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Molecular Detection of the Harmful Raphidophyte Chattonella subsalsa Biecheler by Whole-Cell Fluorescence in-situ Hybridisation Assay.

Authors :
Lau WLS
Teng ST
Lim HC
Hii KS
Leong SCY
Leaw CP
Lim PT
Source :
Tropical life sciences research [Trop Life Sci Res] 2023 Mar; Vol. 34 (1), pp. 99-120. Date of Electronic Publication: 2023 Mar 31.
Publication Year :
2023

Abstract

Species of the genus Chattonella (Raphidophyceae) are a group of marine protists that are commonly found in coastal waters. Some are known as harmful microalgae that form noxious blooms and cause massive fish mortality in finfish aquaculture. In Malaysia, blooms of Chattonella have been recorded since the 1980s in the Johor Strait. In this study, two strains of Chattonella were established from the strait, and morphological examination revealed characteristics resembling Chattonella subsalsa . The molecular characterization further confirmed the species' identity as C . subsalsa . To precisely detect the cells of C. subsalsa in the environment, a whole-cell fluorescence in-situ hybridisation (FISH) assay was developed. The species-specific oligonucleotide probes were designed in silico based on the nucleotide sequences of the large subunit (LSU) and internal transcribed spacer 2 (ITS2) of the ribosomal DNA (rDNA). The best candidate signature regions in the LSU-rRNA and ITS2-rDNA were selected based on hybridisation efficiency and probe parameters. The probes were synthesised as biotinylated probes and tested by tyramide signal amplification with FISH (FISH-TSA). The results showed the specificity of the probes toward the target cells. FISH-TSA has been proven to be a potential tool in the detection of harmful algae in the environment and could be applied to the harmful algal monitoring program.<br /> (© Penerbit Universiti Sains Malaysia, 2023.)

Details

Language :
English
ISSN :
1985-3718
Volume :
34
Issue :
1
Database :
MEDLINE
Journal :
Tropical life sciences research
Publication Type :
Academic Journal
Accession number :
37065805
Full Text :
https://doi.org/10.21315/tlsr2023.34.1.7