Isolation of a novel herpesvirus from a Pacific white-sided dolphin
During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin ( Lagenorhynchus obliquidens ), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of...
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Published in | Archives of virology Vol. 158; no. 3; pp. 695 - 699 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Vienna
Springer Vienna
01.03.2013
Springer Nature B.V |
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Abstract | During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (
Lagenorhynchus obliquidens
), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6 %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily
Alphaherpesvirinae
and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757 bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus
Varicellovirus
. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins. |
---|---|
AbstractList | During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (
Lagenorhynchus obliquidens
), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6 %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily
Alphaherpesvirinae
and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757 bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus
Varicellovirus
. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins. During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (Lagenorhynchus obliquidens), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6 %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily Alphaherpesvirinae and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757 bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus Varicellovirus. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins. During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (Lagenorhynchus obliquidens), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6Â %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily Alphaherpesvirinae and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757Â bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus Varicellovirus. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins.[PUBLICATION ABSTRACT] During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (Lagenorhynchus obliquidens), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6 %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily Alphaherpesvirinae and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757 bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus Varicellovirus. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins.During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (Lagenorhynchus obliquidens), a cytopathic effect was observed. Polymerase chain reaction with a set of herpesvirus consensus primers yielded a fragment of the expected size. Nucleotide sequencing of the product indicated that the isolated virus was closely related to an alphaherpesvirus detected in a bottlenose dolphin in the United States, but the sequence identity at the protein level was low (86.6 %). Phylogenetic analysis of the encoded sequence confirmed that the new isolate belonged to the subfamily Alphaherpesvirinae and clustered together with other cetacean alphaherpesviruses. The complete gene encoding glycoprotein B (2,757 bp) was amplified from the novel isolate; the encoded protein was compared with the corresponding protein of other herpesviruses, revealing that this virus belongs to the genus Varicellovirus. Taken together, these results suggest that this virus corresponds to a novel herpesvirus capable of infecting Pacific white-sided dolphins. |
Author | Shimojima, Masayuki Terada, Yutaka Kohyama, Kaoru Inoshima, Yasuo Noguchi, Keita Maeda, Ken Shimoda, Hiroshi |
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CitedBy_id | crossref_primary_10_3390_ani11071923 crossref_primary_10_1371_journal_pone_0311767 crossref_primary_10_1186_s12917_023_03677_2 crossref_primary_10_1186_s12917_020_02511_3 |
Cites_doi | 10.1007/s00705-010-0697-x 10.1016/j.jviromet.2006.03.033 10.3354/dao038053 10.1093/molbev/msr121 10.2108/ZSJ.28.126 10.1080/10635150390235520 10.7589/0090-3558-37.2.297 10.3354/dao02208 10.7589/0090-3558-45.4.895 10.1016/j.vetmic.2010.09.035 10.1128/JCM.34.7.1666-1671.1996 |
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Keywords | Harbor Porpoise Bottlenose Dolphin Inverse Polymerase Chain Reaction Primary Cell Culture Consensus Primer |
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Snippet | During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (
Lagenorhynchus obliquidens
), a cytopathic effect was... During establishment of primary cell culture from the kidney of a dead Pacific white-sided dolphin (Lagenorhynchus obliquidens), a cytopathic effect was... |
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SubjectTerms | Alphaherpesvirinae Alphaherpesvirinae - classification Alphaherpesvirinae - genetics Alphaherpesvirinae - isolation & purification Alphaherpesvirus Amino acids Animals Biomedical and Life Sciences Biomedicine Brief Report Cell culture Cells, Cultured Cetacea classification Cytopathogenic Effect, Viral cytopathogenicity DNA polymerase dolphins Dolphins & porpoises Dolphins - virology genes genetics Glycoproteins Glycoproteins - genetics Herpes viruses Herpesviridae Infections Herpesviridae Infections - veterinary Herpesviridae Infections - virology Herpesvirus Infectious Diseases isolation & purification kidneys Lagenorhynchus Lagenorhynchus obliquidens Marine Medical Microbiology Molecular Sequence Data nucleotide sequences Phylogenetics Phylogeny Polymerase chain reaction Proteins sequence analysis Sequence Analysis, DNA Tursiops truncatus United States Varicellovirus veterinary Veterinary medicine Viral Envelope Proteins Viral Envelope Proteins - genetics Virology viruses |
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Title | Isolation of a novel herpesvirus from a Pacific white-sided dolphin |
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