Abstract
ABSTRACT The globally distributed dinoflagellate Prorocentrum cordatum contributes to harmful algal blooms, posing serious risks to marine ecosystems and coastal economies. Conventional monitoring of toxic phytoplankton is time-consuming, requires large sample volumes, and depends on expert taxonomic identification, highlighting the need for faster, more sensitive and widely accessible methods. This study presents a sample-to-result molecular assay for detection P. cordatum using polymerase chain reaction (PCR) and loop-mediated isothermal amplification (LAMP) targeting the ITS and psbA genes. Analyses were performed on small volumes of water (5-50 mL), concentrated with syringe filters and membranes. Sensitivity was evaluated through 10-fold serial dilutions of P. cordatum DNA, and specificity tested against three other potentially harmful dinoflagellates, P . lima , P . hoffmannianum , and Takayama acrotrocha . Detection limits were 5.3 × 10 2 cells L −1 for ITS-PCR and 5.3 × 10 3 cells L −1 for psbA -PCR; and 5.3 × 10 and 5.3 × 10 cells L −1 for ITS-LAMP and psbA -LAMP, respectively. In field tests (n = 48, all < 10 6 cells L −1 ), P. cordatum was detected in 32 samples by ITS-PCR and 29 by psbA -PCR. By contrast, ITS-LAMP detected the species in only three samples, and psbA -LAMP in none. Overall, PCR proved highly sensitive and specific for detecting low cell densities, while LAMP, although less sensitive, offers a rapid and portable option for field monitoring during moderate-to-high bloom conditions. Highlights • P. cordatum was isolated for molecular assays development. • Biomass concentration was achieved using small volumes. • PCR and LAMP assays targeting ITS and psbA were validated.
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ABSTRACT
The globally distributed dinoflagellate Prorocentrum cordatum contributes to harmful algal blooms, posing serious risks to marine ecosystems and coastal economies. Conventional monitoring of toxic phytoplankton is time-consuming, requires large sample volumes, and depends on expert taxonomic identification, highlighting the need for faster, more sensitive and widely accessible methods. This study presents a sample-to-result molecular assay for detection P. cordatum using polymerase chain reaction (PCR) and loop-mediated isothermal amplification (LAMP) targeting the ITS and psbA genes. Analyses were performed on small volumes of water (5-50 mL), concentrated with syringe filters and membranes. Sensitivity was evaluated through 10-fold serial dilutions of P. cordatum DNA, and specificity tested against three other potentially harmful dinoflagellates, P. lima, P. hoffmannianum, and Takayama acrotrocha. Detection limits were 5.3 × 102 cells L−1 for ITS-PCR and 5.3 × 103 cells L−1 for psbA-PCR; and 5.3 × 10 and 5.3 × 10 cells L−1 for ITS-LAMP and psbA-LAMP, respectively. In field tests (n = 48, all < 106 cells L−1), P. cordatum was detected in 32 samples by ITS-PCR and 29 by psbA-PCR. By contrast, ITS-LAMP detected the species in only three samples, and psbA-LAMP in none. Overall, PCR proved highly sensitive and specific for detecting low cell densities, while LAMP, although less sensitive, offers a rapid and portable option for field monitoring during moderate-to-high bloom conditions.
Highlights • P. cordatum was isolated for molecular assays development.
• Biomass concentration was achieved using small volumes.
• PCR and LAMP assays targeting ITS and psbA were validated.
Competing Interest Statement
The authors have declared no competing interest.
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