Otwarty dostęp

Possibilities of using Nicotiana species in breeding for virus resistance

,  oraz   
12 mar 2024

Zacytuj
Pobierz okładkę

Acosta-Leal R., Xiong Z., 2008. Complementary functions of two recessive R-genes determine resistance durability of tobacco ‘Virgin A Mutant’ (VAM) to Potato virus Y. Virology, 379: 275-283, https://doi.org/10.1016/j.virol.2008.06.026. Search in Google Scholar

Adams M.J., Lefkowitz E.J., King A.M.Q., Harrach B., Harrison R.L., Knowles N.J., Kropinski A.M., Krupovic M., Kuhn J.H., Mushegian A.R. et al., 2017. Changes to taxonomy and the International Code of Virus Classification and Nomenclature ratified by the International Committee on Taxonomy of Viruses. Archives of Virology, 162(8): 2505-2538. doi: 10.1007/s00705-017-3358-5. Search in Google Scholar

Berbeć A., 1987a. Chromosome pairing and pollen fertility in the interspecific F1 Hybrids Nicotiana tabacum L. x N. benavidesii Goodspeed, N. knightiana Goodspeed x N. tabacum, and N. raimondii Macbride x N. tabacum. Genetica Polonica, 28(3): 263-269. Search in Google Scholar

Berbeć A., 1987b. Cytological study on Nicotiana tabacum L. cv. Nadwiślański Mały (2x and 4x) x Nicotiana alata Link et Otto hybrids. Genetica Polonica, 28(3): 251-262. Search in Google Scholar

Berbeć A., Głażewska Z., 1988. Transfer of resistance to potato virus Y from Nicotiana benavidesii Goodspeed to N. tabacum L. Genetica Polonica, 29(3-4): 323-333. Search in Google Scholar

Burk L.G., Heggestad H.E., 1966. The genus Nicotiana: A source of resistance to diseases of cultivated tobacco. Economic Botany, 20(1): 76-88, https://doi.org/10.1007/BF02861929. Search in Google Scholar

Burk L.G., Gooding G.V., Chaplin J.F., 1982. Reaction of Nicotiana species and cultivars or breeding lines of Nicotiana tabacum to three strains of potato virus Y. Tobacco Science, 28: 86-88. Search in Google Scholar

Cardin L., Moury B., 2008. First Report of Potato virus Y in Nicotiana mutabilis in France. Plant Disease, 92, 312, https://doi.org/10.1094/PDIS-92-2-0312B. Search in Google Scholar

Chen W., Huang T., Dai J., Liu W., Cheng J., Wu Y., 2014. Evaluations of Tobacco Cultivars Resistance to Tobacco mosaic virus and Potato virus Y. Plant Pathology Journal, 13(1): 37-43, doi: 10.3923/ppj.2014.37.43. Search in Google Scholar

Chrzanowska M., 1994. Differentiation of potato virus Y (PVY) isolates. Phytopathologia Polonica, 8: 15-20. Search in Google Scholar

Crosslin J.M., 2013. PVY: An Old Enemy and a Continuing Challenge. American Journal of Potato Research, 90: 2-6, doi: 10.1007/s12230-012-9286-8. Search in Google Scholar

Czubacka A., 2022. The use of the Polish Germplasm Collection of Nicotiana tabacum in research and tobacco breeding for disease resistance. Agriculture, 12, 1994 https://doi.org/10.3390/agriculture12121994. Search in Google Scholar

Depta A., Doroszewska T., 2019. Development and cytometric evaluation of interspecific F1 hybrids Nicotiana tabacum x N. africana. Polish Journal of Agronomy, 38: 3-14, https://doi.org/10.26114/pja.iung.388.2019.38.01. Search in Google Scholar

Depta A., Doroszewska T., Czubacka A., 2020. Diversification of resistance response of selected tobacco cultivars (Nicotiana tabacum) depending on the used Potato virus Y isolates. Polish Journal of Agronomy, 42: 3-13, doi: 10.26114/pja. iung.428.2020.42.01. (in Polish + summary in English) Search in Google Scholar

Depta A., Doroszewska T., Czubacka A., 2021. Resistance response of the recently discovered species Nicotiana mutabilis to Potato virus Y (PVY) and Tomato spotted wilt virus (TSWV) compared to other sources of resistance. Agronomy, 11, 1617, https://doi.org/10.3390/agronomy11081617. Search in Google Scholar

Depta A., Kursa K., Doroszewska T., Laskowska D., Trojak-Goluch A., 2018. Reaction of Nicotiana species and cultivars of tobacco to Tobacco mosaic virus and detection of the N gene that confers hypersensitive resistance. Czech Journal of Genetics and Plant Breeding, 54: 143-146, doi: 10.17221/81/2017-CJGPB. Search in Google Scholar

Doroszewska T., 1994. Przełamywanie barier nieżywotności i bezpłodności międzygatunkowych mieszańców Nicotiana tabacum × Nicotiana africana Merxm. metodą kultur tkankowych. Prace Ogrodu Botanicznego PAN, 5/6: 465-472. Search in Google Scholar

Doroszewska T., 2004. Wide hybridization and genetic transformation in breeding for resistance to potato virus Y (PVY) in tobacco (Nicotiana tabacum L.). Monografie i Rozprawy Naukowe, Puławy, 9: 1-135. (in Polish + summary in English) Search in Google Scholar

Doroszewska T., 2007. Uzyskanie stabilnych linii hodowlanych tytoniu z czynnikami odporności na różne izolaty wirusa Y ziemniaka (PVY) od dzikiego gatunku Nicotiana africana Merxm. Biuletyn IHAR, 244: 273-287. brak Search in Google Scholar

Doroszewska T., 2010. Transfer of tolerance to different Potato virus Y (PVY) isolates from Nicotiana africana Merxm. to Nicotiana tabacum L. Plant Breeding, 129(1): 76-81, https://doi.org/10.1111/j.1439-0523.2009.01634.x. Search in Google Scholar

Doroszewska T., Berbeć A., 2000. Cytogenetical investigations of poliploid interspecific hybrids of Nicotiana africana with different cultivars of N. tabacum. Journal of Genetics & Breeding, 54: 77-82. Search in Google Scholar

Doroszewska T., Berbeć A., 2021. Metodyka integrowanej ochrony tytoniu. Instytut Uprawy Nawożenia i Gleboznawstwa – Państwowy Instytut Badawczy, Puławy. Search in Google Scholar

Doroszewska T., Berbeć A., Czarnecka D., Kawka M., 2013. Diseases and pests of tobacco. Institute of Soil Science and Plant Cultivation – State Research Institute, Puławy, Poland. Search in Google Scholar

Doroszewska T., Chrzanowska M., 2001. Characterization of the main PVY resistance sources to different PVY strains. Inf. Bull. Join Meeting of the CORESTA, Agronomy & Phytopathology Study Groups. Cape Town, RPA, 60. Search in Google Scholar

Doroszewska T., Czubacka A., 2008. Ocena odporności odmian i linii hodowlanych tytoniu na wirusa Y ziemniaka (PVY). Studia i Raporty IUNG-PIB, 13: 29-42, doi: 10.26114/sir. iung.2008.13.02. Search in Google Scholar

Doroszewska T., Depta A., 2011. Resistance of wild Nicotiana species to different PVY isolates. Phytopathologia, 59: 9-24. Search in Google Scholar

Drake J.W., 1993. Rates of spontaneous mutation among RNA viruses. Proceeding of the National Academy of Sciences of The United States of America (PNAS), 90: 4171-4175, doi: 10.1073/pnas.90.9.4171. Search in Google Scholar

Francki R.I.B., Fauquet C.M., Knudson D.D., Brown F., 1991. Classification and Nomenclature of Viruses: Fifth report of the International Committee on Taxonomy of Viruses. Archives of Virology, Supplementa, 2: 1-450, doi: 10.1006/rwvi.1999.0277. Search in Google Scholar

Gajos Z., 1976. Z badań nad odpornością międzygatunkowych mieszańców Nicotiana tabacum L. x Nicotiana alata Link. na wirus brązowej plamistości pomidora (Lycopersicum virus 3 Smith). Zeszyty Problemowe Postępów Nauk Rolniczych, 182: 83-88. Search in Google Scholar

Gajos Z., 1978. Podatność dwudziestu dzikich gatunków Nicotiana na zakażenie przez wirus brązowej plamistości pomidora (Lycopersicum virus 3 Smith) w zależności od wieku roślin inokulawanych. Biuletyn Centralnego Laboratorium Przemysłu Tytoniowego, 1-2: 25-37. Search in Google Scholar

Gajos Z., 1979. Próby wykorzystania mieszańców Nicotiana tabacum L. × Nicotiana otophora Grizw hodowli tytoniu odpornego na Perenospora tabacina Adam (PT-2) i inne choroby. Biuletyn Centralnego Laboratorium Przemysłu Tytoniowego, 1-2: 11-24. Search in Google Scholar

Gajos Z., 1981. Inheritance of resistance to Tomato spotted wilt virus in interspecies hybrids of Nicotiana tabacum L. x Nicotiana alata Link. Zeszyty Problemowe Postępów Nauk Rolniczych, 244: 117-126. Search in Google Scholar

Gajos Z., 1987. Polalta, the first Polish tobacco variety resistant to Tomato spotted wilt virus was released for regional experimentation and propagation. Wiadomości Tytoniowe, 31: 11-17. Search in Google Scholar

Gajos Z. 1993. Virginia ZG-4 (Wiktoria) – A new tobacco variety resistant to Tomato spotted wilt virus (TSWV) and black root rot (Thielaviopsis basicola Ferr.). Biuletyn Centralnego Laboratorium Przemysłu Tytoniowego, 1-4: 5-19. Search in Google Scholar

Gera A., Tam Y., Teverovsky E., Loebenstein G., 1993. Enhanced tobacco mosaic virus production and suppressed synthesis of the inhibitor of virus replication in protoplasts and plants of local lesion responding cultivars exposed to 35°C. Physiology and Molecular Plant Pathology, 43: 299-306, https://doi.org/10.1006/pmpp.1993.1059. Search in Google Scholar

Gerstel D.U., 1943. Inheritance in Nicotiana tabacum. XVII. Cytogenetical analysis of Glutinosa- type resistance to mosaic disease. Genetics, 28(6): 533-536, doi: 10.1093/genetics/28.6.533. Search in Google Scholar

Głażewska Z., 1977. Odporność dzikich gatunków Nicotiana oraz odmian N. tabacum i N. rustica na nekrotyczne szczepy wirusa Y. Mat. XVII Sesji Nauk., IOR Poznań, pp. 277-287. Search in Google Scholar

Goelet P., Lomonossoff G.P., Butler P.J.G., Akam M.E., Gait M.J., Karn J., 1982. Nucleotide sequence of tobacco mosaic virus RNA. Proc. Natl Acad. Sci. USA, 79(19): 5818-5822, doi: 10.1073/pnas.79.19.5818. Search in Google Scholar

Goodspeed T.H., 1954. The genus Nicotiana: origins, relationships and evolution of its species in the light of their distribution, morphology and cytogenetics. Chronica Botanica, pp. 161-536. Search in Google Scholar

Gugerli P., Fries P., 1983. Characterization of monoclonal antibodies to Potato virus Y and their use for virus detection. Journal of General Virology, 64: 2471-2477, https://doi.org/10.1099/0022-1317-64-11-247. Search in Google Scholar

Gwynn G.R., 1977. Evaluation of tobacco mosaic virus resistant germ plasm. Tobacco Research, 3: 89-94. Search in Google Scholar

Hane D.C., Hamm P.B., 1999. Effects of seedborne potato virus y infection in two potato cultivars expressing mild disease symptoms. Plant Disease, 83(1): 43-45, doi: 10.1094/PDIS.1999.83.1.43. Search in Google Scholar

Holmes F.O., 1929. Local lesions on tobacco mosaic. Botanical Gazette, 87: 39-55, https://doi.org/10.1086/333923. Search in Google Scholar

Holmes F.O., 1938. Inheritance of resistance to tobacco mosaic disease in tobacco. Phytopathology, 28: 553-561. Search in Google Scholar

Holmes F.O., 1946. A comparison of the experimental host ranges of tobacco-etch and tobacco mosaic viruses. Phytopathology, 36: 643-657. Search in Google Scholar

Jankowski F., 1980. Sources of resistance to TSWV (Lycopersicum virus 3) among uncultivated species of Nicotiana genus. Biuletyn Centralnego Laboratorium Przemysłu Tytoniowego, 1-2: 3-8. Search in Google Scholar

Janzac B., Tribodet M., Lacroix C., Moury B., Verrier J.L., Jacquot E., 2014. Evolutionary pathways to break down the resistance of allelic versions of the PVY resistance gene va. Plant Disease, 98: 1521-1529, doi: 10.1094/PDIS-11-13-1126-RE. Search in Google Scholar

Jones D.R., 2005. Plant viruses transmitted by thrips. European Journal of Plant Pathology, 113: 119-157, doi: 10.1007/s10658-005-2334-1. Search in Google Scholar

Julio E., Cotucheau J., Decorps C., Volpatti R., Sentenac C., Candresse T., Dorlhac de Borne F., 2015. A eucariotic translation initiation factor 4E (elF4E) is responsible for the “va” tobacco recessive resistance to potyviruses. Plant Moleular Biology Reporter, 33: 609-623. Search in Google Scholar

Knapp E., Lewandowski D.J., 2001. Tobacco mosaic virus, not just a single component virus anymore. Molecular Plant Pathology, 2(3): 117-123, https://doi.org/10.1046/j.1364-3703.2001.00064.x. Search in Google Scholar

Koelle G., 1958. Versucher zur Vererbung der Krankheitsresistenz bei Tabak. 2 Mitt. Eine Rippen-braune-resistante Virgin A Mutantenach Anwendung kunstlicher Mutations auslosung durch Rontgenstrahlen. Tabak-Forschung, 24: 83-84. Search in Google Scholar

Korbecka-Glinka G., Czubacka A., Depta A., Doroszewska T., 2017a. Inheritance of Potato virus Y tolerance introgressed from Nicotiana africana to cultivated tobacco. Polish Journal of Agronomy, 31: 39-44, doi: https://doi.org/10.26114/pja.iung.343.2017.31.06. Search in Google Scholar

Korbecka-Glinka G., Czubacka A., Przybyś M., Doroszewska T., 2017b. Resistance vs. tolerance to Potato virus Y in tobacco – comparing effectiveness using virus isolates from Central Europe. Breeding Science, 67: 459-465, doi: 10.1270/jsbbs.17019. Search in Google Scholar

Lacroix C., Glais L., Kerlan C., Verrier J.L., Jacquot E., 2010. Biological characterization of French Potato virus Y (PVY) isolates collected from PVY-susceptible or -resistant tobacco plants possessing the recessive resistance gene va. Plant Pathology, 59: 1133-1143, https://doi.org/10.1111/j.1365-3059.2010.02342.x. Search in Google Scholar

Lacroix C., Glais L., Verrier L., Charlier C., Lorencetti C., Jacquot E., 2011. Impact of tobacco recessive resistance gene va on biological properties of Brazilian Potato virus Y (PVY) isolates. Plant Pathology, 60: 1048-1054, https://doi.org/10.1111/j.1365-3059.2011.02473.x. Search in Google Scholar

Laskowska D., 2008. Charakterystyka groźnej choroby tytoniu – brązowej plamistości pomidora i rola wektora w jej przenoszeniu. Studia i Raporty IUNG-PIB, 13: 43-50, doi: 10.26114/sir.iung.2008.13.03. Search in Google Scholar

Laskowska D., Berbeć A., 2010. TSWV resistance in DH lines of tobacco (Nicotiana tabacum L.) obtained from a hybrid between ‘Polalta’ and ‘Wiślica’. Plant Breeding, 129: 731-733, https://doi.org/10.1111/j.1439-0523.2009.01747.x. Search in Google Scholar

Laskowska D., Doroszewska T., Depta., Kursa K., Olszak-Przybyś H., Czubacka A., 2013. A survey of Nicotiana germplasm for resistance to Tomato spotted wilt virus (TSWV). Euphytica, 193: 207-219, https://doi.org/10.1007/s10681-013-0921-3. Search in Google Scholar

Le Romancer M., Kerlan C., Nedellec M., 1994. Biological characterization of various geographical isolates of Potato virus Y inducing superficial necrosis on potato tubers. Plant Pathology, 43(1): 138-144, doi: 10.1111/j.1365-3059.1994. tb00563.x. Search in Google Scholar

Lewis R.S., 2005. Transfer of resistance to potato virus Y (PVY) from Nicotiana africana to Nicotiana tabacum: possible influence of tissue culture on the rate of introgression. Theoretical and Applied Genetics, 110: 678-687, doi: 10.1007/s00122-004-1893-4. Search in Google Scholar

Lewis R.S., 2007. Evaluation of Nicotiana tabacum genotypes possessing Nicotiana africana-derived genetic tolerance to Potato Virus Y. Crop Science, 47: 1975-1984, https://doi.org/10.2135/cropsci2007.01.0001. Search in Google Scholar

Lewis R.S., Milla S.R., Levin J.S., 2005. Molecular and genetic characterization of Nicotiana glutinosa L. chromosome segments in tobacco mosaic virus-resistant tobacco accessions. Crop Science, 45: 2355-2362, https://doi.org/10.2135/crop-sci2005.0121. Search in Google Scholar

Lucas G.B., 1975. Diseases of tobacco. 3d ed. Biological Consulting Association, Raleigh, N.C., 621 pp., https://doi.org/10.2135/cropsci2005.012. Search in Google Scholar

Lucas G.B., Gooding G.V., Sasser J.N., Gerstel D.U., 1980. Reaction of Nicotiana africana to black shank, Granville wilt, tobacco mosaic virus and potato virus Y. Tobacco Science, 24: 141-142. Search in Google Scholar

Mandal B., Pappu H.R., Culbreath A.K., Holbrook C.C., Todd J.W., 2002. Differential response of selected peanut (Arachis hypogaea) genotypes to mechanical inoculation by Tomato spotted wilt virus. Plant Disease, 86: 939-944, doi: 10.1094/PDIS.2002.86.9.939. Search in Google Scholar

Masuta C., Nishimura M., Morishita H., Hataya T., 1999. A single amino acid change in viral genome-associated protein of Potato virus Y correlates with resistance breaking in ‘virgin A mutant’ tobacco. Phytopathology, 89: 118-123, doi: 10.1094/PHYTO.1999.89.2.118. Search in Google Scholar

Michel V., Julio E., Candresse T., Cotucheau J., Decorps C., Volpatti R., Moury B., Glais L., Jacquot E., Dorlhac de Borne F., Decroocq V., Gallois J.L., German-Ratana S., 2019. A complex elF4E locus impacts the durability of va resistance to Potato virus Y in tobacco. Molecular Plant Pathology, 20(8): 1051-1066, https://doi.org/10.1111/mpp.12810. Search in Google Scholar

Michel V., Julio E., Candresse T., Cotucheau J., Decorps C., Volpatti R., Moury B., Glais L., Dorlhac de Borne F., Decroocq V., German-Retana S., 2018. NtTPN1: a RPP8-like R gene required for Potato virus Y-induced veinal necrosis in tobacco. The Plant Journal, 95: 700-714, https://doi.org/10.1111/tpj.13980. Search in Google Scholar

Moon H., Nicholson J.S., 2007. AFLP and SCAR markers linked to Tomato Spotted Wilt Virus resistance in tobacco. Crop Science, 47(5): 1887-1894, https://doi.org/10.2135/cropsci2007.01.0002. Search in Google Scholar

Mumford R.A., Barker I., Wood K.R., 1996. The biology of the tospoviruses. Annals of Applied Biology, 128: 159-183, https://doi.org/10.1111/j.1744-7348.1996.tb07097.x. Search in Google Scholar

Noguchi S., Tajima T., Yamamota Y., Ohno T., Kubo T., 1999. Deletion of large genomic segment in tobacco varieties that are resistant to potato virus Y (PVY). Molecular and General Genetics, 262: 822-829, doi: 10.1007/s004380051146. Search in Google Scholar

Nolla J.S.B., Roque A., 1933. A variety of tobacco resistant to ordinary tobacco mosaic. Journal of Puerto Rico Department of Agriculture, 17: 301-301. Search in Google Scholar

Opoka B., 1969. Odporność dzikich gatunków Nicotiana na Lycopersicon virus 3 (Brittlebank) Smith. Hodowla Roślin, Aklimatyzacja i Nasiennictwo, 13(1): 83-88. Search in Google Scholar

Opoka B., 1974. The susceptibility of more important tobacco varieties to the Lycopersicum virus 3 Smith under the provoking field conditions. Pamiętnik Puławski, 60: 147-153. (in Polish + summary in English) Search in Google Scholar

Parella G., Gognalons P., Gebre-Sellassie K., Vovlas C., Marchoux G., 2003. An update of the host range of Tomato spotted wilt virus. Journal of Plant Pathology, 85: 227-264. Search in Google Scholar

Przybyś M., Doroszewska T., Berbeć A., 2013. Point mutation in the Viral genome-linked protein (VPg) of Potato virus Y probably correspond with ability to overcome resistance of tobacco. Journal of Food, Agriculture & Environment, 11(3&4): 986-989. Search in Google Scholar

Robaglia C., Caranta C., 2006. Translation initiation factors: a weak link in plant RNA virus infection. Trends in Plant Science, 11(1): 40-45. Search in Google Scholar

Robaglia C., Durand-Tardif M., Tronchet M., Boudazin G., Astier-Manifacier S., Casse-Delbart F., 1989. Nucleotide sequence of potato virus Y (N strain) genomic RNA. Journal of General Virology, 70: 35-947. Search in Google Scholar

Scholthof K-B.G., 2000. Tobacco mosaic virus. The Plant Health Instructor. doi: 10.1094/PHI-I-2000-1010-01. Search in Google Scholar

Scholthof K.-B.G., Adkins S., Czosnek H., Palukaitis P., Jacquot E., Hohn T., Saunders K., Candresse T., Ahlquist P., Hemenway C., Foster G.D., 2011. Top 10 plant viruses in molecular plant pathology. Molecular Plant Pathology, 12(9): 938-954. Search in Google Scholar

Sievert R.C., 1972. Sources of resistance to potato virus Y in the genus Nicotiana. Tobacco Science, 106: 92-94. Search in Google Scholar

Stange C., Matus J.T., Elorza A., Arce-Johnson P., 2004. Identyfication and characterization of novel tobacco mosaic virus resistance N-gene homologue in Nicotiana tabacum plants. Functional Plant Biology, 31: 149-158, doi: 10.1071/FP03160. Search in Google Scholar

Takakura Y., Udagawa H., Shinto A., Koga K., 2018. Mutation of a Nicotiana tabacum L. eukaryotic factor gene reduces susceptibility to a resistance-breaking strain of Potato virus Y. Molecular Plant Pathology, 19(9): 2124-2133, doi: 10.1111/mpp.12686. Search in Google Scholar

Tezuka T., Kuboyama T., Matsuda T., Marubashi W., 2010. Seven of eight species in Nicotiana section Suaveolentes have common factors leading to hybrid lethality in crosses with Nicotiana tabacum. Annals of Botany, 106: 267-276, doi: 10.1093/aob/mcq114. Search in Google Scholar

Thole V., Dalmay T., Burgyán J., Balázs E., 1993. Cloning and sequencing of potato virus Y (Hungarian isolate) genomic RNA. Gene, 123: 149-156, doi: 10.1016/0378-1119(93)90118-m. Search in Google Scholar

Trancheva R., 2005. Reaction of some tobacco species and varieties to common tobacco strain and tomato strain of TMV. Bulletin of Tobacco Science and Profession, 55(7-8): 169-174. Search in Google Scholar

Trojak-Goluch A., Laskowska D., Agacka M., Czarnecka D., Kawka M., Czubacka A., 2011. Effectiveness of combining resistance to Thielaviopsis basicola and Tomato spotted wilt virus in haploid tobacco genotypes. Breeding Science, 61(4): 389-393, doi: 10.1270/jsbbs.61.389. Search in Google Scholar

Valleau W.D., 1952. Breeding tobacco for disease resistance. Economic Botany, 6: 69-102. Search in Google Scholar

Verrier J.L., Doroszewska T., 2002. The PVY collaborative experiment 1996–2002: a global synthesis of results, Report of the Agronomy and Phytopathology Group of CORESTA (Cooperation Centre for Scientific Research Relative to Tobacco), available on website: http://www.imperialtobaccoscience.com Search in Google Scholar

Verrier J.L., Doroszewska T., 2018. Tobacco Virus Collaborative Study (1996–2011). Virus Disease Sub-Group. Technical Report. CORESTA, https://www.coresta.org/tobacco-virus-collaborative-study-1996-2011-31554.html. Search in Google Scholar

Wen C., Wu Y., Li H., Wang H., Liu Q., 1999. Influences on photosynthesis and respiration of tobacco infected by Potato Virus Y – vein necrosis strain. Bull. Inf. CORESTA, Suzhou, China, pp. 10-11. Search in Google Scholar

Wernsman E.A., 1992. Varied roles for the haploid sporophyte in plant improvement. pp. 461-484. In: Plant breeding in the 1990s; eds: Stalker H.T., Murphy J.P.; Proceedings of the Symposium on Plant Breeding in the 1990s, CAB Int., Wallingford. Search in Google Scholar

Wijkamp I., Van Lent J., Kormelink R., Goldbach R., Peters D., 1993. Multiplication of Tomato spotted wilt virus in its insect vector, Frankliniella occidentalis. Journal of General Virology, 74: 341-349. Search in Google Scholar

Wittmann S., Chatel H., Fortin M.G., Laliberte J.F., 1997. Interaction of the viral protein genome linked of turnip mosaic potyvirus with the translational eukaryotic initiation factor (iso) 4E of Arabidopsis thaliana using the yeast two-hybrid system. Virology, 234: 84-92. Search in Google Scholar

Yancheva A., 1990. A possibility for transferring combined resistance to tomato spotted wilt virus and Thielaviopsis basicola to intercultivar tobacco hybrids. Genet. Breed., 23(3): 194-199. (in Bulgarian) Search in Google Scholar

Yuan X., Yan Ch., Wu Z., Ren F., Zhang H., Baker B., Chen J., Kuang H., 2015. Frequent gain and loss of resistance against Tobacco mosaic virus in Nicotiana species. Molecular Plant, 8: 1813-1815, doi: 10.1016/j.molp.2015.09.001. Search in Google Scholar

Zhang G.Y., Chen M., Guo J.N., Xu T.W., Li L.C., Xu Z.S., Ma Y.Z., Chen X.P., 2009. Isolation and characteristics of the CN gene, a Tobacco mosaic virus resistance N gene homolog, from tobacco. Biochemical Genetics, 47: 301-314, doi: 10.1007/s10528-009-9229-3. Search in Google Scholar

Język:
Angielski
Częstotliwość wydawania:
1 razy w roku
Dziedziny czasopisma:
Nauki biologiczne, Nauka o roślinach, Ekologia