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Graiff, Angelika; Bartsch, Inka; Glaser, Karin; Karsten, Ulf (2021): Variations of Fucus vesiculosus photophysiological performance in the Kiel Outdoor Benthocosms in four different seasons – relative electron transport rate and maximum quantum yield [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.933404, In: Graiff, A et al. (2021): Seasonal variations of Fucus vesiculosus photophysiological performance (Kiel Outdoor Benthocosms) [dataset publication series]. PANGAEA, https://doi.org/10.1594/PANGAEA.933410

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Abstract:
Ocean warming and acidification may substantially affect the photophysiological performance of keystone species such as Fucus vesiculosus (Phaeophyceae) in shallow coastal waters. In four consecutive benthic mesocosm experiments (Kiel Outdoor Benthocosm, Kiel, Germany, 54°20'N; 10°09'E), we compared the photophysiological performance (i.e., oxygen production, in vivo chlorophyll a fluorescence, energy dissipation pathways and chlorophyll concentration) of Baltic Sea Fucus under the single and combined impact of elevated seawater temperature (Δ + 5°C) and pCO2 (1100 ppm). Fucus specimens were sampled, in each season (spring: April 2, 2013; summer: July 2, 2013; autumn: 8 October; winter: January 14, 2014) from a depth of 0.2–1 m in the Kiel Fjord (Bülk), western Baltic Sea, Germany (54°27'N; 10°11,5'E). Photosynthetic performance was measured with two different methods, one based on in vivo chlorophyll a fluorescence measurements of photosystem II (PSII), the other one based on oxygen production. For each experiment and treatment, three Fucus specimens 15–25 cm long with 91 ± 30 total apices and apparently equal vigor were chosen, each individually growing on a stone (10–15 cm in diameter) from a single holdfast. For details see material and methods in Graiff et al. 2021. Photosynthesis was highest in spring/early summer when water temperature and solar irradiance increases naturally, and was lowest in winter (December to January/February). Temperature had a stronger effect than pCO2 on photosynthetic performance of Fucus in all seasons. Photophysiological responses were generally positive during the cooler spring months, but strongly negatively affected during summer (due to a marine heat-wave). Especially, future summer temperatures exceeded the thermal tolerance threshold of western Baltic Sea Fucus and had a deleterious impact overall. Potential benefits of the combination of future ocean warming and increased pCO2 over most of the year for Fucus photophysiological performance are suggested by our study, but not during summer peak temperatures.
Keyword(s):
chlorophyll fluorescence; mesocosm; Photosynthesis
Related to:
Graiff, Angelika; Bartsch, Inka; Glaser, Karin; Karsten, Ulf (2021): Seasonal Photophysiological Performance of Adult Western Baltic Fucus vesiculosus (Phaeophyceae) Under Ocean Warming and Acidification. Frontiers in Marine Science, 8, https://doi.org/10.3389/fmars.2021.666493
Coverage:
Latitude: 54.330000 * Longitude: 10.150000
Date/Time Start: 2013-04-18T00:00:00 * Date/Time End: 2014-04-01T00:00:00
Event(s):
Fjord (Kiel Fjord) * Latitude: 54.330000 * Longitude: 10.150000
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
SeasonSeasonGraiff, Angelika
Time in daysTimedaysGraiff, Angelika
DATE/TIMEDate/TimeGraiff, AngelikaGeocode
Maximal electron transport rate, relativerETR maxGraiff, Angelika+Temp +CO2
Maximal electron transport rate, relativerETR maxGraiff, Angelika+Temp
Maximal electron transport rate, relativerETR maxGraiff, Angelika+CO2
Maximal electron transport rate, relativerETR maxGraiff, Angelikaambient
Photochemical quantum yieldFv/FmGraiff, Angelika+Temp +CO2
Photochemical quantum yieldFv/FmGraiff, Angelika+Temp
10 Photochemical quantum yieldFv/FmGraiff, Angelika+CO2
11 Photochemical quantum yieldFv/FmGraiff, Angelikaambient
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
146 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Season

Time [days]

Date/Time

rETR max
(+Temp +CO2)

rETR max
(+Temp)

rETR max
(+CO2)

rETR max
(ambient)

Fv/Fm
(+Temp +CO2)

Fv/Fm
(+Temp)
10 
Fv/Fm
(+CO2)
11 
Fv/Fm
(ambient)
Spring142013-04-18T00:00:00175.96035380161.25726370139.88983580171.704571300.7233333330.7163333330.7526666670.735000000
Spring282013-05-02T00:00:00119.0572321072.54257620106.81257540111.554241500.7515000000.7750000000.7435000000.753500000
Spring422013-05-16T00:00:00120.4017023073.6183776784.9609546699.930377280.6850000000.6823333330.6546666670.710333333
Spring562013-05-30T00:00:00134.9143084080.5672845688.95971479102.908916700.6185555560.5811111110.5837777780.641333333
Spring702013-06-19T00:00:00143.27166700121.1116509094.41542739102.858210300.6960000000.7450000000.7206666670.698666667
Summer142013-07-18T00:00:0064.7769503476.2381554382.5311834966.404824590.6826666670.6880000000.7006666670.708000000
Summer422013-08-15T00:00:0025.4957082914.7601555867.4799431357.270286430.4593333330.3940000000.7430000000.720000000
Summer752013-09-17T00:00:0049.9266508249.825475490.7730000000.758000000
Autumn142013-10-24T00:00:0059.7632469952.9289423655.8480047457.071396640.7850000000.7760000000.7710000000.757000000
Autumn282013-11-07T00:00:0058.7161052562.4794879187.0018235857.326043550.7800000000.7600000000.7800000000.770000000
Autumn422013-11-21T00:00:0071.0938570584.5325340367.7403157163.756286480.7863333330.7723333330.7863333330.774666667
Autumn752013-12-18T00:00:0081.6237803270.3416410365.8314047877.652629120.7536666670.7596666670.7606666670.744666667
Winter282014-02-13T00:00:0072.2434627772.2434627776.96758747108.881705600.7886666670.7313333330.7993333330.751000000
Winter562014-03-13T00:00:0067.4748015767.65029957118.55031750109.342307100.7760000000.6673333330.7453333330.739666667
Winter752014-04-01T00:00:0050.6172055970.2034689967.4839366186.646493340.7706666670.6206666670.7296666670.750666667