Quantification of Cyprinid Herpesvirus 3 in Environmental Water by Using an External Standard Virus
Author(s) -
Mie N. Honjo,
Toshifumi Minamoto,
Kazuaki Matsui,
Kimiko Uchii,
Hiroki Yamanaka,
Alata A. Suzuki,
Yukihiro Kohmatsu,
Takaji Iida,
Zen’ichiro Kawabata
Publication year - 2009
Publication title -
applied and environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.552
H-Index - 324
eISSN - 1070-6291
pISSN - 0099-2240
DOI - 10.1128/aem.02011-09
Subject(s) - ultrafiltration (renal) , biology , virus , detection limit , common carp , virology , chromatography , chemistry , cyprinus , fish <actinopterygii> , fishery , biochemistry
Cyprinid herpesvirus 3 (CyHV-3), a lethal DNA virus that spreads in natural lakes and rivers, infects common carp and koi. We established a quantification method for CyHV-3 that includes a viral concentration method and quantitative PCR combined with an external standard virus. Viral concentration methods were compared using the cation-coated filter and ultrafiltration methods. The recovery of virus-like particles was similar for the two methods (cation-coated filter method, 44% ± 19%,n = 3; ultrafiltration method, 50% ± 3%,n = 3); however, the former method was faster and more suitable for routine determinations. The recovery of seeded CyHV-3 based on the cation-coated filter method varied by more than 3 orders of magnitude among the water samples. The recovery yield of CyHV-3 was significantly correlated with that of the seeded λ phage, and the average ratio of λ to the CyHV-3 recovery yield was 1.4, indicating that λ is useful as an external standard virus for determining the recovery yield of CyHV-3. Therefore, to quantify CyHV-3 in environmental water, a known amount of λ was added as an external standard virus to each water sample. Using this method, CyHV-3 DNA was detected in 6 of the 10 (60%) types of environmental water tested; the highest concentration of CyHV-3 DNA was 2 × 105 copies liter−1 . The lowest recovery limit of CyHV-3 DNA was 60 copies liter−1 . This method is practical for monitoring CyHV-3 abundance in environmental water.
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