Skip to main content
Top
Published in: Archives of Virology 8/2013

01-08-2013 | Original Article

Interactions between the P6 and P5-1 proteins of southern rice black-streaked dwarf fijivirus in yeast and plant cells

Authors: Jing Li, Jin Xue, Heng-Mu Zhang, Jian Yang, Ming-Fang Lv, Li Xie, Yuan Meng, Pei-Pei Li, Jian-Ping Chen

Published in: Archives of Virology | Issue 8/2013

Login to get access

Abstract

Southern rice black-streaked dwarf virus (SRBSDV) is a recently described member of the genus Fijivirus, family Reoviridae. The roles of the proteins encoded by the SRBSDV genome have rarely been studied. In a yeast two-hybrid (YTH) assay in which SRBSDV P6, a putatively multifunctional protein, was used as bait and an SRBSDV cDNA library was used as prey, there was a strong interaction between the P6 and P5-1 proteins. The interaction was confirmed by bimolecular fluorescence complement (BiFC) assay in plant cells. YTH analysis using truncated mutants showed that the N-terminal region (amino acids 9-231) of P5-1 is necessary for binding P5-1 to P6 and that the N-terminal fragment (amino acids 1-93) of P6 is necessary for its interaction with P5-1. SRBSDV P5-1 formed granules positioned at the cell periphery in Nicotiana benthamiana leaves; P6 was present in both the cytoplasm and the nucleus and formed punctate bodies associated with the cell periphery. Immunogold labeling showed that both P6 and P5-1 localized within viroplasms in infected cells of rice plants. These results suggest that the interaction between P5-1 and P6 of SRBSDV may be involved in the formation of viroplasms.
Literature
1.
go back to reference Zhang HM, Yang J, Chen JP, Adams MJ (2008) A black-streaked dwarf disease on rice in China is caused by a novel fijivirus. Arch Virol 153:1893–1898CrossRefPubMed Zhang HM, Yang J, Chen JP, Adams MJ (2008) A black-streaked dwarf disease on rice in China is caused by a novel fijivirus. Arch Virol 153:1893–1898CrossRefPubMed
2.
go back to reference Zhou GH, Wen JJ, Cai DJ, Li P, Xu DL, Zhang SG (2008) Southern rice black-streaked dwarf virus: A new proposed Fijivirus species in the family Reoviridae. Chin Sci Bull 53:3677–3685CrossRef Zhou GH, Wen JJ, Cai DJ, Li P, Xu DL, Zhang SG (2008) Southern rice black-streaked dwarf virus: A new proposed Fijivirus species in the family Reoviridae. Chin Sci Bull 53:3677–3685CrossRef
3.
go back to reference Boccardo G, Milne RG (1984) Plant reovirus group. CMI/AAB, descriptions of plant viruses, No. 294. Association of Applied Biologists, Wellesbourne, Warwick Boccardo G, Milne RG (1984) Plant reovirus group. CMI/AAB, descriptions of plant viruses, No. 294. Association of Applied Biologists, Wellesbourne, Warwick
4.
go back to reference Attoui H, Mertens PPC, Becnel J, Belaganahalli S, Bergoin M et al (2012) Family Reoviridae. In: King AMQ, Adams MJ, Carstens EJ, Lefkowitz EJ (eds) Virus taxonomy: ninth report of the international committee on taxonomy of viruses. Elsevier Academic Press, London, pp 541–637 Attoui H, Mertens PPC, Becnel J, Belaganahalli S, Bergoin M et al (2012) Family Reoviridae. In: King AMQ, Adams MJ, Carstens EJ, Lefkowitz EJ (eds) Virus taxonomy: ninth report of the international committee on taxonomy of viruses. Elsevier Academic Press, London, pp 541–637
5.
go back to reference Luisoni E, Lovisolo O, Kitagawa Y, Shikata E (1973) Serological relationship between maize rough dwarf virus and rice black streaked dwarf virus. Virology 52:281–283CrossRefPubMed Luisoni E, Lovisolo O, Kitagawa Y, Shikata E (1973) Serological relationship between maize rough dwarf virus and rice black streaked dwarf virus. Virology 52:281–283CrossRefPubMed
6.
go back to reference Zhang HM, Chen JP, Lei JL, Adams MJ (2001) Sequence analysis shows that a dwarfing disease on rice, wheat and maize in China is caused by rice black-streaked dwarf virus. Eur J Plant Pathol 107:563–567CrossRef Zhang HM, Chen JP, Lei JL, Adams MJ (2001) Sequence analysis shows that a dwarfing disease on rice, wheat and maize in China is caused by rice black-streaked dwarf virus. Eur J Plant Pathol 107:563–567CrossRef
7.
go back to reference Zhang HM, Chen JP, Adams MJ (2001) Molecular characterization of segments 1 to 6 of rice black-streaked dwarf virus from China provides the complete genome. Arch Virol 146:2331–2339CrossRefPubMed Zhang HM, Chen JP, Adams MJ (2001) Molecular characterization of segments 1 to 6 of rice black-streaked dwarf virus from China provides the complete genome. Arch Virol 146:2331–2339CrossRefPubMed
8.
go back to reference Marzachi C, Boccardo G, Milne R, Isogai M, Uyeda I (1995) Genome structure and variability of fijiviruses. Semin Virol 6:103–108CrossRef Marzachi C, Boccardo G, Milne R, Isogai M, Uyeda I (1995) Genome structure and variability of fijiviruses. Semin Virol 6:103–108CrossRef
9.
go back to reference Hoang AT, Zhang HM, Yang J, Chen JP, Hébrard E, Zhou GH, Vien NV, Cheng JA (2011) Identification, characterization and distribution of southern rice black-streaked dwarf virus in Vietnam. Plant Dis 95:1063–1069CrossRef Hoang AT, Zhang HM, Yang J, Chen JP, Hébrard E, Zhou GH, Vien NV, Cheng JA (2011) Identification, characterization and distribution of southern rice black-streaked dwarf virus in Vietnam. Plant Dis 95:1063–1069CrossRef
10.
go back to reference Li YZ, Cao Y, Zhou Q, Guo HM, Ou GC (2012) The efficiency of southern rice black-streaked dwarf virus transmission by the vector Sogatella furcifera to different host plant species. J Integr Agric 11:621–627CrossRef Li YZ, Cao Y, Zhou Q, Guo HM, Ou GC (2012) The efficiency of southern rice black-streaked dwarf virus transmission by the vector Sogatella furcifera to different host plant species. J Integr Agric 11:621–627CrossRef
11.
go back to reference Arneodo JD, Guzman FA, Conci LR, Laguna IG, Truol GA (2002) Transmission features of Mal de Rio Cuarto virus in wheat by its planthopper vector Delphacodes kuscheli. Ann Appl Biol 141:195–200CrossRef Arneodo JD, Guzman FA, Conci LR, Laguna IG, Truol GA (2002) Transmission features of Mal de Rio Cuarto virus in wheat by its planthopper vector Delphacodes kuscheli. Ann Appl Biol 141:195–200CrossRef
12.
go back to reference Wang ZH, Fang SG, Xu JL, Sun LY, Li DW, Yu JL (2003) Sequence analysis of the complete genome of rice black-streaked dwarf virus isolated from maize with rough dwarf disease. Virus Genes 27:163–168CrossRefPubMed Wang ZH, Fang SG, Xu JL, Sun LY, Li DW, Yu JL (2003) Sequence analysis of the complete genome of rice black-streaked dwarf virus isolated from maize with rough dwarf disease. Virus Genes 27:163–168CrossRefPubMed
13.
go back to reference Isogai M, Uyeda I, Lee BC (1998) Detection and assignment of proteins encoded by rice black streaked dwarf fijivirus S7, S8, S9 and S10. J Gen Virol 79:1487–1494PubMed Isogai M, Uyeda I, Lee BC (1998) Detection and assignment of proteins encoded by rice black streaked dwarf fijivirus S7, S8, S9 and S10. J Gen Virol 79:1487–1494PubMed
14.
go back to reference Liu HJ, Wei CH, Zhong YH, Li Y (2007) Rice black-streaked dwarf virus minor core protein P8 is dimeric protein and represses transcription in tobacco protoplasts. FEBS Lett 581:2534–2540CrossRefPubMed Liu HJ, Wei CH, Zhong YH, Li Y (2007) Rice black-streaked dwarf virus minor core protein P8 is dimeric protein and represses transcription in tobacco protoplasts. FEBS Lett 581:2534–2540CrossRefPubMed
15.
go back to reference Liu HJ, Wei CH, Zhong YW, Li Y (2007) Rice black-streaked dwarf virus outer capsid protein P10 has self-interactions and forms oligomeric complexes in solution. Virus Res 127:34–42CrossRefPubMed Liu HJ, Wei CH, Zhong YW, Li Y (2007) Rice black-streaked dwarf virus outer capsid protein P10 has self-interactions and forms oligomeric complexes in solution. Virus Res 127:34–42CrossRefPubMed
16.
go back to reference Zhang CZ, Liu YY, Liu LY, Lou ZY, Zhang HY, Miao HQ, Hu XB, Pang YP, Qiu BS (2008) Rice black streaked dwarf virus P9–1, an α-helical protein, self-interacts and forms viroplasms in vivo. J Gen Virol 89:1770–1776CrossRefPubMed Zhang CZ, Liu YY, Liu LY, Lou ZY, Zhang HY, Miao HQ, Hu XB, Pang YP, Qiu BS (2008) Rice black streaked dwarf virus P9–1, an α-helical protein, self-interacts and forms viroplasms in vivo. J Gen Virol 89:1770–1776CrossRefPubMed
17.
go back to reference Wang Q, Tao T, Zhang YJ, Wu WQ, Li DW, Yu JL, Han CG (2011) Rice black-streaked dwarf virus P6 self-interacts to form punctate, viroplasm-like structures in the cytoplasm and recruits viroplasm-associated protein P9–1. Virol J 8:24CrossRefPubMed Wang Q, Tao T, Zhang YJ, Wu WQ, Li DW, Yu JL, Han CG (2011) Rice black-streaked dwarf virus P6 self-interacts to form punctate, viroplasm-like structures in the cytoplasm and recruits viroplasm-associated protein P9–1. Virol J 8:24CrossRefPubMed
18.
go back to reference Akita F, Higashiura A, Shimizu T, Pu Y, Suzuki M, Uehara-Ichiki T, Sasaya T, Kanamaru S, Arisaka F, Tsukihara T, Nakagawa A, Omura T (2012) Crystallographic analysis reveals octamerization of viroplasm matrix protein P9–1 of rice black streaked dwarf virus. J Virol 86:746–756CrossRefPubMed Akita F, Higashiura A, Shimizu T, Pu Y, Suzuki M, Uehara-Ichiki T, Sasaya T, Kanamaru S, Arisaka F, Tsukihara T, Nakagawa A, Omura T (2012) Crystallographic analysis reveals octamerization of viroplasm matrix protein P9–1 of rice black streaked dwarf virus. J Virol 86:746–756CrossRefPubMed
19.
go back to reference Zhou GH, Xu DL, Li HP (2004) Identification of rice black streaked dwarf virus infecting rice in Guangdong. In: Peng YL (ed) Proceedings of the conference on Chinese plant pathology. Agricultural Scientech Press, Beijing, pp 210–212 Zhou GH, Xu DL, Li HP (2004) Identification of rice black streaked dwarf virus infecting rice in Guangdong. In: Peng YL (ed) Proceedings of the conference on Chinese plant pathology. Agricultural Scientech Press, Beijing, pp 210–212
20.
go back to reference Wang Q, Yang J, Zhou GH, Zhang HM, Chen JP, Adams MJ (2010) The complete genome sequence of two isolates of southern rice black-streaked dwarf virus, a new member of the genus Fijivirus. J Phytopathol 158:733–737CrossRef Wang Q, Yang J, Zhou GH, Zhang HM, Chen JP, Adams MJ (2010) The complete genome sequence of two isolates of southern rice black-streaked dwarf virus, a new member of the genus Fijivirus. J Phytopathol 158:733–737CrossRef
21.
go back to reference Zhang LD, Wang ZH, Wang XB, Zhang WH, Li DW, Han CG, Zhai YF, Yu JL (2005) Two virus-encoded RNA silencing suppressors, P14 of beet necrotic yellow vein virus and S6 of rice black streak dwarf virus. Chin Sci Bull 50:305–310 Zhang LD, Wang ZH, Wang XB, Zhang WH, Li DW, Han CG, Zhai YF, Yu JL (2005) Two virus-encoded RNA silencing suppressors, P14 of beet necrotic yellow vein virus and S6 of rice black streak dwarf virus. Chin Sci Bull 50:305–310
22.
go back to reference Liu Y, Jia DS, Chen HY, Chen Q, Xie LH, Wu ZJ, Wei TY (2011) The P7–1 protein of southern rice black-streaked dwarf virus, a fijivirus, induces the formation of tubular structures in insect cells. Arch Virol 156:1729–1736CrossRefPubMed Liu Y, Jia DS, Chen HY, Chen Q, Xie LH, Wu ZJ, Wei TY (2011) The P7–1 protein of southern rice black-streaked dwarf virus, a fijivirus, induces the formation of tubular structures in insect cells. Arch Virol 156:1729–1736CrossRefPubMed
23.
go back to reference Lu YH, Zhang JF, Xiong RY, Xu QF, Zhou YJ (2011) Identification of an RNA silencing suppressor encoded by southern rice black-streaked dwarf virus S6. Sci Agric Sin 44:2909–2917 Lu YH, Zhang JF, Xiong RY, Xu QF, Zhou YJ (2011) Identification of an RNA silencing suppressor encoded by southern rice black-streaked dwarf virus S6. Sci Agric Sin 44:2909–2917
24.
go back to reference Fang S, Wang Z, Han C, Li D, Yu J (2007) Genomic segment 6 of rice black-streaked dwarf virus encodes for a viral non-structural protein. Acta Agric Boreali Sinica 22:5–8 Fang S, Wang Z, Han C, Li D, Yu J (2007) Genomic segment 6 of rice black-streaked dwarf virus encodes for a viral non-structural protein. Acta Agric Boreali Sinica 22:5–8
25.
go back to reference Ueda S, Masuta C, Uyeda I (1997) Hypothesis on particle structure and assembly of rice dwarf phytoreovirus: interactions among multiple structural proteins. J Gen Virol 78:3135–3140PubMed Ueda S, Masuta C, Uyeda I (1997) Hypothesis on particle structure and assembly of rice dwarf phytoreovirus: interactions among multiple structural proteins. J Gen Virol 78:3135–3140PubMed
26.
go back to reference Chowdhury SR, Savithri HS (2011) Interaction of Sesbania mosaic virus movement protein with the coat protein-implications for viral spread. FEBS Lett 278:257–272 Chowdhury SR, Savithri HS (2011) Interaction of Sesbania mosaic virus movement protein with the coat protein-implications for viral spread. FEBS Lett 278:257–272
27.
go back to reference Huh SU, Kim MJ, Ham BK, Paek KH (2011) A zinc finger protein Tsip1 controls cucumber mosaic virus infection by interacting with the replication complex on vacuolar membranes of the tobacco plant. New Phytol 191:746–762CrossRefPubMed Huh SU, Kim MJ, Ham BK, Paek KH (2011) A zinc finger protein Tsip1 controls cucumber mosaic virus infection by interacting with the replication complex on vacuolar membranes of the tobacco plant. New Phytol 191:746–762CrossRefPubMed
28.
go back to reference Lu Y, Yan F, Guo W, Zheng H, Lin L, Peng J, Adams MJ, Chen J (2011) Garlic virus X 11-kDa protein granules move within the cytoplasm and traffic a host protein normally found in the nucleolus. Mol Plant Pathol 12:666–676CrossRefPubMed Lu Y, Yan F, Guo W, Zheng H, Lin L, Peng J, Adams MJ, Chen J (2011) Garlic virus X 11-kDa protein granules move within the cytoplasm and traffic a host protein normally found in the nucleolus. Mol Plant Pathol 12:666–676CrossRefPubMed
29.
go back to reference Sparkes IA, Runions J, Kearns A, Hawes C (2006) Rapid, transient expression of fluorescent fusion proteins in tobacco plants and generation of stably transformed plants. Nat Protoc 1:2019–2025CrossRefPubMed Sparkes IA, Runions J, Kearns A, Hawes C (2006) Rapid, transient expression of fluorescent fusion proteins in tobacco plants and generation of stably transformed plants. Nat Protoc 1:2019–2025CrossRefPubMed
30.
go back to reference Walter M, Chaban C, Schütze K, Batistic O, Weckermann K, Näke C, Blazevic D, Grefen C, Schumacher K, Oecking C, Harter K, Kudla J (2004) Visualization of protein interactions in living plant cells using bimolecular fluorescence complementation. Plant J 40:428–438CrossRefPubMed Walter M, Chaban C, Schütze K, Batistic O, Weckermann K, Näke C, Blazevic D, Grefen C, Schumacher K, Oecking C, Harter K, Kudla J (2004) Visualization of protein interactions in living plant cells using bimolecular fluorescence complementation. Plant J 40:428–438CrossRefPubMed
31.
go back to reference Maroniche GA, Mongelli VC, Peralta AV, Distéfano AJ, Llauger G, Taboga OA, Hopp EH, del Vas M (2010) Functional and biochemical properties of Mal de Río Cuarto virus (Fijivirus, Reoviridae) P9–1 viroplasm protein show further similarities to animal reovirus counterparts. Virus Res 152:96–103CrossRefPubMed Maroniche GA, Mongelli VC, Peralta AV, Distéfano AJ, Llauger G, Taboga OA, Hopp EH, del Vas M (2010) Functional and biochemical properties of Mal de Río Cuarto virus (Fijivirus, Reoviridae) P9–1 viroplasm protein show further similarities to animal reovirus counterparts. Virus Res 152:96–103CrossRefPubMed
32.
go back to reference Silvestri LS, Taraporewala ZF, Patton JT (2004) Rotavirus replication: plus-sense templates for double-stranded RNA synthesis are made in viroplasms. J Virol 78:7763–7774CrossRefPubMed Silvestri LS, Taraporewala ZF, Patton JT (2004) Rotavirus replication: plus-sense templates for double-stranded RNA synthesis are made in viroplasms. J Virol 78:7763–7774CrossRefPubMed
33.
go back to reference Netherton C, Moffat K, Brooks E, Wileman T (2007) A guide to viral inclusions, membrane rearrangements, factories, and viroplasm produced during virus replication. Adv Virus Res 70:101–182CrossRefPubMed Netherton C, Moffat K, Brooks E, Wileman T (2007) A guide to viral inclusions, membrane rearrangements, factories, and viroplasm produced during virus replication. Adv Virus Res 70:101–182CrossRefPubMed
34.
go back to reference Netherton CL, Wileman T (2011) Virus factories, double membrane vesicles and viroplasm generated in animal cells. Curr Opin Virol 1:381–387CrossRefPubMed Netherton CL, Wileman T (2011) Virus factories, double membrane vesicles and viroplasm generated in animal cells. Curr Opin Virol 1:381–387CrossRefPubMed
35.
go back to reference Guzmán FA, Arneodo JD, Pons AB, Truol GA, Luque AV, Conci LR (2010) Immunodetection and subcellular localization of Mal de Río Cuarto virus P9–1 protein in infected plant and insect host cells. Virus Genes 41:111–117CrossRefPubMed Guzmán FA, Arneodo JD, Pons AB, Truol GA, Luque AV, Conci LR (2010) Immunodetection and subcellular localization of Mal de Río Cuarto virus P9–1 protein in infected plant and insect host cells. Virus Genes 41:111–117CrossRefPubMed
36.
go back to reference Maroniche GA, Mongelli VC, Llauger G, Alfonso V, Taboga O, del Vas M (2012) In vivo subcellular localization of Mal de Río Cuarto virus (MRCV) non-structural proteins in insect cells reveals their putative functions. Virology 430:81–89CrossRefPubMed Maroniche GA, Mongelli VC, Llauger G, Alfonso V, Taboga O, del Vas M (2012) In vivo subcellular localization of Mal de Río Cuarto virus (MRCV) non-structural proteins in insect cells reveals their putative functions. Virology 430:81–89CrossRefPubMed
37.
go back to reference Gietz RD, Woods RA (2002) Transformation of yeast by lithium acetate/single-stranded carrier DNA/polyethylene glycol method. Methods Enzymol 350:87–96CrossRefPubMed Gietz RD, Woods RA (2002) Transformation of yeast by lithium acetate/single-stranded carrier DNA/polyethylene glycol method. Methods Enzymol 350:87–96CrossRefPubMed
38.
go back to reference Jia D, Chen H, Zheng A, Chen Q, Liu Q, Xie L, Wu Z, Wei T (2012) Development of an insect vector cell culture and RNA interference system to investigate the functional role of fijivirus replication protein. J Virol 86:5800–5807CrossRefPubMed Jia D, Chen H, Zheng A, Chen Q, Liu Q, Xie L, Wu Z, Wei T (2012) Development of an insect vector cell culture and RNA interference system to investigate the functional role of fijivirus replication protein. J Virol 86:5800–5807CrossRefPubMed
Metadata
Title
Interactions between the P6 and P5-1 proteins of southern rice black-streaked dwarf fijivirus in yeast and plant cells
Authors
Jing Li
Jin Xue
Heng-Mu Zhang
Jian Yang
Ming-Fang Lv
Li Xie
Yuan Meng
Pei-Pei Li
Jian-Ping Chen
Publication date
01-08-2013
Publisher
Springer Vienna
Published in
Archives of Virology / Issue 8/2013
Print ISSN: 0304-8608
Electronic ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-013-1660-4

Other articles of this Issue 8/2013

Archives of Virology 8/2013 Go to the issue
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 discuss last year's major advances in heart failure and cardiomyopathies.