2014Journal of Veterinary ScienceOpen access

Development of a multiplex PCR assay to detectEdwardsiella tarda,Streptococcus parauberis, andStreptococcus iniaein olive flounder (Paralichthys olivaceus)

Seong Bin Park, Kyoung Kwon, In Seok, Ho Bin Jang, Seong Won Nho, Fernand F. Fagutao, Young Kyu Kim, Jong Earn Yu, Tae Sung Jung

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Abstract

A multiplex PCR protocol was established to simultaneously detect major bacterial pathogens in olive flounder (Paralichthys olivaceus) including Edwardsiella (E.) tarda, Streptococcus (S.) parauberis, and S. iniae. The PCR assay was able to detect 0.01 ng of E. tarda, 0.1 ng of S. parauberis, and 1 ng of S. iniae genomic DNA. Furthermore, this technique was found to have high specificity when tested with related bacterial species. This method represents a cheaper, faster, and reliable alternative for identifying major bacterial pathogens in olive flounder, the most important farmed fish in Korea.

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What this paper is about

A multiplex PCR protocol was established to simultaneously detect major bacterial pathogens in olive flounder (Paralichthys olivaceus) including Edwardsiella (E.) tarda, Streptococcus (S.) parauberis, and S. iniae. The PCR assay was able to detect 0.01 ng of E. tarda, 0.1 ng of S. parauberis, and 1 ng of S. iniae genomic DNA. Furthermore, this technique was found to have high specificity when tested with related bacterial species. This method represents a cheaper, faster, and reliable alternative for identifying major bacterial pathogens in olive flounder, the most important farmed fish in Korea.

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Available abstract

A multiplex PCR protocol was established to simultaneously detect major bacterial pathogens in olive flounder (Paralichthys olivaceus) including Edwardsiella (E.) tarda, Streptococcus (S.) parauberis, and S. iniae. The PCR assay was able to detect 0.01 ng of E. tarda, 0.1 ng of S. parauberis, and 1 ng of S. iniae genomic DNA. Furthermore, this technique was found to have high specificity when tested with related bacterial species. This method represents a cheaper, faster, and reliable alternative for identifying major bacterial pathogens in olive flounder, the most important farmed fish in Korea.

Key concepts: Streptococcus iniae, Edwardsiella tarda, Paralichthys, Olive flounder, Biology, Microbiology, Multiplex polymerase chain reaction, Flounder

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Development of a multiplex PCR assay to detectEdwardsiella tarda,Streptococcus parauberis, andStreptococcus iniaein olive flounder (Paralichthys olivaceus) — Research Paper | ScholarLens