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Bracher, Astrid (2015): Phytoplankton pigment concentrations during POLARSTERN cruise ANT-XXVII/2 [dataset]. Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research, Bremerhaven, PANGAEA, https://doi.org/10.1594/PANGAEA.848590, In supplement to: Trimborn, Scarlett; Hoppe, Clara Jule Marie; Taylor, Bettina B; Bracher, Astrid; Hassler, Christel S (2015): Physiological characteristics of open ocean and coastal phytoplankton communities of Western Antarctic Peninsula and Drake Passage waters. Deep Sea Research Part I: Oceanographic Research Papers, 98, 115-124, https://doi.org/10.1016/j.dsr.2014.12.010

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Abstract:
Photophysiological processes as well as uptake characteristics of iron and inorganic carbon were studied in inshore phytoplankton assemblages of the Western Antarctic Peninsula (WAP) and offshore assemblages of the Drake Passage. Chlorophyll a concentrations and primary productivity decreased from in- to offshore waters. The inverse relationship between low maximum quantum yields of photochemistry in PSII (Fv/Fm) and large sizes of functional absorption cross sections (sigma PSII) in offshore communities indicated iron-limitation. Congruently, the negative correlation between Fv/Fm values and iron uptake rates across our sampling locations suggest an overall better iron uptake capacity in iron-limited pelagic phytoplankton communities. Highest iron uptake capacities could be related to relative abundances of the haptophyte Phaeocystis antarctica. As chlorophyll a-specific concentrations of humic-like substances were similarly high in offshore and inshore stations, we suggest humic-like substances may play an important role in iron chemistry in both coastal and pelagic phytoplankton assemblages. Regarding inorganic carbon uptake kinetics, the measured maximum short-term uptake rates (Vmax(CO2)) and apparent half-saturation constants (K1/2(CO2)) did not differ between offshore and inshore phytoplankton. Moreover, Vmax(CO2) and K1/2(CO2) did not exhibit any CO2-dependent trend over the natural pCO2 range from 237 to 507 µatm. K1/2(CO2) strongly varied among the sampled phytoplankton communities, ranging between 3.5 and 35.3 µmol/L CO2. While in many of the sampled phytoplankton communities, the operation of carbon-concentrating mechanisms (CCMs) was indicated by low K1/2(CO2) values relative to ambient CO2 concentrations, some coastal sites exhibited higher values, suggesting down-regulated CCMs. Overall, our results demonstrate a complex interplay between photophysiological processes, iron and carbon uptake of phytoplankton communities of the WAP and the Drake Passage.
Project(s):
Coverage:
Median Latitude: -64.735800 * Median Longitude: -46.819367 * South-bound Latitude: -70.522000 * West-bound Longitude: -74.601000 * North-bound Latitude: -47.661000 * East-bound Longitude: 4.256000
Date/Time Start: 2010-12-05T13:57:00 * Date/Time End: 2011-01-28T10:21:00
Minimum DEPTH, water: m * Maximum DEPTH, water: 80 m
Event(s):
PS77/034-2 * Latitude: -56.933000 * Longitude: -0.003000 * Date/Time: 2010-12-10T06:04:00 * Elevation: -3698.2 m * Location: South Atlantic Ocean * Campaign: ANT-XXVII/2 (PS77) * Basis: Polarstern * Method/Device: CTD/Rosette (CTD-RO) * Comment: INST.:AWI; CTD-SN:T5027-C2470
PS77/044-1 * Latitude: -59.521670 * Longitude: -0.004500 * Date/Time: 2010-12-12T07:22:00 * Elevation: -4639.0 m * Location: South Atlantic Ocean * Campaign: ANT-XXVII/2 (PS77) * Basis: Polarstern * Method/Device: CTD/Rosette (CTD-RO) * Comment: INST.:AWI; CTD-SN:T5027-C2470
PS77/048-1 * Latitude: -61.500500 * Longitude: 0.004670 * Date/Time: 2010-12-13T10:25:00 * Elevation: -5389.0 m * Location: South Atlantic Ocean * Campaign: ANT-XXVII/2 (PS77) * Basis: Polarstern * Method/Device: CTD/Rosette (CTD-RO) * Comment: INST.:AWI; CTD-SN:T5027-C2470
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventBracher, Astrid
2NumberNoBracher, Astridin original file
3CampaignCampaignBracher, Astrid
4Sample code/labelSample labelBracher, Astrid
5Sample, optional label/labor noLab noBracher, Astrid
6Device typeDeviceBracher, AstridWS = water sample,
7DEPTH, waterDepth watermBracher, AstridGeocode
8DATE/TIMEDate/TimeBracher, AstridGeocode
9LATITUDELatitudeBracher, AstridGeocode
10LONGITUDELongitudeBracher, AstridGeocode
11Chlorophyll aChl aµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)monovinyl
12Chlorophyllide aChlide aµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
13Chlorophyll bChl bµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)monovinyl
14Chlorophyll c1+c2Chl c1+c2µg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
15Chlorophyll c3Chl c3µg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
1619-ButanoyloxyfucoxanthinBut-fucoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
1719-HexanoyloxyfucoxanthinHex-fucoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
18AlloxanthinAlloµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
19DiadinoxanthinDiadinoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
20DiatoxanthinDiatoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
21FucoxanthinFucoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
22NeoxanthinNeoµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
23PeridininPeridµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
24ZeaxanthinZeaµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)
25CaroteneCaroteneµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)bcaroten
26Pheophytin aPhytin aµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)metabolite
27Pyropheophorbide aPyrophide aµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)metabolite
28Pyropheophytin aPyrophytin aµg/lBracher, AstridHigh Performance Liquid Chromatography (HPLC)metabolite
Size:
690 data points

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