TY - JOUR
T1 - Combining Imaging Flow Cytometry and Molecular Biological Methods to Reveal Presence of Potentially Toxic Algae at the Ural River in Kazakhstan
AU - Mirasbekov, Yersultan
AU - Abdimanova, Aigerim
AU - Sarkytbayev, Kuanysh
AU - Samarkhanov, Kanat
AU - Abilkas, Aidyn
AU - Dashkova, Veronika
AU - Vorobjev, Ivan
AU - Potashnikova, D. M.
AU - Malashenkov, Dmitriy
AU - Barteneva, Natalie
N1 - Publisher Copyright:
© Copyright © 2021 Mirasbekov, Abdimanova, Sarkytbayev, Samarkhanov, Abilkas, Potashnikova, Arbuz, Issayev, Vorobjev, Malashenkov and Barteneva.
PY - 2021/7/21
Y1 - 2021/7/21
N2 - Algal blooms occur in freshwater bodies throughout the world, often leading to fish kills. Cases of these kills along the Ural River were reported in 2018–2019, involving significant amount of sturgeon in fish farming areas. In this study, the analysis of algal samples from the delta of the Ural River up to 100 km inland was carried out from August to December 2019 using imaging flow cytometry (IFC), molecular biological, and microscopic techniques. We identified the filamentous cyanobacteria Cuspidothrix issatschenkoi, Dolichospermum cf. flos-aquae, Dolichospermum cf. macrosporum, Pseudanabaena limnetica, and Planktothrix spp. as the dominant potentially toxic phytoplankton species, and we also found minor quantities of Cylindrospermopsis raciborskii. For the first time, molecular phylogenetic investigations of field clones of cyanobacteria from Ural River were carried out to establish the taxa of the dominant species and to identify the presence of genes encoding toxins. The complementary analysis with nanopore-based next-generation sequencing overlapped with the results of IFC and was instrumental in revealing minor cyanobacteria taxa. Real-time PCR analysis and sequencing indicated the presence of Microcystis and ADA-clade spp. as well as genes associated with the production of microcystin (mcyE) and the algal neurotoxin saxitoxin (sxtA) originating from cyanobacteria. These findings suggest that toxin-producing cyanobacteria could become a threat in the Ural River near Atyrau, which can significantly affect aquaculture in the region.
AB - Algal blooms occur in freshwater bodies throughout the world, often leading to fish kills. Cases of these kills along the Ural River were reported in 2018–2019, involving significant amount of sturgeon in fish farming areas. In this study, the analysis of algal samples from the delta of the Ural River up to 100 km inland was carried out from August to December 2019 using imaging flow cytometry (IFC), molecular biological, and microscopic techniques. We identified the filamentous cyanobacteria Cuspidothrix issatschenkoi, Dolichospermum cf. flos-aquae, Dolichospermum cf. macrosporum, Pseudanabaena limnetica, and Planktothrix spp. as the dominant potentially toxic phytoplankton species, and we also found minor quantities of Cylindrospermopsis raciborskii. For the first time, molecular phylogenetic investigations of field clones of cyanobacteria from Ural River were carried out to establish the taxa of the dominant species and to identify the presence of genes encoding toxins. The complementary analysis with nanopore-based next-generation sequencing overlapped with the results of IFC and was instrumental in revealing minor cyanobacteria taxa. Real-time PCR analysis and sequencing indicated the presence of Microcystis and ADA-clade spp. as well as genes associated with the production of microcystin (mcyE) and the algal neurotoxin saxitoxin (sxtA) originating from cyanobacteria. These findings suggest that toxin-producing cyanobacteria could become a threat in the Ural River near Atyrau, which can significantly affect aquaculture in the region.
KW - Cylindrospermopsis raciborskii
KW - MinION
KW - cyanobacteria
KW - imaging flow cytometry
KW - next-generation sequencing
KW - real-time PCR
KW - satellite data analysis
KW - toxic algae
UR - https://www.scopus.com/pages/publications/85111918984
UR - https://www.scopus.com/pages/publications/85111918984#tab=citedBy
U2 - 10.3389/fmars.2021.680482
DO - 10.3389/fmars.2021.680482
M3 - Article
SN - 2296-7745
VL - 8
SP - 1
EP - 16
JO - Frontiers in Marine Science
JF - Frontiers in Marine Science
M1 - 680482
ER -