TY - JOUR
T1 - Development of loop-mediated isothermal amplification targeting 18S ribosomal DNA for rapid detection of Azumiobodo hoyamushi (Kinetoplastea)
AU - Song, Su Min
AU - Sylvatrie-Danne, Dinzouna Boutamba
AU - Joo, So Young
AU - Shin, Yun Kyung
AU - Yu, Hak Sun
AU - Lee, Yong Seok
AU - Jung, Ji Eon
AU - Inoue, Noboru
AU - Lee, Won Kee
AU - Goo, Youn Kyoung
AU - Chung, Dong Il
AU - Hong, Yeonchul
PY - 2014/6
Y1 - 2014/6
N2 - Ascidian soft tunic syndrome (AsSTS) caused by Azumiobodo hoyamushi (A. hoyamushi) is a serious aquaculture problem that results in mass mortality of ascidians. Accordingly, the early and accurate detection of A. hoyamushi would contribute substantially to disease management and prevention of transmission. Recently, the loop-mediated isothermal amplification (LAMP) method was adopted for clinical diagnosis of a range of infectious diseases. Here, the authors describe a rapid and efficient LAMP-based method targeting the 18S rDNA gene for detection of A. hoyamushi using ascidian DNA for the diagnosis of AsSTS. A. hoyamushi LAMP assay amplified the DNA of 0.01 parasites per reaction and detected A. hoyamushi in 10 ng of ascidian DNA. To validate A. hoyamushi 18S rDNA LAMP assays, AsSTS-suspected and non-diseased ascidians were examined by microscopy, PCR, and by using the LAMP assay. When PCR was used as a gold standard, the LAMP assay showed good agreement in terms of sensitivity, positive predictive value (PPV), and negative predictive value (NPV). In the present study, a LAMP assay based on directly heat-treated samples was found to be as efficient as DNA extraction using a commercial kit for detecting A. hoyamushi. Taken together, this study shows the devised A. hoyamushi LAMP assay could be used to diagnose AsSTS in a straightforward, sensitive, and specific manner, that it could be used for forecasting, surveillance, and quarantine of AsSTS.
AB - Ascidian soft tunic syndrome (AsSTS) caused by Azumiobodo hoyamushi (A. hoyamushi) is a serious aquaculture problem that results in mass mortality of ascidians. Accordingly, the early and accurate detection of A. hoyamushi would contribute substantially to disease management and prevention of transmission. Recently, the loop-mediated isothermal amplification (LAMP) method was adopted for clinical diagnosis of a range of infectious diseases. Here, the authors describe a rapid and efficient LAMP-based method targeting the 18S rDNA gene for detection of A. hoyamushi using ascidian DNA for the diagnosis of AsSTS. A. hoyamushi LAMP assay amplified the DNA of 0.01 parasites per reaction and detected A. hoyamushi in 10 ng of ascidian DNA. To validate A. hoyamushi 18S rDNA LAMP assays, AsSTS-suspected and non-diseased ascidians were examined by microscopy, PCR, and by using the LAMP assay. When PCR was used as a gold standard, the LAMP assay showed good agreement in terms of sensitivity, positive predictive value (PPV), and negative predictive value (NPV). In the present study, a LAMP assay based on directly heat-treated samples was found to be as efficient as DNA extraction using a commercial kit for detecting A. hoyamushi. Taken together, this study shows the devised A. hoyamushi LAMP assay could be used to diagnose AsSTS in a straightforward, sensitive, and specific manner, that it could be used for forecasting, surveillance, and quarantine of AsSTS.
KW - Ascidian aquaculture
KW - Azumiobodo hoyamushi
KW - Diagnostic method
KW - LAMP
KW - Soft tunic syndrome
UR - http://www.scopus.com/inward/record.url?scp=84904268763&partnerID=8YFLogxK
U2 - 10.3347/kjp.2014.52.3.305
DO - 10.3347/kjp.2014.52.3.305
M3 - Article
C2 - 25031473
AN - SCOPUS:84904268763
SN - 0023-4001
VL - 52
SP - 305
EP - 310
JO - Korean Journal of Parasitology
JF - Korean Journal of Parasitology
IS - 3
ER -