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Oduor, Nancy Awuor; Imbayi, Linet Kiteresi; Mulusa, Vincent O; Odhiambo, MacMillan; Nyanjong, Ezekiel (2024): Domoic acid (DA), Paralytic Shellfish Toxins (PST), the abundance of potential DA and PST microalgae causative agents and environmental data in Kenya's coastal waters in July 2022 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.964978

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Published: 2024-02-05DOI registered: 2024-03-19

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Abstract:
Studies of naturally occurring algal toxins like domoic acid (DA) and saxitoxins (STXs) in tropical developing countries are still very rare despite their harmful effect on marine life, human health, and seafood safety. We conducted a rapid assessment of DA, which is responsible for Amnestic Shellfish poisoning (ASP), and STXs and its congeners that are known to cause a foodborne illness called Paralytic Shellfish poisoning (PSP) between the 15th and 30th of July 2022. The assessment was based on earlier studies that recorded the presence of potentially toxic species that are causative agents of ASP and PSP in Kenya's coastal waters. In these geo-referenced areas, site characteristics including environmental variables such as temperature, salinity, dissolved oxygen (DO), and turbidity were recorded and surface seawater samples were collected for laboratory analysis of dissolved inorganic nutrients (nitrogen, phosphorus, and silicates), and chlorophyll a. Additionally, the abundance of potential PSP toxin-producing species Alexandrium spp., Aphanizomenon spp., Brachydinium capitatum, Gonyaulax spp., and Gymnodinium spp., and potential ASP toxin-producing species Amphora spp., Nitzschia acicularis, Nitzschia closterium, Nitzschia longissimi, Nitzschia reversa, Nitzschia sigma, Nitzschia spp., and Pseudo-nitzschia spp. were assessed alongside the toxins at each sampling location.
The phytotoxin samples were collected through horizontal net hauls at the water surface (depth of 0.5 m) using a 20 µm mesh size plankton net (Reguera et al., 2016). The haul contents at the net cod end were transferred into a container and sieved through 100 µm mesh to remove larger microzooplankton organisms that consume phytoplankton. The samples were transferred into glass containers and then transported to the laboratory in an icebox for further filtration. In the laboratory, 50 ml of the concentrated phytoplankton sample was filtered through a glass-fiber filter (25 mm) with a vacuum pump (e.g. Millipore), making sure that all the water was filtered through the filtration unit. The filter was then removed, and freeze-dried in cryogenic vials for analysis of PSP-saxitoxin and ASP-domoic acid. The PSP toxins in the filters were determined by LC-FLD using LC-FLP: LC1100 series liquid chromatography system consisting of a G1379A degasser, a G1311A quaternary pump, a G1229A autosampler, and a G1321A fluorescence detector (Agilent Technologies, Waldbronn, Germany) coupled to PCX 2500 post-column derivatization system (Pickering Laboratories, Mountain View, CA, USA, Reeves et al., 2021). The domoic acid was established by LC-MS/MS technique using LC1100 System (Agilent Technologies, Waldbronn, Germany) coupled to a 4000 Q-Trap triple quadrupole mass spectrometer (SCIEX, Darmstadt, Germany, Thomas et al., 2022).
Qualitative concentrated samples were collected by filtering 20 l of water (collected from just below the water surface) through a 20 µm phytoplankton net. For numerical analysis and potentially toxic species identification, 100 ml of water samples were fixed in 5% Lugol's solution. The samples were further concentrated to a volume of 50 ml and 1 ml (in triplicate) of the concentrated sample was transferred into a Sedgewick-Rafter chamber mounted on an inverted compound microscope (Leica DM IL) and counting of phytoplankton cells carried out in 100 squares of the cell chosen randomly. The results were expressed as the number of cells per liter. For chlorophyll determination, 1 l of seawater was taken from a depth of 50 cm, filtered onto a microfiber filter (Whatman GF/F), wrapped in tinfoil and stored at -20°C. In the laboratory, the filters were digested and chlorophyll a extracted using 96% Ethanol. The chlorophyll a/ethanol solutions were measured using a fluorometer (TD10AU Flouru, Ex436, Em680) according to (Welschmeyer, 1994).
Nutrient samples were filtered through disposable syringe filters (Sartorius Minisart ® - 0.45 µm pore size) immediately after sampling and filled into pre-rinsed polyethylene bottles, preserved with a mercury chloride solution (50 µl of a 20 g/l HgCl2-solution added to 100 ml sample) and stored cool until analysis. In the laboratory, nutrient concentrations were determined using standard methods in Grasshoff et al., (2007) by spectrophotometry (Infinite® M200 NanoQuant, Tecan Group Ltd., Switzerland).
Additionally, temperature, salinity, DO and turbidity were measured in situ using a handheld probe YSI Professional Plus (SKU6050000) Water Quality Meter, and Portable TN100 turbidity meter (Thermo Scientific™ ) respectively. All the field samplings and data collection were done in duplicates. All geo-references and field data were collected using KoboCollect v2022.2.3. Toxin-producing phytoplankton species identification was done at Kenya Marine and Fisheries Research Institute (KMFRI) laboratories.
Keyword(s):
Amnestic Shellfish poisoning; Domoic acid; harmful algae blooms; Kenya; Paralytic Shellfish poisoning; Saxitoxins
References:
Grasshoff, Klaus; Kremling, Klaus; Ehrhardt, M (1999): Methods of Seawater Analysis. Wiley, https://doi.org/10.1002/9783527613984
Reeves, Kelley; Thomas, Krista; Giddings, Sabrina; McCarron, Pearse (2021): STX-g: Certified Calibration Solution for Saxitoxin Dihydrochloride. National Research Council of Canada, https://doi.org/10.4224/CRM.2021.STX-G.20201215
Reguera, Beatriz; Alonso, Rosalba; Moreira, Angel; Méndez, Silvia; Dechraoui Bottein, Marie Yasmine (2016): IOC Manuals and Guides: Guide for designing and implementing a plan to monitor toxin-producing micro-algae. 2nd Edition. Intergovernmental Oceanographic Commission (IOC) of UNESCO and International Atomic Energy Agency (IAEA), Paris and Vienna, 59, 66 pp.
Thomas, Krista; Perez, Ruth; Crain, Sheila; Miles, Christopher O; McCarron, Pearse (2022): DA-h: Certified Calibration Solution for Domoic Acid. National Research Council of Canada, https://doi.org/10.4224/CRM.2022.DA-H.20210922
Welschmeyer, N A (1994): Fluorometric analysis of chlorophyll a in the presence of chlorophyll b and pheopigments. Limnology and Oceanography, 39(8), 1985-1992, https://doi.org/10.4319/lo.1994.39.8.1985
Funding:
German Academic Exchange Service (DAAD), grant/award no. 91732428: NOMIHAB
Coverage:
Median Latitude: -4.001679 * Median Longitude: 39.695430 * South-bound Latitude: -4.631371 * West-bound Longitude: 39.395747 * North-bound Latitude: -3.334977 * East-bound Longitude: 40.009271
Date/Time Start: 2022-07-15T05:29:16 * Date/Time End: 2022-07-30T12:22:38
Minimum DEPTH, water: 0.25 m * Maximum DEPTH, water: 0.25 m
Event(s):
NOMIHAB-JUL-2022_1 (Mundu) * Latitude: -4.631371 * Longitude: 39.418120 * Date/Time: 2022-07-15T05:29:16 * Location: Kenya * Campaign: KE-Land_2022_NOMIHAB-JUL (NOMIHAB-JUL-2022) * Basis: Boat * Method/Device: Multiple investigations (MULT)
NOMIHAB-JUL-2022_2 (Gamba la kasa) * Latitude: -4.623471 * Longitude: 39.413894 * Date/Time: 2022-07-15T05:55:41 * Location: Kenya * Campaign: KE-Land_2022_NOMIHAB-JUL (NOMIHAB-JUL-2022) * Basis: Boat * Method/Device: Multiple investigations (MULT)
NOMIHAB-JUL-2022_3 (Kombeni) * Latitude: -4.619898 * Longitude: 39.410463 * Date/Time: 2022-07-15T06:27:28 * Location: Kenya * Campaign: KE-Land_2022_NOMIHAB-JUL (NOMIHAB-JUL-2022) * Basis: Boat * Method/Device: Multiple investigations (MULT)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventOduor, Nancy Awuor
2Date/Time of eventDate/TimeOduor, Nancy Awuor
3Latitude of eventLatitudeOduor, Nancy Awuor
4Longitude of eventLongitudeOduor, Nancy Awuor
5DEPTH, waterDepth watermOduor, Nancy AwuorMean valuesGeocode
6Depth, water, top/minimumDepth water topmOduor, Nancy Awuor
7Depth, water, bottom/maximumDepth water botmOduor, Nancy Awuor
8LocationLocationOduor, Nancy Awuor
9SiteSiteOduor, Nancy Awuor
10Temperature, waterTemp°COduor, Nancy AwuorMultiparameter Instrument, YSI, Professional Plus (YSI Pro Plus)
11SalinitySalOduor, Nancy AwuorMultiparameter Instrument, YSI, Professional Plus (YSI Pro Plus)
12Turbidity (Nephelometric turbidity unit)TurbidityNTUOduor, Nancy AwuorTurbidity meter, Thermo Scientific, TN100
13Oxygen, dissolvedDOmg/lOduor, Nancy AwuorMultiparameter Instrument, YSI, Professional Plus (YSI Pro Plus)
14Nitrate and Nitrite[NO3]- + [NO2]-µmol/lOduor, Nancy AwuorMicroplate reader, Tecan, Infinite M200 NanoQuant; colorimetry according to Grasshoff et al. (1999)
15Ammonium[NH4]+µmol/lOduor, Nancy AwuorMicroplate reader, Tecan, Infinite M200 NanoQuant; colorimetry according to Grasshoff et al. (1999)
16Nitrogen, inorganic, dissolvedDINµmol/lOduor, Nancy AwuorMicroplate reader, Tecan, Infinite M200 NanoQuant; colorimetry according to Grasshoff et al. (1999)
17Phosphate[PO4]3-µmol/lOduor, Nancy AwuorMicroplate reader, Tecan, Infinite M200 NanoQuant; colorimetry according to Grasshoff et al. (1999)
18Silicate, inorganic, dissolvedDISi(OH)4µmol/lOduor, Nancy AwuorMicroplate reader, Tecan, Infinite M200 NanoQuant; colorimetry according to Grasshoff et al. (1999)
19Chlorophyll aChl aµg/lOduor, Nancy AwuorFluorometer, TD10AU Flouru, Ex436, Em680
20Sample volumeSamp vollOduor, Nancy Awuorfiltered
21Sample volumeSamp volmlOduor, Nancy Awuorconcentrated
22Di-sulfated SaxitoxinC1/C2ng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
23Gonyautoxin 1/4GTX1/4ng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
24Gonyautoxin 2/3GTX2/3ng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
25DecarbamoylgonyautoxindcGTX2/3ng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
26NeosaxitoxinNeoSTXng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
27DecarbamoylsaxitoxindcSTXng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
28SaxitoxinSTXng/µlOduor, Nancy AwuorLiquid chromatography fluorescence detection system, Agilent, LC1100; coupled with post-column derivatization system, Pickering Laboratories, PCX 2500 (LC-FLD)
29Domoic acid, per dry sampleDApgOduor, Nancy AwuorLiquid chromatography, Agilent, LC1100; coupled with triple quadrupole mass spectrometer, SCIEX, 4000 Q-Trap (LC-MS/MS)
30Alexandrium spp.Alexandrium spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
31Aphanizomenon spp.Aphanizomenon spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
32Brachydinium capitatumB. capitatum#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
33Gonyaulax spp.Gonyaulax spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
34Gymnodinium spp.Gymnodinium spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
35Amphora spp.Amphora spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
36Nitzschia acicularisN. acicularis#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
37Nitzschia closteriumN. closterium#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
38Nitzschia longissimaN. longissima#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
39Nitzschia reversaN. reversa#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
40Nitzschia sigmaN. sigma#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
41Nitzschia spp.Nitzschia spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
42Pseudo-nitzschia spp.Pseudo-nitzschia spp.#/lOduor, Nancy AwuorInverted compound microscope, Leica Microsystems, DM IL
43CommentCommentOduor, Nancy Awuor
Status:
Curation Level: Enhanced curation (CurationLevelC) * Processing Level: PANGAEA data processing level 4 (ProcLevel4)
Size:
1369 data points

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