Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.

Israeli acute paralysis virus (IAPV) is a widespread RNA virus of honey bees that has been linked with colony losses. Here we describe the transmission, prevalence, and genetic traits of this virus, along with host transcriptional responses to infections. Further, we present RNAi-based strategies fo...

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Main Authors: Yan Ping Chen, Jeffery S Pettis, Miguel Corona, Wei Ping Chen, Cong Jun Li, Marla Spivak, P Kirk Visscher, Gloria DeGrandi-Hoffman, Humberto Boncristiani, Yan Zhao, Dennis vanEngelsdorp, Keith Delaplane, Leellen Solter, Francis Drummond, Matthew Kramer, W Ian Lipkin, Gustavo Palacios, Michele C Hamilton, Barton Smith, Shao Kang Huang, Huo Qing Zheng, Ji Lian Li, Xuan Zhang, Ai Fen Zhou, Li You Wu, Ji Zhong Zhou, Myeong-L Lee, Erica W Teixeira, Zhi Guo Li, Jay D Evans
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-07-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC4117608?pdf=render
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spelling doaj-2061d730ff094dcebf664fd144754f282020-11-25T02:38:52ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742014-07-01107e100426110.1371/journal.ppat.1004261Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.Yan Ping ChenJeffery S PettisMiguel CoronaWei Ping ChenCong Jun LiMarla SpivakP Kirk VisscherGloria DeGrandi-HoffmanHumberto BoncristianiYan ZhaoDennis vanEngelsdorpKeith DelaplaneLeellen SolterFrancis DrummondMatthew KramerW Ian LipkinGustavo PalaciosMichele C HamiltonBarton SmithShao Kang HuangHuo Qing ZhengJi Lian LiXuan ZhangAi Fen ZhouLi You WuJi Zhong ZhouMyeong-L LeeErica W TeixeiraZhi Guo LiJay D EvansIsraeli acute paralysis virus (IAPV) is a widespread RNA virus of honey bees that has been linked with colony losses. Here we describe the transmission, prevalence, and genetic traits of this virus, along with host transcriptional responses to infections. Further, we present RNAi-based strategies for limiting an important mechanism used by IAPV to subvert host defenses. Our study shows that IAPV is established as a persistent infection in honey bee populations, likely enabled by both horizontal and vertical transmission pathways. The phenotypic differences in pathology among different strains of IAPV found globally may be due to high levels of standing genetic variation. Microarray profiles of host responses to IAPV infection revealed that mitochondrial function is the most significantly affected biological process, suggesting that viral infection causes significant disturbance in energy-related host processes. The expression of genes involved in immune pathways in adult bees indicates that IAPV infection triggers active immune responses. The evidence that silencing an IAPV-encoded putative suppressor of RNAi reduces IAPV replication suggests a functional assignment for a particular genomic region of IAPV and closely related viruses from the Family Dicistroviridae, and indicates a novel therapeutic strategy for limiting multiple honey bee viruses simultaneously and reducing colony losses due to viral diseases. We believe that the knowledge and insights gained from this study will provide a new platform for continuing studies of the IAPV-host interactions and have positive implications for disease management that will lead to mitigation of escalating honey bee colony losses worldwide.http://europepmc.org/articles/PMC4117608?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yan Ping Chen
Jeffery S Pettis
Miguel Corona
Wei Ping Chen
Cong Jun Li
Marla Spivak
P Kirk Visscher
Gloria DeGrandi-Hoffman
Humberto Boncristiani
Yan Zhao
Dennis vanEngelsdorp
Keith Delaplane
Leellen Solter
Francis Drummond
Matthew Kramer
W Ian Lipkin
Gustavo Palacios
Michele C Hamilton
Barton Smith
Shao Kang Huang
Huo Qing Zheng
Ji Lian Li
Xuan Zhang
Ai Fen Zhou
Li You Wu
Ji Zhong Zhou
Myeong-L Lee
Erica W Teixeira
Zhi Guo Li
Jay D Evans
spellingShingle Yan Ping Chen
Jeffery S Pettis
Miguel Corona
Wei Ping Chen
Cong Jun Li
Marla Spivak
P Kirk Visscher
Gloria DeGrandi-Hoffman
Humberto Boncristiani
Yan Zhao
Dennis vanEngelsdorp
Keith Delaplane
Leellen Solter
Francis Drummond
Matthew Kramer
W Ian Lipkin
Gustavo Palacios
Michele C Hamilton
Barton Smith
Shao Kang Huang
Huo Qing Zheng
Ji Lian Li
Xuan Zhang
Ai Fen Zhou
Li You Wu
Ji Zhong Zhou
Myeong-L Lee
Erica W Teixeira
Zhi Guo Li
Jay D Evans
Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
PLoS Pathogens
author_facet Yan Ping Chen
Jeffery S Pettis
Miguel Corona
Wei Ping Chen
Cong Jun Li
Marla Spivak
P Kirk Visscher
Gloria DeGrandi-Hoffman
Humberto Boncristiani
Yan Zhao
Dennis vanEngelsdorp
Keith Delaplane
Leellen Solter
Francis Drummond
Matthew Kramer
W Ian Lipkin
Gustavo Palacios
Michele C Hamilton
Barton Smith
Shao Kang Huang
Huo Qing Zheng
Ji Lian Li
Xuan Zhang
Ai Fen Zhou
Li You Wu
Ji Zhong Zhou
Myeong-L Lee
Erica W Teixeira
Zhi Guo Li
Jay D Evans
author_sort Yan Ping Chen
title Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
title_short Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
title_full Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
title_fullStr Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
title_full_unstemmed Israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
title_sort israeli acute paralysis virus: epidemiology, pathogenesis and implications for honey bee health.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2014-07-01
description Israeli acute paralysis virus (IAPV) is a widespread RNA virus of honey bees that has been linked with colony losses. Here we describe the transmission, prevalence, and genetic traits of this virus, along with host transcriptional responses to infections. Further, we present RNAi-based strategies for limiting an important mechanism used by IAPV to subvert host defenses. Our study shows that IAPV is established as a persistent infection in honey bee populations, likely enabled by both horizontal and vertical transmission pathways. The phenotypic differences in pathology among different strains of IAPV found globally may be due to high levels of standing genetic variation. Microarray profiles of host responses to IAPV infection revealed that mitochondrial function is the most significantly affected biological process, suggesting that viral infection causes significant disturbance in energy-related host processes. The expression of genes involved in immune pathways in adult bees indicates that IAPV infection triggers active immune responses. The evidence that silencing an IAPV-encoded putative suppressor of RNAi reduces IAPV replication suggests a functional assignment for a particular genomic region of IAPV and closely related viruses from the Family Dicistroviridae, and indicates a novel therapeutic strategy for limiting multiple honey bee viruses simultaneously and reducing colony losses due to viral diseases. We believe that the knowledge and insights gained from this study will provide a new platform for continuing studies of the IAPV-host interactions and have positive implications for disease management that will lead to mitigation of escalating honey bee colony losses worldwide.
url http://europepmc.org/articles/PMC4117608?pdf=render
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