• Title/Summary/Keyword: gelatin particle agglutination test

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Detection of Tobamoviruses and Survey on Contamination Rate in Commercial Pepper Seeds Using Gelatin Particle Agglutination Test (젤라틴입자응집반응법을 이용한 국내 시판 고추종자의 Tobamovirus 검출 및 오염률 조사)

  • 한정헌;장태호;이철호;김영호;나용준
    • Research in Plant Disease
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    • v.7 no.3
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    • pp.170-174
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    • 2001
  • Gelatin particle agglutination test (GPAT) was optimized for detection of Tobamovirus and contamination of the virus in commercial pepper seeds was evaluated. The optimum concentration of ${\gamma}$-globulin G, specific to tobacco mosaic virus pepper strain, was 100 ug/ml. The sensitivity of GPAT for the detection of Tobamovirus in pepper seeds was as high as enzyme-linked immunosorbent and dot immunoblotting assays. Optimum dilution ranges of the seed extract for GPAT was 5-25 folds. Using the optimized GPAT with above conditions, the rate of Tobamovirus contamination in seeds was turned out to be average of 79.1%.

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Use of Gelatin Particle Agglutination Test for the Detection of Cymbidium mosaic virus in Cattleya Plants

  • Han, Jung-Heon;Jeong, Hyoo-Won;La, Yong-Joon
    • The Plant Pathology Journal
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    • v.17 no.6
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    • pp.325-328
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    • 2001
  • Gelatin particle agglutination test (GPAT) was used to detect Cymbidum mosaic virus (CymMV) in Cattleya plants. Gelatin particles were coated with purified anti-CymMV immunoglobulin of 25-100 $\mu\textrm{g}$/ml and were subjected to several different concentrations of purified CyMfV as well as varying dilutions of orchid leaf extracts. The GPAT detected purified CymMV up to a minimum concentration of 10 $\mu\textrm{g}$/ml. CymMV was detected from crude sap extract of infected Cattleya leaves and roots up to 1:51,200 and 1:25,600 dilutions, respectively. However, the optimum range of leaf and root sap dilutions was between 50-100. Non-specific reactions were not encountered from any of the healthy orchid plants tested. The entire GPAT process was completed within 2-3 hours. This test was found to be very useful for the detection of CymMV in orchids because it is sensitive, economical, and easy to perform.

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