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Bode, Antonio; Estévez, M Graciela; Varela, Manuel; Vilar, José A (2015): Phytoplankton abundance series (1989-2008) off A Coruña (Spain) [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.855901, Supplement to: Bode, A et al. (2015): Annual trend patterns of phytoplankton species abundance belie homogeneous taxonomical group responses to climate in the NE Atlantic upwelling. Marine Environmental Research, 110, 81-91, https://doi.org/10.1016/j.marenvres.2015.07.017

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Abstract:
Phytoplankton is a sentinel of marine ecosystem change. Composed by many species with different life-history strategies, it rapidly responds to environment changes. An analysis of the abundance of 54 phytoplankton species in Galicia (NW Spain) between 1989 and 2008 to determine the main components of temporal variability in relation to climate and upwelling showed that most of this variability was stochastic, as seasonality and long term trends contributed to relatively small fractions of the series. In general, trends appeared as non linear, and species clustered in 4 groups according to the trend pattern but there was no defined pattern for diatoms, dinoflagellates or other groups. While, in general, total abundance increased, no clear trend was found for 23 species, 14 species decreased, 4 species increased during the early 1990s, and only 13 species showed a general increase through the series. In contrast, series of local environmental conditions (temperature, stratification, nutrients) and climate-related variables (atmospheric pressure indices, upwelling winds) showed a high fraction of their variability in deterministic seasonality and trends. As a result, each species responded independently to environmental and climate variability, measured by generalized additive models. Most species showed a positive relationship with nutrient concentrations but only a few showed a direct relationship with stratification and upwelling. Climate variables had only measurable effects on some species but no common response emerged. Because its adaptation to frequent disturbances, phytoplankton communities in upwelling ecosystems appear less sensitive to changes in regional climate than other communities characterized by short and well defined productive periods.
Coverage:
Latitude: 43.421660 * Longitude: -8.436660
Date/Time Start: 1989-05-03T00:00:00 * Date/Time End: 2008-11-05T00:00:00
Minimum DEPTH, water: 25 m * Maximum DEPTH, water: 25 m
Event(s):
E2CO * Latitude: 43.421660 * Longitude: -8.436660 * Date/Time Start: 1989-01-01T00:00:00 * Date/Time End: 2018-01-01T00:00:00 * Elevation: -80.0 m * Location: Galicia Margin * Method/Device: Bottle, Niskin (NIS)
Comment:
Project: RADIALES-11 (IEO). Time series of phytoplankton species abundance counts averaged in the photic layer (0-50 m) sampled at monthly frequency at a coastal station off A Coruna (Spain). Sampling: Niskin bottles at 5 depths in the photic zone (0-50 m); sampling time: circa noon. Preservation: Lugol's iodine acid solution.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
DATE/TIMEDate/TimeBode, AntonioGeocode
DEPTH, waterDepth watermBode, AntonioGeocode – mean, averaged 0-50 m
Asterionellopsis glacialisA. glacialis#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Cerataulina pelagicaC. pelagica#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Ceratium furcaC. furca#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Ceratium fususC. fusus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Ceratium lineatumC. lineatum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Chaetoceros affinisC. affinis#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Chaetoceros compressusC. compressus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
10 Chaetoceros curvisetusC. curvisetus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
11 Chaetoceros debilisC. debilis#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
12 Chaetoceros decipiensC. decipiens#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
13 Chaetoceros didymusC. didymus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
14 Chaetoceros gracilisC. gracilis#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
15 Chaetoceros socialisC. socialis#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
16 Chaetoceros spp.Chaetoceros spp.#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
17 CryptomonadalesCryptomonadales#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
18 Dactyliosolen fragilissimusD. fragilissimus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
19 Detonula pumilaD. pumila#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
20 Dictyocha fibulaD. fibula#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
21 Dinophysis acuminataD. acuminata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
22 Distephanus speculumD. speculum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
23 Eutreptiella sp.Eutreptiella sp.#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
24 Guinardia delicatulaG. delicatula#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
25 Guinardia striataG. striata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
26 Gyrodinium spiraleG. spirale#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
27 Heterocapsa nieiH. niei#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
28 Katodinium glaucumK. glaucum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
29 Lauderia annulataL. annulata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
30 Leptocylindrus danicusL. danicus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
31 Leptocylindrus minimusL. minimus#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
32 Navicula transitansN. transitans#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
33 Nitzschia longissimaN. longissima#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
34 Nitzschia longissimaN. longissima#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)small form
35 Paralia sulcataP. sulcata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
36 Phaeocystis pouchetiiP. pouchetii#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
37 Proboscia alataP. alata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
38 Prorocentrum balticumP. balticum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
39 Prorocentrum micansP. micans#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
40 Prorocentrum minimumP. minimum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
41 Protoperidinium bipesP. bipes#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
42 Pseudo-nitzschia delicatissimaP-n delicatissima#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
43 Pseudo-nitzschia pungensP-n pungens#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
44 Rhizosolenia imbricataR. imbricata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
45 Rhizosolenia setigeraR. setigera#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
46 Scrippsiella trochoideaS. trochoidea#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
47 Skeletonema costatumS. costatum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
48 Solenicola setigeraS. setigera#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
49 Thalassionema nitzschioidesT. nitzschioides#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
50 Thalassiosira angulataT. angulata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
51 Thalassiosira anguste-lineataT. anguste-lineata#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
52 Thalassiosira antarcticaT. antarctica#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
53 Thalassiosira levanderiT. levanderi#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
54 Thalassiosira oestrupiiT. oestrupii#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
55 Thalassiosira rotulaT. rotula#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
56 Torodinium robustumT. robustum#/lBode, AntonioQuantitative phytoplankton method (Utermöhl, 1958)
Size:
11934 data points

Data

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


Date/Time

Depth water [m]
(mean, averaged 0-50 m)

A. glacialis [#/l]

C. pelagica [#/l]

C. furca [#/l]

C. fusus [#/l]

C. lineatum [#/l]

C. affinis [#/l]

C. compressus [#/l]
10 
C. curvisetus [#/l]
11 
C. debilis [#/l]
12 
C. decipiens [#/l]
13 
C. didymus [#/l]
14 
C. gracilis [#/l]
15 
C. socialis [#/l]
16 
Chaetoceros spp. [#/l]
17 
Cryptomonadales [#/l]
18 
D. fragilissimus [#/l]
19 
D. pumila [#/l]
20 
D. fibula [#/l]
21 
D. acuminata [#/l]
22 
D. speculum [#/l]
23 
Eutreptiella sp. [#/l]
24 
G. delicatula [#/l]
25 
G. striata [#/l]
26 
G. spirale [#/l]
27 
H. niei [#/l]
28 
K. glaucum [#/l]
29 
L. annulata [#/l]
30 
L. danicus [#/l]
31 
L. minimus [#/l]
32 
N. transitans [#/l]
33 
N. longissima [#/l]
34 
N. longissima [#/l]
(small form)
35 
P. sulcata [#/l]
36 
P. pouchetii [#/l]
37 
P. alata [#/l]
38 
P. balticum [#/l]
39 
P. micans [#/l]
40 
P. minimum [#/l]
41 
P. bipes [#/l]
42 
P-n delicatissima [#/l]
43 
P-n pungens [#/l]
44 
R. imbricata [#/l]
45 
R. setigera [#/l]
46 
S. trochoidea [#/l]
47 
S. costatum [#/l]
48 
S. setigera [#/l]
49 
T. nitzschioides [#/l]
50 
T. angulata [#/l]
51 
T. anguste-lineata [#/l]
52 
T. antarctica [#/l]
53 
T. levanderi [#/l]
54 
T. oestrupii [#/l]
55 
T. rotula [#/l]
56 
T. robustum [#/l]
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