| Literature DB >> 32121468 |
Cristiana Moreira1, Cidália Gomes1, Vitor Vasconcelos1,2, Agostinho Antunes1,2.
Abstract
Historical reports show that in Portugal, cyanotoxins reports were mainly in the Center (cylindrospermopsins) and South (cylindrospermopsins, saxitoxins) regions of the country apart from the well distributed microcystins. Therefore, in our study, seven freshwater ecosystems located in the North and Center Regions of Portugal were screened between April and September of 2017 for the main cyanotoxins (microcystins, cylindrospermopsins, anatoxin-a, and saxitoxins) by a two methods approach that combined the application of molecular (PCR) and immunological (ELISA) assays. Results from our survey reveal that both methods revealed the presence of all main cyanotoxins. ELISA results showed that 48% of the samples were above (1.6-18.8 μg/L) the guideline value established for microcystins (1 μg/L), while in the remaining cyanotoxins, 33% of the samples were above (1.1-6.8 μg/L) the guideline value established for anatoxin-a (1 μg/L). Further, for saxitoxins, only one sample gave a value above (4.3 μg/L) the guideline (3 μg/L) and this corresponded to a North Region ecosystem. In the cytotoxin cylindrospermopsins, none of the samples were above the guideline established value (1 μg/L). This study will improve the risk assessment strategy in Portugal, as well as advance water quality and water management.Entities:
Keywords: Anatoxin-a; Cylindrospermopsins; ELISA; Microcystins; PCR; Risk assessment; Saxitoxins
Mesh:
Substances:
Year: 2020 PMID: 32121468 PMCID: PMC7150953 DOI: 10.3390/toxins12030154
Source DB: PubMed Journal: Toxins (Basel) ISSN: 2072-6651 Impact factor: 4.546
Figure 1Proportion of microcystins genes (mcyABCDEG) per sampling site.
Summary of the PCR and ELISA results for each cyanotoxin measured per sampling site.
| Cyanotoxins | MC | CYN | ATX | SXT | |||||||||||||||
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| Assessment | PCR | ELISA (µg/L) | PCR | ELISA (µg/L) | PCR | ELISA (µg/L) | PCR | ELISA (µg/L) | |||||||||||
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| April | + | - | - | + | - | - | 0.3 | - | - | - | - | ND | - | - | 0.2 | - | - | - | 0.0 |
| May | + | - | - | + | + | - | 0.2 | - | - | - | - | ND | - | - | 0.7 | - | - | - | 0.1 |
| June | + | - | + | - | + | - | 0.5 | - | - | + | - | ND | - | - | 0.2 | - | - | - | 0.1 |
| July | + | + | + | + | + | + | 0.4 | - | - | - | - | ND | + | - | 0.3 | - | + | + | 0.1 |
| August | + | + | + | + | + | + | 18.8 | - | - | - | - | ND | + | - | 1.0 | - | + | + | 1.1 |
| September | + | + | + | + | + | + | 17.0 | - | - | - | - | ND | + | - | 0.8 | - | + | - | 0.1 |
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| April | + | + | + | + | - | - | 2.7 | - | - | + | - | ND | + | - | 0.3 | - | - | + | 0.1 |
| May | - | - | - | - | - | - | 0.3 | - | - | - | - | ND | + | - | 1.0 | - | - | - | 0.1 |
| June | + | - | + | - | + | - | 0.3 | - | - | + | - | ND | - | - | 0.4 | - | - | - | 0.1 |
| July | + | + | + | + | + | + | 0.2 | - | - | + | - | ND | + | - | 0.2 | - | + | + | 0.3 |
| August | + | + | + | + | + | + | 16.0 | - | - | - | - | ND | + | - | 0.3 | - | + | + | 0.7 |
| September | + | + | + | + | + | + | 5.0 | - | + | - | - | ND | + | - | 0.2 | - | + | + | 0.2 |
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| April | + | + | + | + | - | - | 4.3 | - | - | - | - | ND | - | - | 5.2 | - | - | − | 0.2 |
| May | + | + | + | + | + | - | 11.3 | - | - | - | - | ND | + | - | 2.1 | - | - | - | 0.3 |
| June | + | + | + | + | + | - | 3.5 | - | + | - | - | ND | + | - | 6.8 | - | - | - | 0.2 |
| July | + | + | + | + | + | + | 1.6 | - | - | - | - | ND | - | - | 0.4 | - | + | - | 0.1 |
| August | + | + | + | + | + | + | 2.1 | - | - | - | - | ND | + | - | 1.9 | - | + | + | 0.3 |
| September | + | + | + | + | + | + | 2.6 | - | - | - | - | ND | + | - | 1.6 | - | + | + | 0.5 |
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| April | - | - | + | - | - | - | 0.3 | - | - | - | - | ND | - | - | 0.2 | - | - | - | 0.2 |
| May | + | + | + | + | + | - | 2.0 | - | - | - | - | ND | - | - | 0.4 | - | - | + | 0.2 |
| June | + | + | + | + | + | - | 13.3 | - | - | - | - | ND | - | - | 1.5 | - | - | - | 0.3 |
| July | + | - | + | + | + | + | 3.9 | - | - | + | - | ND | + | - | 0.4 | - | + | + | 0.9 |
| August | + | + | + | + | + | + | 4.8 | - | - | + | - | ND | + | - | 0.9 | - | + | + | 4.3 |
| September | + | + | + | + | + | + | 6.5 | - | - | + | - | ND | + | - | 0.6 | - | + | + | 2.6 |
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| April | + | - | - | + | - | - | 0.3 | - | - | - | - | ND | - | - | 1.8 | - | - | - | 0.1 |
| May | - | - | - | - | - | - | 0.2 | - | - | - | - | ND | - | - | 0.4 | - | - | - | 0.2 |
| June | - | - | + | - | - | - | 0.1 | - | - | - | - | ND | - | - | 1.0 | - | - | - | 0.2 |
| July | + | - | + | + | + | + | 0.2 | - | - | - | - | ND | - | - | 1.1 | - | + | - | 0.2 |
| August | + | + | + | + | + | + | 0.4 | - | - | + | - | ND | - | - | 0.3 | - | + | - | 0.2 |
| September | + | + | + | + | + | + | 1.9 | - | - | + | - | ND | - | - | 0.4 | - | + | + | 0.2 |
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| April | - | - | - | - | - | - | 0.5 | - | - | - | - | ND | - | - | 0.4 | - | - | - | 0.1 |
| May | - | - | - | - | - | - | 0.3 | - | - | - | - | ND | - | - | 0.5 | - | - | + | 0.2 |
| June | - | - | - | - | - | - | 0.3 | - | - | + | - | ND | - | - | 0.5 | - | - | + | 0.6 |
| July | + | + | + | + | + | - | 0.6 | - | - | + | - | ND | - | - | 2.1 | - | - | + | 0.3 |
| August | + | + | + | + | + | - | 0.3 | - | - | - | - | ND | - | - | 0.6 | - | - | + | 0.5 |
| September | + | + | + | + | + | + | 1.9 | - | - | + | - | ND | + | - | 1.0 | - | + | + | 1.3 |
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| April | - | - | - | - | - | - | 0.3 | - | - | - | - | 0.1 | - | - | 1.6 | - | - | - | 1.9 |
| May | + | - | - | - | - | - | 0.3 | - | - | - | - | 0.1 | - | - | 0.5 | - | - | + | 1.4 |
| June | - | - | - | - | - | - | 0.4 | - | - | + | - | 0.1 | - | - | 1.7 | - | - | + | 1.8 |
| July | + | + | + | + | + | + | 2.1 | - | - | + | - | 0.0 | - | - | 0.9 | - | + | - | 1.9 |
| August | + | - | - | + | + | + | 0.9 | - | - | - | - | 0.1 | + | - | 0.8 | - | + | + | 1.8 |
| September | + | - | - | + | - | + | 8.7 | - | - | - | - | 0.0 | - | - | 1.1 | - | + | - | 2.4 |
(+)—positive amplification (PCR); (-)—no amplification; ND—not determined. mcyA amplification resulted in a positive ELISA assay in 78% of the samples; anaC resulted in 40%; sxtG in 45%; sxtI in 48%; cyrB in 0%; cyrC in 16.7%.
Figure 2ELISA proportion values obtained in the samples in comparison with the proposed guideline value for each of the cyanotoxins tested (microcystins 1 μg/L; cylindrospermopsins 1 μg/L; anatoxin-a 1 μg/L; and saxitoxins 3 μg/L).
Figure 3Proportion of cylindrospermopsins genes (cyrABCJ) per sampling site.
Figure 4Proportion of anatoxin-a gene (anaC) and Dolichospermum sp. anatoxin-a producer (anab/anaC) per sampling site.
Figure 5Proportion of saxitoxins genes (sxtAGI) per sampling site.
Sampling sites description.
| Geography | Sampling Site | Trophic Status | Ecosystem Uses | Socio-economic Activities |
|---|---|---|---|---|
| North Region | River Tâmega | Eutrophic | Recreational | Sports, Fishing |
| Torrão Reservoir | Eutrophic | Water provision, irrigation, recreational | Agriculture, Sports, Tourism | |
| Porto City Park Lake 1 | Eutrophic | Recreational | Tourism | |
| Porto City Park Lake 2 | Eutrophic | Recreational | Tourism | |
| Porto City Park Lake 3 | Mesotrophic | Recreational | Tourism | |
| Center Region | Mira Lagoon | Eutrophic | Irrigation, Recreational | Agriculture, Sports, Tourism |
| Vela Lagoon | Eutrophic | Irrigation, Recreational | Agriculture, Sports, Tourism |
List of primers used in this study.
| Target | Primer | Primer Sequence 5′-3′ | Reference |
|---|---|---|---|
| mcyA-CD1F | AAAATTAAAAGCCGTATCAAA | [ | |
| mcyA-CD1R | AAAAGTGTTTTATTAGCGGCTCAT | ||
| mcyB 2156-F | ATCACTTCAATCTAACGACT | [ | |
| mcyB 3111-R | AGTTGCTGCTGTAAGAAA | ||
| PSCF1 | GCAACATCCCAAGAGCAAAG | [ | |
| PSCR1 | CCGACAACATCACAAAGGC | ||
| PKDF1 | GACGCTCAAATGATGAAAC | [ | |
| PKDR1 | GCAACCGATAAAAACTCCC | ||
| PKEF1 | CGCAAACCCGATTTACAG | [ | |
| PKER1 | CCCCTACCATCTTCATCTTC | ||
| PKGF1 | ACTCTCAAGTTATCCTCCCTC | [ | |
| PKGR1 | AATCGCTAAAACGCCACC | ||
| AMT Fw | ATTGTAAATAGCTGGAATGAGTGG | [ | |
| AMT Rev | TTAGGGAAGTAATCTTCACAG | ||
| M13 | GGCAAATTGTGATAGCCACGAGC | [ | |
| M14 | GATGGAACATCGCTCACTGGTG | ||
| K18 | CCTCGCACATAGCCATTTGC | [ | |
| M4 | GAAGCTCTGGAATCCGGTAA | ||
| cynsulfF | ACTTCTCTCCTTTCCCTATC | [ | |
| cylnamR | GAGTGAAAATGCGTAGAACTTG | ||
| anaC-genF | TCTGGTATTCAGTCCCCTCTAT | [ | |
| anaC-genR | CCCAATAGCCTGTCATCAA | ||
| anaC-anabF | GCCCGATATTGAAACAAGT | [ | |
| anaC-anabR | CACCCTCTGGAGATTGTTTA | ||
| sxtA855_F | GACTCGGCTTGTTGCTTCCCC | [ | |
| sxtA1480_R | GCCAAACTCGCAACAGGAGAAGG | ||
| sxtG432_F | AATGGCAGATCGCAACCGCTAT | [ | |
| sxtG928_R | ACATTCAACCCTGCCCATTCACT | ||
| sxtI 682F | GGATCTCAAAGAAGATGGCA | [ | |
| sxtI 877R | GCCAAACGCAGTACCACTT |