• Title/Summary/Keyword: virus assay

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Anti-encephalomyocarditis Virus Activity of Water Soluble Substance from Elfvingia applanata Alone and in Combinations with Interferons (Elfvingia applanata 수용성 물질의 항엔세파로미오카디티스 바이러스작용과 인터페론과의 병용효과)

  • 김준희;어성국;김영소;한성순
    • YAKHAK HOEJI
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    • v.43 no.4
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    • pp.464-468
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    • 1999
  • In order to find less toxic antiviral agents from basidiomycetes, EA, the water soluble substance, was isolated from the carpophores of Elfvingia applanata (Pers.) Karst. Anti-encephalomyocarditis (EMC) virus activity of EA was examined in Vero cells by plaque reduction assay in vitro. And the combined antiviral effects of EA with interferon (IFN) alpha and gamma were examined on the multiplication of EMC virus. EA exhibited a concentration-dependent reduction in the plaque formation of EMC virus with 50% effective concentration ($EC_{50}$) of 2.12 mg/ml. The results of combination assay were evaluated by the combination index (CI) that was analysed by the multiple drug effect analysis. The combination of EA with IFN alpha showed potent synergism with CI values of 0.40~0.60 for 50%, 70% and 90% effective levels, but that with IFN gamma showed antagonism with CI values of 2.16~2.83.

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Development of a multiplex qRT-PCR assay for detection of African swine fever virus, classical swine fever virus and porcine reproductive and respiratory syndrome virus

  • Chen, Yating;Shi, Kaichuang;Liu, Huixin;Yin, Yanwen;Zhao, Jing;Long, Feng;Lu, Wenjun;Si, Hongbin
    • Journal of Veterinary Science
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    • v.22 no.6
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    • pp.87.1-87.12
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    • 2021
  • Background: African swine fever virus (ASFV), classical swine fever virus (CSFV), and porcine reproductive and respiratory syndrome virus (PRRSV) are still prevalent in many regions of China. Co-infections make it difficult to distinguish their clinical symptoms and pathological changes. Therefore, a rapid and specific method is needed for the differential detection of these pathogens. Objectives: The aim of this study was to develop a multiplex real-time quantitative reverse transcription polymerase chain reaction (multiplex qRT-PCR) for the simultaneous differential detection of ASFV, CSFV, and PRRSV. Methods: Three pairs of primers and TaqMan probes targeting the ASFV p72 gene, CSFV 5' untranslated region, and PRRSV ORF7 gene were designed. After optimizing the reaction conditions, including the annealing temperature, primer concentration, and probe concentration, multiplex qRT-PCR for simultaneous and differential detection of ASFV, CSFV, and PRRSV was developed. Subsequently, 1,143 clinical samples were detected to verify the practicality of the assay. Results: The multiplex qRT-PCR assay could specifically and simultaneously detect the ASFV, CSFV, and PRRSV with a detection limit of 1.78 × 100 copies for the ASFV, CSFV, and PRRSV, but could not amplify the other major porcine viruses, such as pseudorabies virus, porcine circovirus type 1 (PCV1), PCV2, PCV3, foot-and-mouth disease virus, porcine parvovirus, atypical porcine pestivirus, and Senecavirus A. The assay had good repeatability with coefficients of variation of intra- and inter-assay of less than 1.2%. Finally, the assay was used to detect 1,143 clinical samples to evaluate its practicality in the field. The positive rates of ASFV, CSFV, and PRRSV were 25.63%, 9.36%, and 17.50%, respectively. The co-infection rates of ASFV+CSFV, ASFV+PRRSV, CSFV+PRRSV, and ASFV+CSFV+PRRSV were 2.45%, 2.36%, 1.57%, and 0.17%, respectively. Conclusions: The multiplex qRT-PCR developed in this study could provide a rapid, sensitive, specific diagnostic tool for the simultaneous and differential detection of ASFV, CSFV, and PRRSV.

Dot Blot Assay for Screening of Anti-hantavirus Antibodies by Using Nucleocapsid Protein of Hantaan Virus (한탄바이러스 핵단백질을 이용한 항 한타바이러스 항체 검색용 Dot Blot Assay)

  • Cho, Hae-Wol;Chung, Yeun-Jun;Kim, Chung-Lim;Ban, Sang-Ja;Nam, Jae-Hwan;Lee, Hyeong-Woo;Lee, Yoo-Jin;Kim, Eun-Jung
    • The Journal of Korean Society of Virology
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    • v.26 no.1
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    • pp.59-65
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    • 1996
  • For easy and rapid screening of hemorrhagic fever with renal syndrome (HFRS) without any laboratory equipment, dot blot enzyme immunoassay was developed and tried to detect anti-hantavirus antibodies. The nucleocapsid protein of Hantaan virus was isolated by affinity chromatography and used for making the dot strip. 28 of 29 Hantaan virus infected sera showed positive signals and 21 of 22 HFRS negative sera showed no positive signals. Anti-Seoul virus monoclonal antibody also exibited positive signal but the intensity of colorization was approximately 5 fold less than that of anti-Hantaan monoclonal antibody. The sensitivity of dot blot assay was equal or superior to indirect immunofluorescent assay (IFA) or ELISA test. Overall, the screening results with dot blot assay showed 92.2 % of concordance with IFA or ELISA test. This results suggests that dot blot assay could be applied a tool for easy and rapid screening of HFRS.

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Development of a Multiplex RT-PCR for the Simultaneous Detection of Three Viruses in Cherry Plants

  • Park, Chung Youl;Park, Jeongran;Lee, Geunsik;Yi, Seung-In;Kim, Byeong Hoon;Eom, Jung Sik;Lee, Som Gyeol;Kim, Hongsup
    • Research in Plant Disease
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    • v.24 no.3
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    • pp.233-236
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    • 2018
  • A multiplex RT-PCR (mRT-PCR) assay was developed for the detection of the recently reported viruses, Cherry virus A (CVA), Little cherry virus 1 (LChV-1), and Little cherry virus 2 (LChV-2), in cherry plants in Korea. Eight sets of primers were designed for each virus and their specificity was tested by using various combinations of mixed primer sets. From the designed primer sets, one combination was selected and further evaluated to estimate the optimum temperature and detection limits of the mRT-PCR. A newly developed mRT-PCR assay was also tested using 20 cherry samples collected in the field. This mRT-PCR assay may be a useful tool for field surveys of diseases and the rapid detection of these three viruses in cherry plants.

Measurement of Antiviral Activities Using Recombinant Human Cytomegalovirus

  • Song, Byung-Hak;Lee, Gyu-Cheol;Lee, Chan-Hee
    • Journal of Microbiology
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    • v.38 no.4
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    • pp.255-259
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    • 2000
  • For rapid and sensitive measurement of antiviral activities, application of a recombinant virus containing firefly luciferase gene was attempted. Recombinant human cytomegalovirus (HCMV) containing luciferase gene driven by HCMV late gene pp28 promoter (HCMV/pp28-luc) was used to test the antiviral activities of three known compounds and the result was compared with results from the conventional plaque assay for measuring the production of infectious viruses. When human fibroblast cells were infected with HCMV/pp28-luc, luciferase activity was observed at 2 days after infection and reached maximum at 6 days after infection, whereas the production of infectious virus was maximal at 4 days after infection. The antiviral activities of ganciclovir, acyclovir, and papaverine were measured in HFF cells infected with HCMV/PP28-luc and the luciferase activity was compared with the infectious virus titers. Luciferase activity decreased as the concentration of ganciclovir or papaverine increased, while there was a slight decrease in luciferase activity with acyclovir. The level of the decrease in Luciferase activity was comparable to the level of decrease in the production of infectious virus. Therefore, the antiviral assay using recombinant virus HCMV/pp28-luc resulted in sensitivity similar to the conventional plaque assay with a significant reduction in assay time.

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Rapid and Specific Detection of Apple stem grooving virus by Reverse Transcription-recombinase Polymerase Amplification

  • Kim, Nam-Yeon;Oh, Jonghee;Lee, Su-Heon;Kim, Hongsup;Moon, Jae Sun;Jeong, Rae-Dong
    • The Plant Pathology Journal
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    • v.34 no.6
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    • pp.575-579
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    • 2018
  • Apple stem grooving virus (ASGV) is considered to cause the most economically important viral disease in pears in Korea. The current PCR-based methods used to diagnose ASGV are time-consuming in terms of target detection. In this study, a novel assay for specific ASGV detection that is based on reverse transcription-recombinase polymerase amplification is described. This assay has been shown to be reproducible and able to detect as little as $4.7ng/{\mu}l$ of purified RNA obtained from an ASGV-infected plant. The major advantage of this assay is that the reaction for the target virus is completed in 1 min, and amplification only requires an incubation temperature of $42^{\circ}C$. This assay is a promising alternative method for pear breeding programs or virus-free certification laboratories.

Development of a Reliable Technique to Eliminate Sweet potato leaf curl virus through Meristem Tip Culture Combined with Therapy of Infected Ipomoea Species

  • Cheong, Eun-Ju;Hurtt, Suzanne;Salih, Sarbagh;Li, Ruhui
    • Korean Journal of Plant Resources
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    • v.23 no.3
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    • pp.233-241
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    • 2010
  • In vitro elimination of Sweet potato leaf curl virus (SPLCV) from infected sweet potato is difficult due to low number of virus-free plants obtained from meristem tip culture and long growth period required for the virus detection. In this study, efficient production of the SPLCV-free sweet potato by in vitro therapy coupled with a PCR assay for virus detection was investigated. Infected shoots cultured on Murashige and Skoog medium were treated at three different temperatures for 7 weeks followed by meristem tip culture on the medium with or without ribavirin at 50 mg/L. The regenerated plantlets were tested for virus infection by a PCR assay. The results showed that the both heat- and cold-treatments, and addition of the ribavirin did not have significant effect on efficiency of the virus elimination. The meristem size, however, greatly affected the survival rate. Meristems sized over 0.4 mm survived better than smaller ones (0.2-0.3 mm). The PCR assay was approved to be a rapid, sensitive and reliable for the SPLCV detection in regenerated plantlets. Therefore, combination of cultivating meristem tips sized 0.4-0.5 mm on the medium at $22^{\circ}C$ without ribavirin and detection of SPLCV in the regenerated plantlets by the PCR assay was an efficient system for the SPLCV elimination from infected sweet potato.

Rapid Screening of Apple mosaic virus in Cultivated Apples by RT-PCR

  • Ryu, Ki-Hyun;Park, Sun-Hee
    • The Plant Pathology Journal
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    • v.19 no.3
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    • pp.159-161
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    • 2003
  • The coat protein (CP) gene of Apple mosaic virus (ApMV), a member of the genus Ilarvirus, was selected for the design of virus-specific primers for amplification and molecular detection of the virus in cultivated apple. A combined assay of reverse transcription and polymerase chain reaction (RT-PCR) was performed with a single pair of ApMV-specific primers and crude nucleic acid extracts from virus-infected apple for rapid detection of the virus. The PCR product was verified by restriction mapping analysis and by sequence determination. The lowest concentration of template viral RNA required for detection was 100 fg. This indicates that the RT-PCR for detection of the virus is a 10$^3$times more sensitive, reproducible and time-saving method than the enzyme-linked immunosorbent assay. The specificity of the primers was verified using other unrelated viral RNAs. No PCR product was observed when Cucumber mosaic virus (Cucumovirus) or a crude extract of healthy apple was used as a template in RT-PCR with the same primers. The PCR product (669 bp) of the CP gene of the virus was cloned into the plasmid vector and result-ant recombinant (pAPCP1) was selected for molecule of apple transformation to breed virus-resistant transgenic apple plants as the next step. This method can be useful for early stage screening of in vitro plantlet and genetic resources of resistant cultivar of apple plants.

Effect of Fumonisin B1 on the Bacterial Virus Multiplication (세균 바이러스 증식에 대한 Fumonisin B1의 영향)

  • 이길수
    • Toxicological Research
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    • v.12 no.1
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    • pp.17-20
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    • 1996
  • The effect of Fumonisin B1, a mycotoxin produced by Fusarium moniliforme on bacterial viruses P1 and Lambda, was investigated by the virus plaque assay. Fumonisin B1 inhibited the P1 viral multiplication in the concentration range from $100{\mu}g$/ml to $400{\mu}g$/ml. The inhibition was Fumonisin B1 concentration-dependent. Another bacterial virus Lambda multiplication was also inhibited by lower concentration of Fumonisin B1 ($10{\mu}g$/ml~$50{\mu}g$/ml). This inhibition was dependent on Fumonisin B1 and on virus-Fumonisin B1 reaction time. Sensitivity of bacteriophage Lambda to Fumonisin B1 was higher than that of P1 virus. Lambda vital DNA was treated in vitro with Fumonisin B1 at various concentration. Significant DNA fragmentation by Fumonisin 191 was observed in the agarose gel electrophoresis. Lambda viral DNA was partially digested even in the Fumonisin B1 $10{\mu}g$ and the level of its fragmentation was dependent on Fumonisin B1 amount up to $30{\mu}g$ per assay.

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Development of a Rapid Assay for Peach Rosette Mosaic Virus Using Loop-mediated Isothermal Amplification (Peach rosette mosaic virus 검출을 위한 신속한 등온증폭법 개발)

  • Lee, Siwon;Lee, Jin-Young;Kim, Jin-Ho;Rho, Jae-Young
    • Microbiology and Biotechnology Letters
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    • v.44 no.4
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    • pp.493-496
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    • 2016
  • Peach rosette mosaic virus (PRMV) is a plant virus that was first reported in 1933 by Peach. It can infect hosts including peach, grape, blueberry, dandelion, plum, cherry tree, and weeds. PRMV is non-reportable in Korea, but it is designated as a controlled virus requiring plant quarantine. In this study, for the rapid and specific detection of PRMV, we developed an assay using loop-mediated isothermal amplification (LAMP). Comparison between conventional polymerase chain reaction (PCR) methods (real time-PCR and nested PCR) and LAMP for the detection of PRMV revealed an equivalent level of sensitivity by all the tested methods. For the LAMP assay, outer primer sets were used to amplify a 264-bp PCR product, which was then digested using the restriction enzyme Pvu II (CAG/CTG), and the visualization of two digestion fragments (207 + 57 bp) indicated a positive reaction. The developed LAMP assay for PRMV is expected to enable the rapid monitoring of PRMV in plants.