Skip to main content
Top
Published in: Virology Journal 1/2017

Open Access 01-12-2017 | Research

Structure and transcription of the Helicoverpa armigera densovirus (HaDV2) genome and its expression strategy in LD652 cells

Authors: Pengjun Xu, Robert I. Graham, Kenneth Wilson, Kongming Wu

Published in: Virology Journal | Issue 1/2017

Login to get access

Abstract

Background

Densoviruses (DVs) are highly pathogenic to their hosts. However, we previously reported a mutualistic DV (HaDV2). Very little was known about the characteristics of this virus, so herein we undertook a series of experiments to explore the molecular biology of HaDV2 further.

Results

Phylogenetic analysis showed that HaDV2 was similar to members of the genus Iteradensovirus. However, compared to current members of the genus Iteradensovirus, the sequence identity of HaDV2 is less than 44% at the nucleotide-level, and lower than 36, 28 and 19% at the amino-acid-level of VP, NS1 and NS2 proteins, respectively. Moreover, NS1 and NS2 proteins from HaDV2 were smaller than those from other iteradensoviruses due to their shorter N-terminal sequences. Two transcripts of about 2.2 kb coding for the NS proteins and the VP proteins were identified by Northern Blot and RACE analysis. Using specific anti-NS1 and anti-NS2 antibodies, Western Blot analysis revealed a 78 kDa and a 48 kDa protein, respectively. Finally, the localization of both NS1 and NS2 proteins within the cell nucleus was determined by using Green Fluorescent Protein (GFP) labelling.

Conclusion

The genome organization, terminal hairpin structure, transcription and expression strategies as well as the mutualistic relationship with its host, suggested that HaDV2 was a novel member of the genus Iteradensovirus within the subfamily Densovirinae.
Appendix
Available only for authorised users
Literature
1.
go back to reference Berns KI, Bergoin M, Bloom M, Lederman M, Muzyczka N, Siegl G, et al. Parvoviridae: VIth report of international committee on taxonomy of viruses. Arch Virol. 1995;10(Suppl):169–78. Berns KI, Bergoin M, Bloom M, Lederman M, Muzyczka N, Siegl G, et al. Parvoviridae: VIth report of international committee on taxonomy of viruses. Arch Virol. 1995;10(Suppl):169–78.
2.
go back to reference Cotmore SF, Agbandje-McKenna M, Chiorini JA, Mukha DV, Pintel DJ, Qiu J, et al. The family Parvoviridae. Arch Virol. 2014;159:1239–47.CrossRefPubMed Cotmore SF, Agbandje-McKenna M, Chiorini JA, Mukha DV, Pintel DJ, Qiu J, et al. The family Parvoviridae. Arch Virol. 2014;159:1239–47.CrossRefPubMed
3.
go back to reference Dhar AK, Robles-Sikisaka R, Saksmerprome V, Lakshman DK. Biology, genome organization, and evolution of parvoviruses in marine shrimp. Adv Virus Res. 2014;89:85–139.CrossRefPubMed Dhar AK, Robles-Sikisaka R, Saksmerprome V, Lakshman DK. Biology, genome organization, and evolution of parvoviruses in marine shrimp. Adv Virus Res. 2014;89:85–139.CrossRefPubMed
4.
go back to reference Amargier A, Vago C, Meynadier G. Histopathological study of a new type of viral disease demonstrated in the Lepidoptera Galleria mellonella. Arch Gesamte Virusforsch. 1965;15:659–67.CrossRefPubMed Amargier A, Vago C, Meynadier G. Histopathological study of a new type of viral disease demonstrated in the Lepidoptera Galleria mellonella. Arch Gesamte Virusforsch. 1965;15:659–67.CrossRefPubMed
5.
go back to reference Hu Y, Zheng J, Lizuka T, Bando H. A densovirus newly isolated from the smoky-brown cockroach Periplaneta fuliginosa. Arch Virol. 1994;138:365–72.CrossRefPubMed Hu Y, Zheng J, Lizuka T, Bando H. A densovirus newly isolated from the smoky-brown cockroach Periplaneta fuliginosa. Arch Virol. 1994;138:365–72.CrossRefPubMed
6.
go back to reference O’Neill SL, Kittayapong P, Braig HR, Andreadis TG, Gonzalez JP, Tesh RB. Insect densoviruses may be widespread in mosquito cell lines. J Gen Virol. 1995;76:2067–74.CrossRefPubMed O’Neill SL, Kittayapong P, Braig HR, Andreadis TG, Gonzalez JP, Tesh RB. Insect densoviruses may be widespread in mosquito cell lines. J Gen Virol. 1995;76:2067–74.CrossRefPubMed
7.
go back to reference Rivers CF, Longworth JF. A nonoccluded virus of Junonia coenia (Nymphalidae: Lepidoptera). J Invertebr Pathol. 1972;20:369–70.CrossRef Rivers CF, Longworth JF. A nonoccluded virus of Junonia coenia (Nymphalidae: Lepidoptera). J Invertebr Pathol. 1972;20:369–70.CrossRef
8.
go back to reference Vago C, Quiot JM, Luciani J. Infection of lepidopteran tissue culture with the purified virus of the densonucleus. C R Acad Sci Hebd Seances Acad Sci D. 1966;263:799–800.PubMed Vago C, Quiot JM, Luciani J. Infection of lepidopteran tissue culture with the purified virus of the densonucleus. C R Acad Sci Hebd Seances Acad Sci D. 1966;263:799–800.PubMed
9.
go back to reference Meynardier G, Vago C, Atger P. Virose d’un type inhabituel chez le lepidoptere Galleria mellonella L. Rev Zool Agric Appl. 1964;63:207–9. Meynardier G, Vago C, Atger P. Virose d’un type inhabituel chez le lepidoptere Galleria mellonella L. Rev Zool Agric Appl. 1964;63:207–9.
10.
11.
go back to reference Safeena MP, Tyagi A, Rai P, Karunasagar I. Complete nucleic acid sequence of Penaeus monodon densovirus (PmDNV) from India. Virus Res. 2010;150:1–11.CrossRefPubMed Safeena MP, Tyagi A, Rai P, Karunasagar I. Complete nucleic acid sequence of Penaeus monodon densovirus (PmDNV) from India. Virus Res. 2010;150:1–11.CrossRefPubMed
12.
go back to reference van Munster M, Dullemans AM, Verbeek M, van den Heuvel JF, Reinbold C, Brault V, et al. Characterization of a new densovirus infecting the green peach aphid Myzus persicae. J Invertebr Pathol. 2003;84:6–14.CrossRefPubMed van Munster M, Dullemans AM, Verbeek M, van den Heuvel JF, Reinbold C, Brault V, et al. Characterization of a new densovirus infecting the green peach aphid Myzus persicae. J Invertebr Pathol. 2003;84:6–14.CrossRefPubMed
13.
go back to reference Baquerizo-Audiot E, Abd-Alla A, Jousset FX, Cousserans F, Tijssen P, Bergoin M. Structure and expression strategy of the genome of Culex pipiens densovirus, a mosquito densovirus with an ambisense organization. J Virol. 2009;83:6863–73.CrossRefPubMedPubMedCentral Baquerizo-Audiot E, Abd-Alla A, Jousset FX, Cousserans F, Tijssen P, Bergoin M. Structure and expression strategy of the genome of Culex pipiens densovirus, a mosquito densovirus with an ambisense organization. J Virol. 2009;83:6863–73.CrossRefPubMedPubMedCentral
14.
go back to reference Guo H, Zhang J, Hu Y. Complete sequence and organization of Periplaneta fuliginosa densovirus genome. Acta Virol. 2000;44:315–22.PubMed Guo H, Zhang J, Hu Y. Complete sequence and organization of Periplaneta fuliginosa densovirus genome. Acta Virol. 2000;44:315–22.PubMed
15.
go back to reference Tijssen P, Li Y, El-Far M, Szelei J, Letarte M, Zadori Z. Organization and expression strategy of the ambisense genome of densonucleosis virus of Galleria mellonella. J Virol. 2003;77:10357–65.CrossRefPubMedPubMedCentral Tijssen P, Li Y, El-Far M, Szelei J, Letarte M, Zadori Z. Organization and expression strategy of the ambisense genome of densonucleosis virus of Galleria mellonella. J Virol. 2003;77:10357–65.CrossRefPubMedPubMedCentral
16.
go back to reference van Munster M, Dullemans AM, Verbeek M, van den Heuvel JF, Reinbold C, Brault V, et al. A new virus infecting Myzus persicae has a genome organization similar to the species of the genus Densovirus. J Gen Virol. 2003;84:165–72.CrossRefPubMed van Munster M, Dullemans AM, Verbeek M, van den Heuvel JF, Reinbold C, Brault V, et al. A new virus infecting Myzus persicae has a genome organization similar to the species of the genus Densovirus. J Gen Virol. 2003;84:165–72.CrossRefPubMed
17.
go back to reference Wang J, Zhang J, Jiang H, Liu C, Yi F, Hu Y. Nucleotide sequence and genomic organization of a newly isolated densovirus infecting Dendrolimus punctatus. J Gen Virol. 2005;86:2169–73.CrossRefPubMed Wang J, Zhang J, Jiang H, Liu C, Yi F, Hu Y. Nucleotide sequence and genomic organization of a newly isolated densovirus infecting Dendrolimus punctatus. J Gen Virol. 2005;86:2169–73.CrossRefPubMed
18.
go back to reference Zhai YG, Lv XJ, Sun XH, Fu SH, Gong ZD, Fen Y, et al. Isolation and characterization of the full coding sequence of a novel densovirus from the mosquito Culex pipiens pallens. J Gen Virol. 2008;89:195–9.CrossRefPubMed Zhai YG, Lv XJ, Sun XH, Fu SH, Gong ZD, Fen Y, et al. Isolation and characterization of the full coding sequence of a novel densovirus from the mosquito Culex pipiens pallens. J Gen Virol. 2008;89:195–9.CrossRefPubMed
19.
20.
go back to reference Bossin H, Fournier P, Royer C, Barry P, Cerutti P, Gimenez S, et al. Junonia coenia densovirus-based vectors for stable transgene expression in Sf9 cells: influence of the densovirus sequences on genomic integration. J Virol. 2003;77:11060–71.CrossRefPubMedPubMedCentral Bossin H, Fournier P, Royer C, Barry P, Cerutti P, Gimenez S, et al. Junonia coenia densovirus-based vectors for stable transgene expression in Sf9 cells: influence of the densovirus sequences on genomic integration. J Virol. 2003;77:11060–71.CrossRefPubMedPubMedCentral
21.
go back to reference Corsini J, Afanasiev B, Maxwell IH, Carlson JO. Autonomous parvovirus and densovirus gene vectors. Adv Virus Res. 1996;47:303–51.CrossRefPubMed Corsini J, Afanasiev B, Maxwell IH, Carlson JO. Autonomous parvovirus and densovirus gene vectors. Adv Virus Res. 1996;47:303–51.CrossRefPubMed
22.
go back to reference Giraud C, Devauchelle G, Bergoin M. The densovirus of Junonia coenia (Jc DNV) as an insect cell expression vector. Virology. 1992;186:207–18.CrossRefPubMed Giraud C, Devauchelle G, Bergoin M. The densovirus of Junonia coenia (Jc DNV) as an insect cell expression vector. Virology. 1992;186:207–18.CrossRefPubMed
23.
go back to reference Hu L, Zhang L, Shen C, Lu J, Zhang J, Hu Y. The densovirus of Periplaneta fuliginosa (PfDNV) as an insect vector for persistent foreign gene expression in vivo. Biochem Biophys Res Commun. 2007;358:976–82.CrossRefPubMed Hu L, Zhang L, Shen C, Lu J, Zhang J, Hu Y. The densovirus of Periplaneta fuliginosa (PfDNV) as an insect vector for persistent foreign gene expression in vivo. Biochem Biophys Res Commun. 2007;358:976–82.CrossRefPubMed
24.
go back to reference Jiang H, Zhang J, Wang J, Yang B, Liu C, Lu J, et al. Genetic engineering of Periplaneta fuliginosa densovirus as an improved biopesticide. Arch Virol. 2007;152:383–94.CrossRefPubMed Jiang H, Zhang J, Wang J, Yang B, Liu C, Lu J, et al. Genetic engineering of Periplaneta fuliginosa densovirus as an improved biopesticide. Arch Virol. 2007;152:383–94.CrossRefPubMed
25.
go back to reference Mutuel D, Ravallec M, Chabi B, Multeau C, Salmon JM, Fournier P, et al. Pathogenesis of Junonia coenia densovirus in Spodoptera frugiperda: a route of infection that leads to hypoxia. Virology. 2010;403:137–44.CrossRefPubMed Mutuel D, Ravallec M, Chabi B, Multeau C, Salmon JM, Fournier P, et al. Pathogenesis of Junonia coenia densovirus in Spodoptera frugiperda: a route of infection that leads to hypoxia. Virology. 2010;403:137–44.CrossRefPubMed
26.
go back to reference Suzuki Y, Niu G, Hughes GL, Rasgon JL. A viral over-expression system for the major malaria mosquito Anopheles gambiae. Sci Rep. 2014;4:5127.PubMedPubMedCentral Suzuki Y, Niu G, Hughes GL, Rasgon JL. A viral over-expression system for the major malaria mosquito Anopheles gambiae. Sci Rep. 2014;4:5127.PubMedPubMedCentral
27.
go back to reference El-Far M, Szelei J, Yu Q, Fediere G, Bergoin M, Tijssen P. Organization of the ambisense genome of the Helicoverpa armigera densovirus. J Virol. 2012;86:7024.CrossRefPubMedPubMedCentral El-Far M, Szelei J, Yu Q, Fediere G, Bergoin M, Tijssen P. Organization of the ambisense genome of the Helicoverpa armigera densovirus. J Virol. 2012;86:7024.CrossRefPubMedPubMedCentral
28.
go back to reference Xu P, Cheng P, Liu Z, Li Y, Murphy RW, Wu K. Complete genome sequence of a monosense densovirus infecting the cotton bollworm, Helicoverpa armigera. J Virol. 2012;86:10909.CrossRefPubMedPubMedCentral Xu P, Cheng P, Liu Z, Li Y, Murphy RW, Wu K. Complete genome sequence of a monosense densovirus infecting the cotton bollworm, Helicoverpa armigera. J Virol. 2012;86:10909.CrossRefPubMedPubMedCentral
29.
go back to reference Xu P, Liu Y, Graham RI, Wilson K, Wu K. Densovirus is a mutualistic symbiont of a global crop pest (Helicoverpa armigera) and protects against a baculovirus and Bt biopesticide. PLoS Pathog. 2014;10:e1004490.CrossRefPubMedPubMedCentral Xu P, Liu Y, Graham RI, Wilson K, Wu K. Densovirus is a mutualistic symbiont of a global crop pest (Helicoverpa armigera) and protects against a baculovirus and Bt biopesticide. PLoS Pathog. 2014;10:e1004490.CrossRefPubMedPubMedCentral
30.
go back to reference Wang Y, Abd-Alla AM, Bossin H, Li Y, Bergoin M. Analysis of the transcription strategy of the Junonia coenia densovirus (JcDNV) genome. Virus Res. 2013;174:101–7.CrossRefPubMed Wang Y, Abd-Alla AM, Bossin H, Li Y, Bergoin M. Analysis of the transcription strategy of the Junonia coenia densovirus (JcDNV) genome. Virus Res. 2013;174:101–7.CrossRefPubMed
31.
go back to reference Thompson JD, Higgins DG, Gibson TJ. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res. 1994;22:4673–80.CrossRefPubMedPubMedCentral Thompson JD, Higgins DG, Gibson TJ. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res. 1994;22:4673–80.CrossRefPubMedPubMedCentral
32.
33.
go back to reference Liu C, Gao Y, Ning C, Wu K, Oppert B, Guo Y. Antisera-mediated in vivo reduction of Cry1Ac toxicity in Helicoverpa armigera. J Insect Physiol. 2010;56:718–24.CrossRefPubMed Liu C, Gao Y, Ning C, Wu K, Oppert B, Guo Y. Antisera-mediated in vivo reduction of Cry1Ac toxicity in Helicoverpa armigera. J Insect Physiol. 2010;56:718–24.CrossRefPubMed
34.
go back to reference Wei W, Gai Z, Ai H, Wu W, Yang Y, Peng J, et al. Baculovirus infection triggers a shift from amino acid starvation-induced autophagy to apoptosis. PLoS One. 2012;7:e37457.CrossRefPubMedPubMedCentral Wei W, Gai Z, Ai H, Wu W, Yang Y, Peng J, et al. Baculovirus infection triggers a shift from amino acid starvation-induced autophagy to apoptosis. PLoS One. 2012;7:e37457.CrossRefPubMedPubMedCentral
35.
go back to reference Fediere G, Li Y, Zadori Z, Szelei J, Tijssen P. Genome organization of Casphalia extranea densovirus, a new iteravirus. Virology. 2002;292:299–308.CrossRefPubMed Fediere G, Li Y, Zadori Z, Szelei J, Tijssen P. Genome organization of Casphalia extranea densovirus, a new iteravirus. Virology. 2002;292:299–308.CrossRefPubMed
36.
go back to reference Li Y, Zadori Z, Bando H, Dubuc R, Fediere G, Szelei J, et al. Genome organization of the densovirus from Bombyx mori (BmDNV-1) and enzyme activity of its capsid. J Gen Virol. 2001;82:2821–5.CrossRefPubMed Li Y, Zadori Z, Bando H, Dubuc R, Fediere G, Szelei J, et al. Genome organization of the densovirus from Bombyx mori (BmDNV-1) and enzyme activity of its capsid. J Gen Virol. 2001;82:2821–5.CrossRefPubMed
37.
go back to reference Yu Q, Fediere G, Abd-Alla A, Bergoin M, Tijssen P. Iteravirus-like genome organization of a densovirus from Sibine fusca Stoll. J Virol. 2012;86:8897–8.CrossRefPubMedPubMedCentral Yu Q, Fediere G, Abd-Alla A, Bergoin M, Tijssen P. Iteravirus-like genome organization of a densovirus from Sibine fusca Stoll. J Virol. 2012;86:8897–8.CrossRefPubMedPubMedCentral
39.
go back to reference Yu Q, Tijssen P. Iteradensovirus from the monarch butterfly, Danaus plexippus plexippus. Genome Announc. 2014;2:e00321–14.PubMedPubMedCentral Yu Q, Tijssen P. Iteradensovirus from the monarch butterfly, Danaus plexippus plexippus. Genome Announc. 2014;2:e00321–14.PubMedPubMedCentral
40.
go back to reference Yu Q, Tijssen P. Gene expression of five different iteradensoviruses: Bombyx mori densovirus, Casphalia extranea densovirus, Papilio polyxenes densovirus, Sibine fusca densovirus, and Danaus plexippus densovirus. J Virol. 2014;88:12152–7.CrossRefPubMedPubMedCentral Yu Q, Tijssen P. Gene expression of five different iteradensoviruses: Bombyx mori densovirus, Casphalia extranea densovirus, Papilio polyxenes densovirus, Sibine fusca densovirus, and Danaus plexippus densovirus. J Virol. 2014;88:12152–7.CrossRefPubMedPubMedCentral
41.
go back to reference Fediere G, El-Far M, Li Y, Bergoin M, Tijssen P. Expression strategy of densonucleosis virus from Mythimna loreyi. Virology. 2004;320:181–9.CrossRefPubMed Fediere G, El-Far M, Li Y, Bergoin M, Tijssen P. Expression strategy of densonucleosis virus from Mythimna loreyi. Virology. 2004;320:181–9.CrossRefPubMed
42.
go back to reference Yamagishi J, Hu Y, Zheng J, Bando H. Genome organization and mRNA structure of Periplaneta fuliginosa densovirus imply alternative splicing involvement in viral gene expression. Arch Virol. 1999;144:2111–24.CrossRefPubMed Yamagishi J, Hu Y, Zheng J, Bando H. Genome organization and mRNA structure of Periplaneta fuliginosa densovirus imply alternative splicing involvement in viral gene expression. Arch Virol. 1999;144:2111–24.CrossRefPubMed
43.
go back to reference Tang S, Song X, Xue L, Wang X, Wang X, Xu P, et al. Characterization and distribution analysis of a densovirus infecting Myzus persicae nicotianae (Hemiptera: Aphididae). J Econ Entomol. 2016;109:580–7.CrossRefPubMed Tang S, Song X, Xue L, Wang X, Wang X, Xu P, et al. Characterization and distribution analysis of a densovirus infecting Myzus persicae nicotianae (Hemiptera: Aphididae). J Econ Entomol. 2016;109:580–7.CrossRefPubMed
Metadata
Title
Structure and transcription of the Helicoverpa armigera densovirus (HaDV2) genome and its expression strategy in LD652 cells
Authors
Pengjun Xu
Robert I. Graham
Kenneth Wilson
Kongming Wu
Publication date
01-12-2017
Publisher
BioMed Central
Published in
Virology Journal / Issue 1/2017
Electronic ISSN: 1743-422X
DOI
https://doi.org/10.1186/s12985-017-0691-y

Other articles of this Issue 1/2017

Virology Journal 1/2017 Go to the issue
Live Webinar | 27-06-2024 | 18:00 (CEST)

Keynote webinar | Spotlight on medication adherence

Live: Thursday 27th June 2024, 18:00-19:30 (CEST)

WHO estimates that half of all patients worldwide are non-adherent to their prescribed medication. The consequences of poor adherence can be catastrophic, on both the individual and population level.

Join our expert panel to discover why you need to understand the drivers of non-adherence in your patients, and how you can optimize medication adherence in your clinics to drastically improve patient outcomes.

Prof. Kevin Dolgin
Prof. Florian Limbourg
Prof. Anoop Chauhan
Developed by: Springer Medicine
Obesity Clinical Trial Summary

At a glance: The STEP trials

A round-up of the STEP phase 3 clinical trials evaluating semaglutide for weight loss in people with overweight or obesity.

Developed by: Springer Medicine

Highlights from the ACC 2024 Congress

Year in Review: Pediatric cardiology

Watch Dr. Anne Marie Valente present the last year's highlights in pediatric and congenital heart disease in the official ACC.24 Year in Review session.

Year in Review: Pulmonary vascular disease

The last year's highlights in pulmonary vascular disease are presented by Dr. Jane Leopold in this official video from ACC.24.

Year in Review: Valvular heart disease

Watch Prof. William Zoghbi present the last year's highlights in valvular heart disease from the official ACC.24 Year in Review session.

Year in Review: Heart failure and cardiomyopathies

Watch this official video from ACC.24. Dr. Biykem Bozkurt discusses last year's major advances in heart failure and cardiomyopathies.