
Waniek, Joanna J
Bollmann, Jörg
Rixen, Tim
Hemleben, Christoph
author_facet Schiebel, Ralf
Zeltner, A
Treppke, Ute F
Waniek, Joanna J
Bollmann, Jörg
Rixen, Tim
Hemleben, Christoph
collection Datos científicos de ciencias marinas y ambientales
contents The distribution of diatoms, coccolithophores and planktic foraminifers mirrored the hydrographic and trophic conditions of the surface ocean (0-100 m) across the upwelling area off the Oman coast to the central Arabian Sea during May/June 1997 and July/August 1995. The number of diatoms was increased in waters with local temperature minimum and enhanced nutrient concentration (nitrate, phosphate, silicate) caused by upwelling. Vegetative cells of Chaetoceros dominated the diatom assemblage in the coastal upwelling area. Towards the more nutrient depleted and stratified surface waters to the southeast, the number of diatoms decreased, coccolithophore and planktic foraminiferal numbers increased, and floral and faunal composition changed. In particular, the transition between the eutrophic upwelling region off Oman and the oligotrophic central Arabian Sea was marked by moderate nutrient concentration, and high coccolithophore and foraminifer numbers. Florisphaera profunda, previously often referred as a 'lower-photic-zone-species', was frequent in water depths as shallow as 20 m, and at high nutrient concentration up to 14 µmol NO3/l and 1.2 µmol PO4/. To the oligotrophic southeast of the divergence, cell densities of coccolithophores declined and Umbellosphaera irregularis prevailed throughout the water column down to 100 m depth. In general, total coccolithophore numbers were limited by nutrient threshold concentration, with low numbers (<10*10**3 cells/l) at high [NO3] and [PO4], and high numbers (>70*10**3 cells/l) at low [NO3] and [PO4]. The components of the complex microplankton succession, diatoms, coccoliths and planktic foraminifers (and possibly others), should ideally be used as a combined paleoceanographic proxy. Consequently, models on plankton ecology should be resolved at least for the seasonality, to account for the bias of paleoceanographic transfer calculations.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_736805
institution PANGAEA
language en
publishDate 2004
publisher PANGAEA
record_format pangaea
spellingShingle Distribution of diatoms, coccolithophores and planktic foraminifera in the Arabian Sea
Schiebel, Ralf
Zeltner, A
Treppke, Ute F
Waniek, Joanna J
Bollmann, Jörg
Rixen, Tim
Hemleben, Christoph
404; 414; 423; 430; 438; 440; 444; 446; 460; Arabian Sea; GeoTü; Indian Ocean; JGOFS-IN-2; M32/5; M32/5_MSN971; M32/5_MSN974; M32/5_MSN977; M32/5_MSN979; M32/5_MSN981; M32/5_MSN982; M32/5_MSN986; M32/5_MSN988; M32/5_MSN990; Meteor (1986); MSN; Multiple opening/closing net; Paleoceanography at Tübingen University; SO119; SO119_MSN1272; SO119_MSN1278; SO119_MSN1281; SO119_MSN1284; SO119_MSN1288; SO119_MSN1295; SO119_MSN1298; SO119_MSN1301; SO119_MSN1303; Sonne
The distribution of diatoms, coccolithophores and planktic foraminifers mirrored the hydrographic and trophic conditions of the surface ocean (0-100 m) across the upwelling area off the Oman coast to the central Arabian Sea during May/June 1997 and July/August 1995. The number of diatoms was increased in waters with local temperature minimum and enhanced nutrient concentration (nitrate, phosphate, silicate) caused by upwelling. Vegetative cells of Chaetoceros dominated the diatom assemblage in the coastal upwelling area. Towards the more nutrient depleted and stratified surface waters to the southeast, the number of diatoms decreased, coccolithophore and planktic foraminiferal numbers increased, and floral and faunal composition changed. In particular, the transition between the eutrophic upwelling region off Oman and the oligotrophic central Arabian Sea was marked by moderate nutrient concentration, and high coccolithophore and foraminifer numbers. Florisphaera profunda, previously often referred as a 'lower-photic-zone-species', was frequent in water depths as shallow as 20 m, and at high nutrient concentration up to 14 µmol NO3/l and 1.2 µmol PO4/. To the oligotrophic southeast of the divergence, cell densities of coccolithophores declined and Umbellosphaera irregularis prevailed throughout the water column down to 100 m depth. In general, total coccolithophore numbers were limited by nutrient threshold concentration, with low numbers (<10*10**3 cells/l) at high [NO3] and [PO4], and high numbers (>70*10**3 cells/l) at low [NO3] and [PO4]. The components of the complex microplankton succession, diatoms, coccoliths and planktic foraminifers (and possibly others), should ideally be used as a combined paleoceanographic proxy. Consequently, models on plankton ecology should be resolved at least for the seasonality, to account for the bias of paleoceanographic transfer calculations.
title Distribution of diatoms, coccolithophores and planktic foraminifera in the Arabian Sea
topic 404; 414; 423; 430; 438; 440; 444; 446; 460; Arabian Sea; GeoTü; Indian Ocean; JGOFS-IN-2; M32/5; M32/5_MSN971; M32/5_MSN974; M32/5_MSN977; M32/5_MSN979; M32/5_MSN981; M32/5_MSN982; M32/5_MSN986; M32/5_MSN988; M32/5_MSN990; Meteor (1986); MSN; Multiple opening/closing net; Paleoceanography at Tübingen University; SO119; SO119_MSN1272; SO119_MSN1278; SO119_MSN1281; SO119_MSN1284; SO119_MSN1288; SO119_MSN1295; SO119_MSN1298; SO119_MSN1301; SO119_MSN1303; Sonne
url https://doi.org/10.1594/PANGAEA.736805