Skip to main content
Erschienen in: Archives of Virology 1/2019

09.10.2018 | Original Article

Molecular characterization and analysis of conserved potyviral motifs in bean common mosaic virus (BCMV) for RNAi-mediated protection

verfasst von: Elizabeth A. Worrall, Alice C. Hayward, Stephen J. Fletcher, Neena Mitter

Erschienen in: Archives of Virology | Ausgabe 1/2019

Einloggen, um Zugang zu erhalten

Abstract

Australian bean common mosaic virus (BCMV) isolates were sequenced, and the sequences were compared to global BCMV and bean common mosaic necrosis virus (BCMNV) sequences and analysed for conserved potyviral motifs to generate in planta RNA-interference (RNAi) resistance. Thirty-nine out of 40 previously reported potyvirus motifs were conserved among all 77 BCMV/BCMNV sequences. Two RNAi target regions were selected for dsRNA construct design, covering 920 bp of the nuclease inclusion b (NIb) protein and 461 bp of the coat protein (CP). In silico prediction of the effectiveness of these constructs for broad-spectrum defence against the 77 BCMV and BCMNV sequences was done via analysis of putative 21-nucleotide (nt) and 22-nt small-interfering RNAs (siRNAs) generated from the target regions. The effectiveness of both constructs for siRNA generation and BCMV RNAi-mediated resistance was validated in Nicotiana benthamiana transient assays.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat International Service for the Acquisition of Agri-Biotech Applications (ISAAA) (2018) Bean (Phaseolus vulgaris) GM Events International Service for the Acquisition of Agri-Biotech Applications (ISAAA) (2018) Bean (Phaseolus vulgaris) GM Events
2.
Zurück zum Zitat Aleman-Verdaguer M-E, Goudou-Urbino C, Dubern J, Beachy RN, Fauquet C (1997) Analysis of the sequence diversity of the P1, HC, P3, NIb and CP genomic regions of several yam mosaic potyvirus isolates: implications for the intraspecies molecular diversity of potyviruses. J Gen Virol 78:1253–1264CrossRefPubMed Aleman-Verdaguer M-E, Goudou-Urbino C, Dubern J, Beachy RN, Fauquet C (1997) Analysis of the sequence diversity of the P1, HC, P3, NIb and CP genomic regions of several yam mosaic potyvirus isolates: implications for the intraspecies molecular diversity of potyviruses. J Gen Virol 78:1253–1264CrossRefPubMed
3.
Zurück zum Zitat Anuradha C, Balasubramanian V, Selvarajan R (2015) Sequence motif comparison and homology modeling of helper component proteinase (HC–Pro) of banana bract mosaic virus. Anuradha C, Balasubramanian V, Selvarajan R (2015) Sequence motif comparison and homology modeling of helper component proteinase (HC–Pro) of banana bract mosaic virus.
4.
6.
Zurück zum Zitat Bhadramurthy V, Bhat A (2009) Biological and molecular characterization of Bean common mosaic virus associated with vanilla in India. Indian J Virol 20:70–77 Bhadramurthy V, Bhat A (2009) Biological and molecular characterization of Bean common mosaic virus associated with vanilla in India. Indian J Virol 20:70–77
7.
Zurück zum Zitat Bonfim K, Faria JC, Nogueira EO, Mendes ÉA, Aragão FJ (2007) RNAi-mediated resistance to Bean golden mosaic virus in genetically engineered common bean (Phaseolus vulgaris). Mol Plant-microbe Interact 20:717–726CrossRefPubMed Bonfim K, Faria JC, Nogueira EO, Mendes ÉA, Aragão FJ (2007) RNAi-mediated resistance to Bean golden mosaic virus in genetically engineered common bean (Phaseolus vulgaris). Mol Plant-microbe Interact 20:717–726CrossRefPubMed
9.
Zurück zum Zitat Bravo E, Calvert LA, Morales FJ (2008) The complete nucleotide sequence of the genomic RNA of bean common mosaic virus strain nl4. Rev Acad Colomb Cienc Exactas 32:37–46 Bravo E, Calvert LA, Morales FJ (2008) The complete nucleotide sequence of the genomic RNA of bean common mosaic virus strain nl4. Rev Acad Colomb Cienc Exactas 32:37–46
10.
Zurück zum Zitat Brosnan C, Mitter N, Christie M, Smith N, Waterhouse P, Carroll B (2007) Nuclear gene silencing directs reception of long-distance mRNA silencing in Arabidopsis. Proc Natl Acad Sci 104:14741–14746CrossRefPubMedPubMedCentral Brosnan C, Mitter N, Christie M, Smith N, Waterhouse P, Carroll B (2007) Nuclear gene silencing directs reception of long-distance mRNA silencing in Arabidopsis. Proc Natl Acad Sci 104:14741–14746CrossRefPubMedPubMedCentral
11.
Zurück zum Zitat Burand JP, Hunter WB (2013) RNAi: Future in insect management. J Invertebr Pathol 112:S68–S74CrossRefPubMed Burand JP, Hunter WB (2013) RNAi: Future in insect management. J Invertebr Pathol 112:S68–S74CrossRefPubMed
12.
Zurück zum Zitat Cheng G, Dong M, Xu Q, Peng L, Yang Z, Wei T, Xu J (2017) Dissecting the molecular mechanism of the subcellular localization and cell-to-cell movement of the sugarcane mosaic virus P3N-PIPO. Sci Rep 7:9868CrossRefPubMedPubMedCentral Cheng G, Dong M, Xu Q, Peng L, Yang Z, Wei T, Xu J (2017) Dissecting the molecular mechanism of the subcellular localization and cell-to-cell movement of the sugarcane mosaic virus P3N-PIPO. Sci Rep 7:9868CrossRefPubMedPubMedCentral
13.
Zurück zum Zitat Damayanti T, Susilo D, Nurlaelah S, Sartiami D, Okuno T, Mise K (2008) First report of Bean common mosaic virus in yam bean [Pachyrhizus erosus (L.) Urban] in Indonesia. J Gen Plant Pathol 74:438–442CrossRef Damayanti T, Susilo D, Nurlaelah S, Sartiami D, Okuno T, Mise K (2008) First report of Bean common mosaic virus in yam bean [Pachyrhizus erosus (L.) Urban] in Indonesia. J Gen Plant Pathol 74:438–442CrossRef
15.
Zurück zum Zitat El-Sawy MA, Mohamed HAE, Elsharkawy MM (2013) Serological and molecular characterisations of the Egyptian isolate of Bean common mosaic virus. Arch Phytopathol Plant Protect 47:1–13 El-Sawy MA, Mohamed HAE, Elsharkawy MM (2013) Serological and molecular characterisations of the Egyptian isolate of Bean common mosaic virus. Arch Phytopathol Plant Protect 47:1–13
16.
Zurück zum Zitat Flores-Estévez N, Acosta-Gallegos J, Silva-Rosales L (2003) Bean common mosaic virus and Bean common mosaic necrosis virus in Mexico. Plant disease 87:21–25CrossRefPubMed Flores-Estévez N, Acosta-Gallegos J, Silva-Rosales L (2003) Bean common mosaic virus and Bean common mosaic necrosis virus in Mexico. Plant disease 87:21–25CrossRefPubMed
17.
Zurück zum Zitat Gleave AP (1992) A versatile binary vector system with a T-DNA organisational structure conducive to efficient integration of cloned DNA into the plant genome. Plant Mol Biol 20:1203–1207CrossRefPubMed Gleave AP (1992) A versatile binary vector system with a T-DNA organisational structure conducive to efficient integration of cloned DNA into the plant genome. Plant Mol Biol 20:1203–1207CrossRefPubMed
18.
Zurück zum Zitat Gong D, Wang J-H, Lin Z-S, Zhang S-Y, Zhang Y-L, Yu N-T, Xiong Z, Liu Z-X (2011) Genomic sequencing and analysis of Chilli ringspot virus, a novel potyvirus. Virus Genes 43:439–444CrossRefPubMed Gong D, Wang J-H, Lin Z-S, Zhang S-Y, Zhang Y-L, Yu N-T, Xiong Z, Liu Z-X (2011) Genomic sequencing and analysis of Chilli ringspot virus, a novel potyvirus. Virus Genes 43:439–444CrossRefPubMed
19.
20.
Zurück zum Zitat Guyatt K, Proll D, Menssen A, Davidson A (1996) The complete nucleotide sequence of bean yellow mosaic potyvirus RNA. Arch Virol 141:1231–1246CrossRefPubMed Guyatt K, Proll D, Menssen A, Davidson A (1996) The complete nucleotide sequence of bean yellow mosaic potyvirus RNA. Arch Virol 141:1231–1246CrossRefPubMed
21.
Zurück zum Zitat Hamid A, Ahmad M, Padder B, Shah M, Saleem S, Sofi T, Mir A (2013) Pathogenic and coat protein characterization confirming the occurrence of Bean common mosaic virus on common bean (Phaseolus vulgaris) in Kashmir, India. Phytoparasitica 42:1–6 Hamid A, Ahmad M, Padder B, Shah M, Saleem S, Sofi T, Mir A (2013) Pathogenic and coat protein characterization confirming the occurrence of Bean common mosaic virus on common bean (Phaseolus vulgaris) in Kashmir, India. Phytoparasitica 42:1–6
22.
Zurück zum Zitat Ivanov K, Eskelin K, Lõhmus A, Mäkinen K (2014) Molecular and cellular mechanisms underlying potyvirus infection. J Gen Virol 95:1415–1429CrossRefPubMed Ivanov K, Eskelin K, Lõhmus A, Mäkinen K (2014) Molecular and cellular mechanisms underlying potyvirus infection. J Gen Virol 95:1415–1429CrossRefPubMed
23.
Zurück zum Zitat Ivanov KI, Mäkinen K (2012) Coat proteins, host factors and plant viral replication. Curr Opin Virol 2:712–718CrossRefPubMed Ivanov KI, Mäkinen K (2012) Coat proteins, host factors and plant viral replication. Curr Opin Virol 2:712–718CrossRefPubMed
24.
Zurück zum Zitat Kamenova I, Lohuis H, Peters D (2002) Loss of aphid transmissibility of plum pox virus isolates. Biotechnol Biotechnol Equip 16:48–54CrossRef Kamenova I, Lohuis H, Peters D (2002) Loss of aphid transmissibility of plum pox virus isolates. Biotechnol Biotechnol Equip 16:48–54CrossRef
25.
Zurück zum Zitat Kelly J, Afanador L, Haley S (1995) Pyramiding genes for resistance to Bean common mosaic virus. Euphytica 82:207–212CrossRef Kelly J, Afanador L, Haley S (1995) Pyramiding genes for resistance to Bean common mosaic virus. Euphytica 82:207–212CrossRef
26.
Zurück zum Zitat Knierim D, Menzel W, Winter S (2017) Analysis of the complete genome sequence of euphorbia ringspot virus, an atypical member of the genus Potyvirus. Arch Virol 162:291–293CrossRefPubMed Knierim D, Menzel W, Winter S (2017) Analysis of the complete genome sequence of euphorbia ringspot virus, an atypical member of the genus Potyvirus. Arch Virol 162:291–293CrossRefPubMed
27.
Zurück zum Zitat Koch A, Biedenkopf D, Furch A, Weber L, Rossbach O, Abdellatef E, Linicus L, Johannsmeier J, Jelonek L, Goesmann A (2016) An RNAi-based control of Fusarium graminearum infections through spraying of long dsRNAs involves a plant passage and is controlled by the fungal silencing machinery. PLoS Pathog 12:e1005901CrossRefPubMedPubMedCentral Koch A, Biedenkopf D, Furch A, Weber L, Rossbach O, Abdellatef E, Linicus L, Johannsmeier J, Jelonek L, Goesmann A (2016) An RNAi-based control of Fusarium graminearum infections through spraying of long dsRNAs involves a plant passage and is controlled by the fungal silencing machinery. PLoS Pathog 12:e1005901CrossRefPubMedPubMedCentral
28.
Zurück zum Zitat Kwapata K, Nguyen T, Sticklen M (2012) Genetic transformation of common bean (Phaseolus vulgaris L.) with the gus color marker, the bar herbicide resistance, and the barley (Hordeum vulgare) HVA1 drought tolerance genes. Int J Agron 2012:1–8CrossRef Kwapata K, Nguyen T, Sticklen M (2012) Genetic transformation of common bean (Phaseolus vulgaris L.) with the gus color marker, the bar herbicide resistance, and the barley (Hordeum vulgare) HVA1 drought tolerance genes. Int J Agron 2012:1–8CrossRef
29.
Zurück zum Zitat Li F, Xu D, Abad J, Li R (2012) Phylogenetic relationships of closely related potyviruses infecting sweet potato determined by genomic characterization of Sweet potato virus G and Sweet potato virus 2. Virus Genes 45:118–125CrossRefPubMed Li F, Xu D, Abad J, Li R (2012) Phylogenetic relationships of closely related potyviruses infecting sweet potato determined by genomic characterization of Sweet potato virus G and Sweet potato virus 2. Virus Genes 45:118–125CrossRefPubMed
30.
Zurück zum Zitat Li Y, Jia A, Qiao Y, Xiang J, Zhang Y, Wang W (2017) Virome analysis of lily plants reveals a new potyvirus. Arch Virol 163:1–4 Li Y, Jia A, Qiao Y, Xiang J, Zhang Y, Wang W (2017) Virome analysis of lily plants reveals a new potyvirus. Arch Virol 163:1–4
31.
Zurück zum Zitat Li YQ, Liu ZP, Yang YS, Zhao B, Fan ZF, Wan P (2014) First report of Bean common mosaic virus infecting Azuki bean (Vigna angularis Ohwi & Ohashi) in China. Plant Disease 98:1017CrossRefPubMed Li YQ, Liu ZP, Yang YS, Zhao B, Fan ZF, Wan P (2014) First report of Bean common mosaic virus infecting Azuki bean (Vigna angularis Ohwi & Ohashi) in China. Plant Disease 98:1017CrossRefPubMed
32.
Zurück zum Zitat Liang WX, Song LM, Tian GZ, Li HF, Fan ZF (2006) The genomic sequence of Wisteria vein mosaic virus and its similarities with other potyviruses. Arch Virol 151:2311–2319CrossRefPubMed Liang WX, Song LM, Tian GZ, Li HF, Fan ZF (2006) The genomic sequence of Wisteria vein mosaic virus and its similarities with other potyviruses. Arch Virol 151:2311–2319CrossRefPubMed
33.
Zurück zum Zitat Lilley C, Davies L, Urwin P (2012) RNA interference in plant parasitic nematodes: a summary of the current status. Parasitology 139:630–640CrossRefPubMed Lilley C, Davies L, Urwin P (2012) RNA interference in plant parasitic nematodes: a summary of the current status. Parasitology 139:630–640CrossRefPubMed
34.
Zurück zum Zitat Lin J-J (1995) Electrotransformation of Agrobacterium. 171–178 Lin J-J (1995) Electrotransformation of Agrobacterium. 171–178
35.
Zurück zum Zitat Lopez-Moya J, Wang R, Pirone T (1999) Context of the coat protein DAG motif affects potyvirus transmissibility by aphids. J Gen Virol 80:3281–3288CrossRefPubMed Lopez-Moya J, Wang R, Pirone T (1999) Context of the coat protein DAG motif affects potyvirus transmissibility by aphids. J Gen Virol 80:3281–3288CrossRefPubMed
36.
Zurück zum Zitat Maillard P, Ciaudo C, Marchais A, Li Y, Jay F, Ding S, Voinnet O (2013) Antiviral RNA interference in mammalian cells. Science 342:235–238CrossRefPubMed Maillard P, Ciaudo C, Marchais A, Li Y, Jay F, Ding S, Voinnet O (2013) Antiviral RNA interference in mammalian cells. Science 342:235–238CrossRefPubMed
37.
Zurück zum Zitat Mangrauthia SK, Jain R, Praveen S (2008) Sequence motifs comparisons establish a functional portrait of a multifunctional protein HC-Pro from papaya ringspot potyvirus. J Plant Biochem Biotechnol 17:201–204CrossRefPubMedPubMedCentral Mangrauthia SK, Jain R, Praveen S (2008) Sequence motifs comparisons establish a functional portrait of a multifunctional protein HC-Pro from papaya ringspot potyvirus. J Plant Biochem Biotechnol 17:201–204CrossRefPubMedPubMedCentral
38.
Zurück zum Zitat Mann KS, Johnson KN, Dietzgen RG (2015) Cytorhabdovirus phosphoprotein shows RNA silencing suppressor activity in plants, but not in insect cells. Virology 476:413–418CrossRefPubMed Mann KS, Johnson KN, Dietzgen RG (2015) Cytorhabdovirus phosphoprotein shows RNA silencing suppressor activity in plants, but not in insect cells. Virology 476:413–418CrossRefPubMed
39.
Zurück zum Zitat Maoka T, Hataya T (2005) The complete nucleotide sequence and biotype variability of Papaya leaf distortion mosaic virus. Phytopathology 95:128–135CrossRefPubMed Maoka T, Hataya T (2005) The complete nucleotide sequence and biotype variability of Papaya leaf distortion mosaic virus. Phytopathology 95:128–135CrossRefPubMed
40.
Zurück zum Zitat Mishra R, Verma RK, Gaur RK (2015) Analysis of genome comparison of two Indian isolates of Cowpea aphid-borne mosaic virus from India. Virus Genes 51:306–309CrossRefPubMed Mishra R, Verma RK, Gaur RK (2015) Analysis of genome comparison of two Indian isolates of Cowpea aphid-borne mosaic virus from India. Virus Genes 51:306–309CrossRefPubMed
41.
Zurück zum Zitat Mitter N, Worrall EA, Robinson KE, Li P, Jain RG, Taochy C, Fletcher SJ, Carroll BJ, Lu G, Xu ZP (2017) Clay nanosheets for topical delivery of RNAi for sustained protection against plant viruses. Nat Plants 3:16207CrossRefPubMed Mitter N, Worrall EA, Robinson KE, Li P, Jain RG, Taochy C, Fletcher SJ, Carroll BJ, Lu G, Xu ZP (2017) Clay nanosheets for topical delivery of RNAi for sustained protection against plant viruses. Nat Plants 3:16207CrossRefPubMed
42.
Zurück zum Zitat Moghal S, Francki R (1976) Towards a system for the identification and classification of potyviruses: I. Serology and amino acid composition of six distinct viruses. Virology 73:350–362CrossRefPubMed Moghal S, Francki R (1976) Towards a system for the identification and classification of potyviruses: I. Serology and amino acid composition of six distinct viruses. Virology 73:350–362CrossRefPubMed
43.
Zurück zum Zitat Moradi Z, Mehrvar M, Nazifi E, Zakiaghl M (2017) Iranian johnsongrass mosaic virus: the complete genome sequence, molecular and biological characterization, and comparison of coat protein gene sequences. Virus Genes 53:77–88CrossRefPubMed Moradi Z, Mehrvar M, Nazifi E, Zakiaghl M (2017) Iranian johnsongrass mosaic virus: the complete genome sequence, molecular and biological characterization, and comparison of coat protein gene sequences. Virus Genes 53:77–88CrossRefPubMed
44.
Zurück zum Zitat Moura MF, Marubayashi JM, Mituti T, Gioria R, Kobori RF, Pavan MA, Krause-Sakate R (2012) Comparative analysis of coding region for the coat protein of PepYMV and PVY isolates collected in sweetpepper. Summa Phytopathol 38:93–96CrossRef Moura MF, Marubayashi JM, Mituti T, Gioria R, Kobori RF, Pavan MA, Krause-Sakate R (2012) Comparative analysis of coding region for the coat protein of PepYMV and PVY isolates collected in sweetpepper. Summa Phytopathol 38:93–96CrossRef
45.
Zurück zum Zitat Mukeshimana G, Paneda A, Rodríguez-Suárez C, Ferreira JJ, Giraldez R, Kelly JD (2005) Markers linked to the bc-3 gene conditioning resistance to bean common mosaic potyviruses in common bean. Euphytica 144:291–299CrossRef Mukeshimana G, Paneda A, Rodríguez-Suárez C, Ferreira JJ, Giraldez R, Kelly JD (2005) Markers linked to the bc-3 gene conditioning resistance to bean common mosaic potyviruses in common bean. Euphytica 144:291–299CrossRef
46.
Zurück zum Zitat Pasev G, Kostova D, Sofkova S (2014) Identification of genes for resistance to Bean common mosaic virus and Bean common mosaic necrosis virus in snap bean (Phaseolus vulgaris L.) breeding lines ssing conventional and molecular methods. J Phytopathol 162:19–25CrossRef Pasev G, Kostova D, Sofkova S (2014) Identification of genes for resistance to Bean common mosaic virus and Bean common mosaic necrosis virus in snap bean (Phaseolus vulgaris L.) breeding lines ssing conventional and molecular methods. J Phytopathol 162:19–25CrossRef
47.
Zurück zum Zitat Perotto MC, Pozzi EA, Celli MG, Luciani CE, Mitidieri MS, Conci VC (2018) Identification and characterization of a new potyvirus infecting cucurbits. Arch Virol 163:719–724CrossRefPubMed Perotto MC, Pozzi EA, Celli MG, Luciani CE, Mitidieri MS, Conci VC (2018) Identification and characterization of a new potyvirus infecting cucurbits. Arch Virol 163:719–724CrossRefPubMed
48.
Zurück zum Zitat Puli’uvea C, Khan S, Chang W-L, Valmonte G, Pearson MN, Higgins CM (2017) First complete genome sequence of vanilla mosaic strain of Dasheen mosaic virus isolated from the Cook Islands. Arch Virol 162:591–595CrossRefPubMed Puli’uvea C, Khan S, Chang W-L, Valmonte G, Pearson MN, Higgins CM (2017) First complete genome sequence of vanilla mosaic strain of Dasheen mosaic virus isolated from the Cook Islands. Arch Virol 162:591–595CrossRefPubMed
49.
Zurück zum Zitat Rajamäki M, Merits A, Rabenstein F, Andrejeva J, Paulin L, Kekarainen T, Kreuze J, Forster R, Valkonen J (1998) Biological, serological, and molecular differences among isolates of potato A potyvirus. Phytopathology 88:311–321CrossRefPubMed Rajamäki M, Merits A, Rabenstein F, Andrejeva J, Paulin L, Kekarainen T, Kreuze J, Forster R, Valkonen J (1998) Biological, serological, and molecular differences among isolates of potato A potyvirus. Phytopathology 88:311–321CrossRefPubMed
50.
51.
Zurück zum Zitat Rojas MR, Zerbini FM, Allison RF, Gilbertson RL, Lucas WJ (1997) Capsid protein and helper component-proteinase function as potyvirus cell-to-cell movement proteins. Virology 237:283–295CrossRefPubMed Rojas MR, Zerbini FM, Allison RF, Gilbertson RL, Lucas WJ (1997) Capsid protein and helper component-proteinase function as potyvirus cell-to-cell movement proteins. Virology 237:283–295CrossRefPubMed
52.
Zurück zum Zitat Saqib M, Jones RAC, Cayford B, Jones MGK (2005) First report of Bean common mosaic virus in Western Australia. Plant Pathol 54:563CrossRef Saqib M, Jones RAC, Cayford B, Jones MGK (2005) First report of Bean common mosaic virus in Western Australia. Plant Pathol 54:563CrossRef
53.
Zurück zum Zitat Saqib M, Nouri S, Cayford B, Jones RAC, Jones MGK (2010) Genome sequences and phylogenetic placement of two isolates of Bean common mosaic virus from Macroptilium atropurpureum in north-west Australia. Aust Plant Pathol Soc 39:184–191CrossRef Saqib M, Nouri S, Cayford B, Jones RAC, Jones MGK (2010) Genome sequences and phylogenetic placement of two isolates of Bean common mosaic virus from Macroptilium atropurpureum in north-west Australia. Aust Plant Pathol Soc 39:184–191CrossRef
54.
Zurück zum Zitat Sastry KS (2013) Mechanism of seed transmission. Seed-borne plant virus diseases. Springer, Heidelberg, pp 85–100CrossRef Sastry KS (2013) Mechanism of seed transmission. Seed-borne plant virus diseases. Springer, Heidelberg, pp 85–100CrossRef
55.
Zurück zum Zitat Sengooba TN, Spence NJ, Walkey DGA, Allen DJ, Femi Lana A (1997) The occurrence of Bean common mosaic necrosis virus in wild and forage legumes in Uganda. Plant Pathol 46:95–103CrossRef Sengooba TN, Spence NJ, Walkey DGA, Allen DJ, Femi Lana A (1997) The occurrence of Bean common mosaic necrosis virus in wild and forage legumes in Uganda. Plant Pathol 46:95–103CrossRef
56.
Zurück zum Zitat Shapter FM, Waters DL Genome walking T cereal genomics, pp 133–146 Shapter FM, Waters DL Genome walking T cereal genomics, pp 133–146
57.
Zurück zum Zitat Shukla DD, Frcnkel M, Ward CW (1991) Structure and function of the potyvirus genome with special reference to the coat protein coding region. Can J Plant Pathol 13:178–191CrossRef Shukla DD, Frcnkel M, Ward CW (1991) Structure and function of the potyvirus genome with special reference to the coat protein coding region. Can J Plant Pathol 13:178–191CrossRef
58.
Zurück zum Zitat Silbernagel MJ, Mink GI, Zhao RL, Zheng GY (2001) Phenotypic recombination between bean common mosaic and bean common mosaic necrosis potyviruses in vivo. Arch Virol 146:1007–1020CrossRefPubMed Silbernagel MJ, Mink GI, Zhao RL, Zheng GY (2001) Phenotypic recombination between bean common mosaic and bean common mosaic necrosis potyviruses in vivo. Arch Virol 146:1007–1020CrossRefPubMed
59.
Zurück zum Zitat Singh SP, Schwartz HF (2010) Breeding common bean for resistance to diseases: a review. Crop Sci 50:2199–2223CrossRef Singh SP, Schwartz HF (2010) Breeding common bean for resistance to diseases: a review. Crop Sci 50:2199–2223CrossRef
60.
Zurück zum Zitat Spence N, Walkey D (1995) Variation for pathogenicity among isolates of Bean common mosaic virus in Africa and a reinterpretation of the genetic relationship between cultivars of Phaseolus vulgaris and pathotypes of BCMV. Plant Pathol 44:527–546CrossRef Spence N, Walkey D (1995) Variation for pathogenicity among isolates of Bean common mosaic virus in Africa and a reinterpretation of the genetic relationship between cultivars of Phaseolus vulgaris and pathotypes of BCMV. Plant Pathol 44:527–546CrossRef
61.
Zurück zum Zitat Urchqui-Inchima S, Haenni A-L, Bernardi F (2001) Potyvirus proteins: a wealth of functions. Virus Res 74:157–175CrossRef Urchqui-Inchima S, Haenni A-L, Bernardi F (2001) Potyvirus proteins: a wealth of functions. Virus Res 74:157–175CrossRef
62.
Zurück zum Zitat Valli A, López-Moya JJ, García JA (2007) Recombination and gene duplication in the evolutionary diversification of P1 proteins in the family Potyviridae. J Gen Virol 88:1016–1028CrossRefPubMed Valli A, López-Moya JJ, García JA (2007) Recombination and gene duplication in the evolutionary diversification of P1 proteins in the family Potyviridae. J Gen Virol 88:1016–1028CrossRefPubMed
63.
Zurück zum Zitat Velasco L, Salem N, Willemsen A, Lapidot M, Mansour AN, Rubio L, Galipienso L (2016) Genetic variation and evolutionary forces shaping Cucumber vein yellowing virus populations: risk of emergence of virulent isolates in Europe. Plant Pathol 65:847–856CrossRef Velasco L, Salem N, Willemsen A, Lapidot M, Mansour AN, Rubio L, Galipienso L (2016) Genetic variation and evolutionary forces shaping Cucumber vein yellowing virus populations: risk of emergence of virulent isolates in Europe. Plant Pathol 65:847–856CrossRef
64.
Zurück zum Zitat Verma P, Gupta U (2010) Immunological detection of Bean common mosaic virus in French bean (Phaseolus vulgaris L.) leaves. Indian j Microbiol 50:263–265CrossRefPubMedPubMedCentral Verma P, Gupta U (2010) Immunological detection of Bean common mosaic virus in French bean (Phaseolus vulgaris L.) leaves. Indian j Microbiol 50:263–265CrossRefPubMedPubMedCentral
65.
Zurück zum Zitat Worrall EA, Wamonje FO, Mukeshimana G, Harvey JJ, Carr JP, Mitter N (2015) Bean common mosaic virus and Bean common mosaic necrosis virus: relationships, biology, and prospects for control. Adv Virus Res 93:1–46CrossRefPubMed Worrall EA, Wamonje FO, Mukeshimana G, Harvey JJ, Carr JP, Mitter N (2015) Bean common mosaic virus and Bean common mosaic necrosis virus: relationships, biology, and prospects for control. Adv Virus Res 93:1–46CrossRefPubMed
66.
Zurück zum Zitat Zheng L, Wayper PJ, Gibbs AJ, Fourment M, Rodoni BC, Gibbs MJ (2008) Accumulating variation at conserved sites in potyvirus genomes is driven by species discovery and affects degenerate primer design. PLoS One 3:e1586CrossRefPubMedPubMedCentral Zheng L, Wayper PJ, Gibbs AJ, Fourment M, Rodoni BC, Gibbs MJ (2008) Accumulating variation at conserved sites in potyvirus genomes is driven by species discovery and affects degenerate primer design. PLoS One 3:e1586CrossRefPubMedPubMedCentral
Metadaten
Titel
Molecular characterization and analysis of conserved potyviral motifs in bean common mosaic virus (BCMV) for RNAi-mediated protection
verfasst von
Elizabeth A. Worrall
Alice C. Hayward
Stephen J. Fletcher
Neena Mitter
Publikationsdatum
09.10.2018
Verlag
Springer Vienna
Erschienen in
Archives of Virology / Ausgabe 1/2019
Print ISSN: 0304-8608
Elektronische ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-018-4065-6

Weitere Artikel der Ausgabe 1/2019

Archives of Virology 1/2019 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Hodgkin Lymphom: BrECADD-Regime übertrifft die Erwartungen

05.06.2024 ASCO 2024 Kongressbericht

Das Kombinationsregime BrECADD mit Brentuximab vedotin ermöglichte in der Studie HD21 beim fortgeschrittenen klassischen Hodgkin-Lymphom eine unerwartet hohe progressionsfreie Überlebensrate von 94,3% nach vier Jahren. Gleichzeitig war das Regime besser tolerabel als der bisherige Standard eBEACOPP.

Antikörper-Drug-Konjugat verdoppelt PFS bei Multiplem Myelom

05.06.2024 ASCO 2024 Nachrichten

Zwei Phase-3-Studien deuten auf erhebliche Vorteile des Antikörper-Wirkstoff-Konjugats Belantamab-Mafodotin bei vorbehandelten Personen mit Multiplem Myelom: Im Vergleich mit einer Standard-Tripeltherapie wurde das progressionsfreie Überleben teilweise mehr als verdoppelt.

Neuer TKI gegen CML: Höhere Wirksamkeit, seltener Nebenwirkungen

05.06.2024 Chronische myeloische Leukämie Nachrichten

Der Tyrosinkinasehemmer (TKI) Asciminib ist älteren Vertretern dieser Gruppe bei CML offenbar überlegen: Personen mit frisch diagnostizierter CML entwickelten damit in einer Phase-3-Studie häufiger eine gut molekulare Response, aber seltener ernste Nebenwirkungen.

Hereditäres Angioödem: Tablette könnte Akuttherapie erleichtern

05.06.2024 Hereditäres Angioödem Nachrichten

Medikamente zur Bedarfstherapie bei hereditärem Angioödem sind bisher nur als Injektionen und Infusionen verfügbar. Der Arzneistoff Sebetralstat kann oral verabreicht werden und liefert vielversprechende Daten.

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.