Preview

Vegetable crops of Russia

Advanced search

DEVELOPMENT OF ELEMENTS OF TECHNOLOGY FOR PLANTING MATERIAL OF LETTUCE (LACTUCA SATIVA L.) ON VIRUS-FREE BASIS USING METHODS OF BIOTECHNOLOGY

https://doi.org/10.18619/2072-9146-2019-2-22-26

Abstract

The article presents the results of research on the production in vitro of regenerated plants from the seeds of cultivars of lettuce (Lactuca sativa L.) Emerald, Bouquet, Chameleon (FSBSI Federal Scientific Vegetable Center), susceptible of aspermia tomato (Tomato aspermy cucumovirus) – AsTV. Seeds of strongly susceptible to AsTV varieties of salad Chameleon and Bouquet were subjected to thermotherapy at different temperatures (37°C, 38°C, 40°C) for a different time interval (1, 3, 5, 7, 10 days) in dry form and when moistened. Marked varietal specificity during germination of seeds after thermotherapy. Thus, the greatest number of seedlings in the emerald variety was obtained after 5 days of thermotherapy (10.0±0), while the Bouquet variety had the best results after 3 days of thermotherapy (9.3±1.2) with moisture. After thermotherapy of dry seeds by 40°C plant material of cultivar Emerald was planted on solid and liquid culture media. The conditions of step sterilization of lettuce seeds for introduction into the culture in vitro were chosen: washing in 96% ethanol, then in 50% aqueous solution of "Whiteness" with the addition of Twin-20, after in sterile distilled water. The nutrient medium for germination of lettuce seeds was used: Gamborg B5 (2% sucrose, 7.0 g/l agar), and the liquid nutrient medium was of that composition. The obtained seedlings were cutted and transferred to medium MS (2% sucrose, 0.1 mg/l ha and 1 mg/l BAP, 3.0 g/l phytogel). The formed shoots for rooting were transferred to the MS medium (2% sucrose, 3.0 g/l phytogel). In the future, lettuce plants will be adapted in vivo and tested for the presence of tomato aspermia virus in the planting material.

About the Authors

O. B. Romanova
FSBSI Federal Scientific Vegetable Center
Russian Federation

Candidate of Agricultural Sciences, Junior Researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072



A. V. Soldatenko
FSBSI Federal Scientific Vegetable Center
Russian Federation

Doctor of Agricultural Sciences, prof. RAS, Chief Researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072


O. A. Chichvarina
FSBSI Federal Scientific Vegetable Center
Russian Federation

 junior researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072



V. A. Akhramenko
FSBSI Federal Scientific Vegetable Center
Russian Federation

Candidate of Technical Sciences, Researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072



O. V. Pavlova
FSBSI Federal Scientific Vegetable Center
Russian Federation

junior researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072



V. S. Romanov
FSBSI Federal Scientific Vegetable Center
Russian Federation

Candidate of Agricultural Sciences, Senior Researcher

Selectionaya St. 14, p. VNIISSOK, Odintsovo district, Moscow region, 143072



References

1. Engalycheva I.A., Pishnaya O.N., Dzhos E.A., Timina L.T., Zolotareva O.I. The use of interspecific hybridization in the selection of pepper and lettuce for resistance to viral infection // Rus. Agr. Sci. Rev. – 2015. – V.6. – №.6-2. – P.2-4.

2. Engalycheva I.A., Pavlova, O.V. Interspecific hybridization of lettuce (Lactuca sativa L.) breeding for resistance to Tomato aspermy cucumovirus // Mat. international. Conf. ""Ecological and genetic bases of modern agricultural technologies" (St. Petersburg, April 27-29, 2016) // Bull. plant prot. – 2016. – №3(89). – P.68-70.

3. Noordam D., Bijl M., Overbeek S.C., Quiniones S.S. Viruses uit Campanula rapunculoidesen Stellaria mediaen hun relalie tot komkommermozaiekvirus en tomaat-‘aspermy’– virus // Neth. J. Pl. Path. – V.71. – P.61.

4. Wang W.J. Tech Bull Plant Quarantine Res. Inst. Pl. Quarantine. Dong San Huan Beijine. – 1982. – №3.

5. Boyko A.L. Ecology of plant viruses. – K.: Vischa school. – 1990. – 166 p.

6. Zhuravlev Y.N. Phytoviruses in the whole plant and in model systems. – M.: Science, 1979. – 246 p.

7. Mitrofanova O.V., Mitrofanova I.V., Lesnikova-Sidorenko N.P. Ivanova N.N. The application of biotechnological methods in plant improvement and propagation of disease-free planting material of promising ornamental crops // Proc. scient. tr. GNBS. – 2014. – V.138. – P.5-56.

8. Gnutova R. V. Taxonomy of plant viruses in the Far East. – Vladivostok: Dalnauka, 2009. – 467 p.

9. Kegler H., Kleinhempel H., Gang, K., Presler G., Szymanski, H.-H., Schmidt H., Shpaar D., Verderevsky T.D. Control of viral diseases of plants / Translat for German. G. I. Loginui; ed. and with foreword. I.G. Atabekov and A.V. Shmyhli. – M.: Agropromizdat, 1986. – 480 p.

10. Hollings M., Kassanis B. The curl of chrysanthemums from some virus diseases by heat // J. Roy. Hortic. Soc. – 1957. – V.82. – №8. – P.339-342.

11. Mitrofanova O.V. Development of biotechnology of the accelerated reproduction in the sterile culture of flower plants on virus-free basis // Proceedings of All-Union. Conf. Agricultural Sciences: thes. of reports. – L., 1986. – P.101-104.

12. Teslenko A.B., Mitrofanova O.V., Lukicheva L.A. Development of technology for production of virus-free peach material // Coll. sci. works of Nikitsky Botanical garden. – 1986. – V.99. – P.85-92.

13. Brierley P., Lorentz P. Heathy tip cutting from some mosaic-diseased Asiatic chrysanthemums: some benefits and other effects of heat treatment // Phytopathology. – 1960. – V.50. – №6. – P.404-408.

14. Bacheelier J.C., Monsion M., Dunez J. Possibilities of improving detection of chrysanthemum stunt and obtaining viroid-free plants by meristem-tip culture // Acta Hort. – 1976. – №59. – P.63-69.

15. Butenko R.G. Culture of isolated tissues and physiology of plant morphogenesis. – Moscow: Science, 1964. – 272 p.

16. Butenko R.G. Biology of higher plant cells in vitro and biotechnology based on them: Studies. benefit. – M.: FGC-PRESS, 1999. – 160 p.

17. Kataeva N.B., Butenko R.G. Clonal micropropagation of plants. – M.: Science, 1983. – 232 p.

18. Kalinin F.L., Kushnir G.P., Sarnatskaya V.V. Technology of microclonal reproduction of plants. – K.: Naukova Dumka, 1992. – 23 p.

19. Mitrofanova O.V., Slavgorodskaya-Kurpieva L.E., Mitrofanova I.V., Lukicheva L.A. Diagnosis of viral diseases and biotechnological methods of obtaining virus-free planting material of stone fruit crops. – Yalta: Crimea press, 2000. – 45 p.

20. Torrence L., Jones R.A.C. Recent developments in serological methods suited for use in routine testing for plant viruses // Plant Pathology. – 1981. – V.30. – P.1-24. DOI:10.1111/j.1365-3059.1981.tb01218.x

21. Biotechnology of Ornamental Plants / Eds. R.L. Geneve, J.E. Preece, S.A. Merkle. – Wallingford: CAB International, 1997. – 412 p.

22. George E.F., Hall M.A., De Klerk G.-J. Plant Propagation by Tissue Culture. 3rd Edition. – Dordrecht, Netherlands: Springer, 2008. – 501 p.

23. Doerschug M.R., Miller C.O. Chemical control of adventitious organ formation in Lactuca sativa explants// Am. J. Bot. – 1967. – №54. – P.410-413.

24. Koevary K., Rappaport L., Morris L.L. Tissue culture propagation of Head lettuce // Hortic. Sci. – 1978. – №13. – P.39-41.

25. Bloksberg L.N., Saltveit M.E. Regeneration of plants from axillary buds of harvested and stored heads of field-grown Iceberg lettuce // Hortic. Sci. – 1986. – №21. – P.1201-1203.

26. Pink D.A.C., Carter P.J. Propagation of lettuce (Lactuca sativa) breeding material by tissue culture // Ann. Appl. Biol. – 1987. – P.611-616.

27. Armas I., Pogrebnyak N. Raskin I. A rapid and efficient in vitro regeneration system for lettuce (Lactuca sativaL.) // Plant Methods. – 2017. – V.13. – Is.1. – P.1-9. DOI: 10.1186/s13007-017-0208-0

28. Berry S.F., Lu D.Y., Pental D., Cocking E.C. Regeneration of plants from protoplasts of Lactuca sativaL. // Pflanzen physiol. – 1982. – №108. – P.31-38. DOI:10.1016/S0044-328X(82)80088-3

29. Brown C., Lucas J.A., Crute I.R., Walkey D.G.A., Power J.B. An assessment of genetic variability in somaclonal lettuce plants (Lactuca sativaL.) and their offspring // Ann. Appl. Biol. – 1986. – №109. – P.391-407.

30. Alconero R. Regeneration of plants from cell suspensions ofLactuca saligna, Lactuca sativaand Lactuca serriola // Hortic Sci. – 1983. – №18. – P.305-307.

31. Murashige T., Skoog F.A. Revised medium for rapid growth and bioassays with tobacco cultures // Physiol Plant. – 1962. – №15. – P.473-497.

32. Pink D.A.C. Micropropagation of Lettuce (Latuce sativa L.) // Biotechnology in Agriculture and Forestry. – Vol. 19. High-Tech and Micropropagation III (ed. by Y.P.S. Bajaj) – Springer-Verlag Berlin Heidelberg. – 1992. – P.42-57.

33. Schenk R.V., Hildebrandt A.C. Medium and techniques for induction and growth of monocotyledonous and dicotyledonous plant cell cultures // Canad. J. Bot. – 1972. – №50. – P.199-204. DOI:10.1139/b72-026

34. Teng W.L., Liu Y.J., Soong T.S. Rapid regeneration of lettuce from suspension culture // Hortic Sci. – 1992. – №27. – P.1030-1032.

35. Xinrun Z., Conner A.J. Genotypic effects on tissue culture response of lettuce cotyledons // J. Genet. Breed. – 1992. – №46. – P.287-90.

36. Ampomah-Dwamena C., Conner A.J., Fautrier A.G. Genotypic response of lettuce cotyledons to regeneration in vitro // Sci Hortic (Amsterdam). – 1997. – №71. – P.137-145.

37. Mohebodini M., Javaran M.J., Mahboudi F., Alizadeh H. Effects of genotype, explant age and growth regulators on callus induction and direct shoot regeneration of lettuce (Lactuca sativaL.) // Aust. J Crop Sci. – 2011. – №5. – P.92-95.

38. Latif B., Javaran M.J., Alizadeh H., Memari H.R., Mohammadi R. Interactions of genotype and plant growth regulators affecting direct shoot regeneration of lettuce (Lactuca sativa L.) // Int. J. Biosci. – 2014. – V.5. – №1. – P.315-322.

39. Jenni S., Loukili F., Moghaddam B. E. In vitro culture response of apical and axillary shoot-tips excised from crisphead lettuce cores depends on head maturity not storage time // In VitroCell. Dev. Biol. Plant. – 2006. – V.42. – №3. – P.274-277.

40. Mazier M., Maisonneuve B., Bellec Y., Chupeau M. C., Souche S. and Chupeau Y..Interest of protoplasts for lettuce breeding // Eucarpia Leafy Vegetables 99, A. Lebeda, Kristkova, ed., Proccedling of the Eucarpia Meeting on Leafy Vegetables Genetics and Breeding, Olomouc, the Czech Republic, 8-11 June, 1999, Palacky University Olomouc. – Olomouc, 1999. – P.239-244.

41. Domblides E.A., Shmykova N.A., Shumilina D.V., Zayachkovskaya T.V., Vjurtts T.S., Kozar E.V., Kan L.Yu., Romanov V.S., Domblides A.S., Pivovarov V.F., Soldatenko A.V. Biotechnological approaches for breeding programs in vegetable crops. Agrosym. 2017. Book of proceedings. – 2017. – P.452-460. DOI: 10.18619/2072-9146-2018-6-3-7

42. Koyama R., Sanada M., Itoh H., Kanechi M., Inagaki N., Uno Y. In vitroevaluation of tipburn resistance in lettuce (Lactuca sativa L.) // Plant Cell. Tiss. Organ Cult. – 2012. – №.108. – P.221-227. DOI:10.1007/s11240-011-0033-5

43. Gamburg O.L., Miller R.A., Ojima K. Nutrients requirements of suspension cultures of soybean root cells // Exp. Cell. Res. – 1968. – №.50. – P.151-158.

44. Guidelines for the evaluation and creation of the source material of sweet pepper with resistance to the tomato bronze virus / V.F. Pivovarov, O.N. Pyshnaya, M.I. Mammadov, I.T. Balashova, L.K. Gurkina, E.G. Kozar, I.A. Engalycheva. – M., 2007. – P.18.

45. Johnstone G.R., Wade G.C. Therapy of virus-infected plants by heat treatment I. Some properties of tomato aspermy virus and its inactivation at 36°C // Austral. J. Bot. – 1974. – V.22 – №3. – P.437-450. DOI:10.1071/BT9740437


Review

For citations:


Romanova O.B., Soldatenko A.V., Chichvarina O.A., Akhramenko V.A., Pavlova O.V., Romanov V.S. DEVELOPMENT OF ELEMENTS OF TECHNOLOGY FOR PLANTING MATERIAL OF LETTUCE (LACTUCA SATIVA L.) ON VIRUS-FREE BASIS USING METHODS OF BIOTECHNOLOGY. Vegetable crops of Russia. 2019;(2):22-26. (In Russ.) https://doi.org/10.18619/2072-9146-2019-2-22-26

Views: 1065


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2072-9146 (Print)
ISSN 2618-7132 (Online)