• Title/Summary/Keyword: Fish viruses

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Histopathologic Characterization of Viral Pathogens in Cultured Olive Flounder, Paralichthys Olivaceus, using in-situ Hybridization Methods (In-situ hybridization 법을 사용한 양식 넙치, Paralichthys olivaceus의 바이러스 감염 질병 특성 고찰)

  • Do, Jeong Wan;Lee, Nam-Sil;Jung, Sung Hee;Kim, Kyung-Kil;Choi, Hye Sung;Park, Jeong Woo;Kim, Yi Cheong
    • Journal of fish pathology
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    • v.26 no.3
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    • pp.163-171
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    • 2013
  • Polymerase chain reaction (PCR) is the most rapid and widely used method to detect viral pathogens. However, this method does not provide histopathologic nature of the virus. In situ hybridization (ISH) with oligonucleotide probes is attractive because it is a rapid method for detection and identification of viral pathogens at sites of tissue infection. In order to understand the histopathologic characterictics of Red sea bream iridovirus (RSIV), viral-hemorrhagic septicemia (VHS) virus and viral nervous necrosis (VNN) virus to cultured olive flounder, we her applied ISH method to various kinds of olive flounder tissues with PCR-positive for these three viruses. We found that these viruses showed different tissue tropism and were detected from different cell types. Our results suggest that ISH is useful not only in rapid detection of viral pathogens but also in understanding the histopathologic characters of specific viral pathogens.

Monitoring of fish pathogens in wild marine fish of Korean coastal offshore water in 2008 (2008년 우리나라 연근해산 어류에 대한 병원체 모니터링)

  • Cho, Mi-Young;Jee, Bo-Young;Park, Gyeong-Hyun;Lee, Chang-Hoon;Lee, Deok-Chan;Kim, Jin-Woo;Park, Mi-Seon;Park, Myoung-Ae
    • Journal of fish pathology
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    • v.22 no.1
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    • pp.75-83
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    • 2009
  • Disease surveillance was performed to monitor the prevalence of fish pathogens in wild marine fish caught in coastal offshore water from February to October in 2008. A total of 401 fish samples were collected at set net or fish market at landing port on the coast of Pohang, Geoje, Yeosu and Jeju. In this study, 17 kinds of fish pathogens were isolated from 152 fish samples. The detection rates of parasites, bacteria or viruses were 21.4%, 17.0% and 2.7%, respectively. The detected parasites were Scutica, Trichodina, Cryptocaryon, Dactylogyrus, Microcotyle, Benedenia, Bivagina, Heteraxin, Caligus, Epistylis and nematode. The dominant bacterial pathogens were Vibrio, Streptococcus, Photobacterium and Psuedomonas. Red sea bream iridovirus (RSIV) and lymphocystis disease virus (LDV) were detected in 6 species of fish virus examined in this study. The detection rates of fish pathogens from Scorpaenidae, Monacanthidae, Pleuronectidae, Sparidae and Carangidae investigated over 30 samples were 59.2%, 48.4%, 34.2%, 30.6% and18.2%, respectively.

The Norwegian Model of Fisheries Bio-Resources Management (노르웨이 해역 수산생명자원 관리모델)

  • Oh, Hyun Taik;Lee, Won Chan;Song, Chi Mun;Kim, Hyung-Chul;Kim, Jeong-Bae;Jung, Rae-Hong
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.46 no.2
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    • pp.111-118
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    • 2013
  • The Norwegian coastal area is the most efficient region for fishery production in the world's oceans, the Norway is the world's top 10 fisheries countries through efficient fishing and fishing aquaculture technology and its scientific management of fisheries bio-resources, with Norwegian salmon having attained the world's highest level. In the late 1980s, fisheries resources were depleted due to overfishing and fish diseases, resulting in a crisis in the fishing industry that lasted until the early 1990s. Since the national fishery emergency, people involved in the fishing industry, including fishermen, research scientists, and government officers, have tried to overcome the challenges facing the industry and identify an appropriate management model for fisheries bio-resources in the Norwegian coastal area. First, research vessels were used to monitor water and sediment conditions and fishery species, with the long-term aim of predicting fishery resources in real time and collecting information on species diversity, abundance, and distribution. Second, a "Healthy Fish Project" was promoted to counter natural disasters and fish disease problems with the development of vaccines against viruses and bacteria, eventually allowing for a decrease in the use of antibiotics and the production of notably healthier fish in the 2000s. Third, a systematic management model was developed to help with preparations for decreases in the total number of fishermen and increases in the proportion of elderly fishermen in the fishery industry using the development of automatic fishing aquaculture systems and short-chain systems. We could learn from the Norwegian model of fisheries bio-resources, management and could adopt it for the preparation of fishery bio-resources management policy for South Korean coastal areas in the near future.

Comparison of pathogen detection from wild and cultured olive flounder, red sea bream, black sea bream and black rockfish in the coastal area of Korea in 2010 (2010년 한국 연근해 자연산과 양식산 넙치, 참돔, 감성돔, 조피볼락의 병원체 비교)

  • Park, Myoung Ae;Do, Jeung-Wan;Kim, Myoung Sug;Kim, Seok-Ryel;Kwon, Mun-Gyeong;Seo, Jung Soo;Song, Junyoung;Choi, Hye-Sung
    • Journal of fish pathology
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    • v.25 no.3
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    • pp.263-270
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    • 2012
  • This study surveyed for the prevalence of parasites, bacteria and viruses in four fish species, olive flounder (Paralichthys olivaceus), red sea bream (Pagrus major), black sea bream (Acathopagrus schlegeli) and black rockfish (Sebastes schlegeli) in 2010. The survey was aimed to compare the pathogens detected from wild and cultured fish for an epidemiological study. Anisakis sp. was predominantly detected from wild olive flounder and red sea bream (58.6% and 41.7% respectively), but not from the cultured fishes, suggesting anisakid infection is rare in cultured fish. The wild fish get in contact with the anisakids through their prey such as small fishes or crustaceans which carry the anisakids; whereas the cultured fish are fed with formulated feed, free of anisakids. Bacterial detection rates from the wild fishes examined in the study were lower than those of cultured fishes. Vibrio sp. dominated among detected bacterial population in cultured olive flounder (18%). Since vibriosis is known as a secondary infection caused by other stressful factors such as parasitic infections, handling and chemical treatment, it seems that cultured olive flounder are exposed to stressful environment. Viruses diagnosed in the study showed difference in distribution between wild and cultured fishes; hirame rhabdovirus (HRV) (0.1%) and lymphocystis disease virus (LCDV) (3.9%) were detected in the cultured olive flounder, but not in the wild fish, and marine birnavirus (MBV) (1.7%) and red sea bream iridovirus (RSIV) (3.2%) were detected from the wild and cultured red sea bream, respectively. From the survey conducted, it can be concluded that even though some pathogens (Trichodina sp., Microcotyle sp., etc.) are detected from both the wild and cultured fish, pathogens such as Anisakis sp., Vibrio sp. and LCDV showed difference in distribution in the wild and cultured host of same fish species and this can be attributed to their environmental condition and feeding.

Characterization of the Repetitive Sequences Present in the ORF25 Genomic Region of Megalocytiviruses from Ornamental Fishes (관상어로부터 분리한 Megalocytiviruses에서 나타나는 ORF25 유전자 부위의 반복서열 특성 분석)

  • Jin, Ji-Woong;Nam, Jeong-Hee;Kim, Kwang-Il;Hong, Su-Hee;Byon, Ju-Young;Jeong, Hyun-Do
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.44 no.4
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    • pp.352-358
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    • 2011
  • The presence of ISKNV-like viruses in various freshwater ornamental fish species imported from Asia was confirmed by polymerase chain reaction(PCR) amplification of the ATPase(adenosine triphosphatase) gene. Interestingly, molecular analyses of the Open Reading Frame 25(ORF25) region of these isolates based on the ISKNV(Infectious spleen and kidney necrosis virus) genome revealed the presence of various repetitive sequences. ORF25 repeat sequence length had no effect on cumulative mortality of rock bream Oplegnathus fasciatus challenged with tissue homogenates of infected pearl gourami, Trichogaster leeri; silver gourami, Trichogaster microlepis; blue gourami, or Trichogaster trichopterus. All isolates induce cumulative mortalities after 12 days of infection, confirming that ORF25 polymorphism did not affect the pathogenicity of ornamental fish megalocytiviruses that cross infect rock bream, a seawater fish. Also, no statistically significant differences in spleen index or viral copy number in infected tissues was detected between isolates with varying ORF25 repeat sequence lengths. However, further studies are necessary to fully characterize the functional characteristics of these polymorphisms in megalocytivirus disease in ornamental fishes.

Changes in Fish Viral Disease Outbreaks in the Coastal Area of Korea Due to Increasing Water Temperature, an Impact of Climate Change (기후변화에 기인한 연안 수온상승에 따른 연안 어류의 바이러스성 질병 발생 예측)

  • Kim, Wi-Sik;Kim, Seok-Ryel;Park, Myoung-Ae;Lee, Joon-Soo;Avunje, Satheesha;Kim, Do-Hyung;Oh, Myung-Joo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.46 no.5
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    • pp.582-588
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    • 2013
  • The impact of global warming on aquatic systems has been a priority research area in the past decade. However, the possibility that increased temperatures will cause shifts in viral disease outbreaks has not been well addressed. In the present study, with increasing water temperature (WT) in the coastal area of Korea, we estimated the possibility of changes in fish viral diseases. From the present time, WT may rise between 0.62 and $1.7^{\circ}C$ by 2050, and the effect on aquaculture could be more adverse than benefitial. Red seabream iridovirus disease (RSIVD) and viral nervous necrosis (VNN) cause high mortality above 22 and $24^{\circ}C$, respectively, and outbreaks could commence earlier and persist for prolonged periods. Nevertheless, the period of occurrence of viral hemorrhagic septicemia (VHS), which outbreaks at a lower WT (< $18^{\circ}C$), could be shorter than the current infectious period. Thermal stress in fish causes reductions in growth and immunocompetence; thus, increases in summer WT can lead to the development of new viral diseases. WT has a strong influence on fish population dynamics; therefore, entry of new viruses and changes in the prevalence of infection can be expected if carrier fishes are introduced or migrate to Korean waters.

Vibrio anguillarum infection in rainbow trout Oncorhynchus mykiss during seawater adaption (해수순치 무지개송어 (Oncorhynchus mykiss)의 Vibrio anguillarum 감염증)

  • Kim, Si-Woo;Kim, Jong-Oh;Kim, Wi-Sik;Kim, Do-Hyung;Oh, Myung-Joo
    • Journal of fish pathology
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    • v.27 no.2
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    • pp.133-137
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    • 2014
  • We examined the cause of a disease outbreak in rainbow trout Oncorhynchus mykiss, which were adapting to a seawater in an aquaculture farm in Jeju on April, 2013. Most of the diseased fish showed a severe ulcer on the skin, enlarged spleen, expanded stomach and hemorrhage of abdominal and pyloric region. Although no parasites, fungi or viruses were isolated from diseased fish, over 200 same bacterial colonies were isolated from liver, spleen and kidney. Nucleotide sequences of the 16S rDNA gene of the bacterium in this study showed 100% identity with Vibrio anguillarum. This study is the first report of V. anguillarum infection in rainbow trout during sea adaption in Korea.

Transcriptional analysis of olive flounder lectins in response to VHSV infection

  • Lee, Young Mee;Noh, Jae Koo;Kim, Hyun Chul;Park, Choul-Ji;Park, Jong-Won;Noh, Gyeong Eon;Kim, Woo-Jin;Kim, Kyung-Kil
    • Journal of fish pathology
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    • v.29 no.1
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    • pp.13-23
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    • 2016
  • Lectins play significant roles in the innate immune responses through binding to pathogen-associated molecular patterns (PAMPs) on the surfaces of microorganisms. In the present study, tissue distribution and expression analysis of olive flounder lectins were performed after viral hemorrhagic septicemia virus (VHSV) challenge. Fish egg lectin and serum lectin were found to be predominantly expressed in the gills and liver, these results indicate that the transcript expression of olive flounder lectins is concentrated in immune-related tissues. Following a VHSV challenge, an overall increase in the transcript levels of the genes was observed and the expression patterns were distinctly divided into early and later responses during VHSV infection. In conclusion, olive flounder lectins are specifically expressed in immune-related organs and induced in both the immediate and long-lasting immune responses to VHSV in the olive flounder. These results indicate that lectins may be play important roles in the host defense mechanism and involved in the innate and adaptive immune response to viruses in fish.

Detection of Marine Birnavirus(MABV) from Marine Fish in the Southern Coast of Korea (남해안 자연산 어류에서 Marine birnavirus(MABV)의 검출)

  • Yun, Hyun-Mi;Kim, Seok-Ryel;Lee, Wol-La;Jung, Sung-Ju;Oh, Myung-Joo
    • Journal of Aquaculture
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    • v.21 no.1
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    • pp.13-18
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    • 2008
  • Marine birnavirus(MABV) are well known fish pathogens in Asian countries such as Korea, Japan, and China. Prevalence of viral disease, geological distribution and host or reservoir of viruses were investigated from wild marine fishes in southern coast of Korea in 2003 and 2005. RT-PCR results showed that MABV were detected in 17 fishes(10.6%) from 160 fishes. Comparative analysis of the nucleotide sequences and the deduced amino acids of MABV genome from wild fishes were similar to reference strains of MABV and distinguished with IPNV strains.

Identification and Expression of Retroviral Envelope Polyprotein in the Dogfish Squalus mitsukurii

  • Kim, Soo Cheol;Sumi, Kanij Rukshana;Choe, Myeong Rak;Kho, Kang Hee
    • Journal of Marine Life Science
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    • v.1 no.2
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    • pp.88-94
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    • 2016
  • Determining the infection history of living organisms is essential for understanding the evolution of infection agents with their host, particularly for key aspects such as immunity. Viruses, which can spread between individuals and often cause disease, have been widely examined. The increasing availability of fish genome sequences has provided specific insights into the diversity and host distribution of retroviruses in fish. The shortspine spurdog (Squalus mitsukurii) is an important elasmobranch species; this medium-sized dogfish typically lives at depths of 100~500 m. However, the retroviral envelope polyprotein in dogfish has not been examined. Thus, the aim of the present study was to identify and analyze the retroviral envelope polyprotein in various tissues of dogfish. The 1334-base pair full-length novel cDNA of dogfish envelope polyprotein (dEnv) was obtained by 3' and 5'-rapid amplification of cDNA end analysis from S. mitsukurii. The open reading frame showed a complete coding sequence of 815 base pairs with a deduced peptide sequence of 183 amino acids that exhibited 34~50% identity with other fish and bird species. It was also expressed according to reverse transcription and real-time polymerase chain reaction in the kidney, liver, intestine, and lung, but not in the gill. This distribution can be assessed by identifying and analyzing endogenous retroviruses in fish, which consists of three main genes: gag, pol and env. Dogfish envelope polyprotein sequence is likely important in evolution and induces rearrangements, altering the regulatory and coding sequences. This is the first report of the identification and molecular characterization of retroviral envelope polyprotein in various tissues of S. mitsukurii.