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2017 | 86 | 3 |

Tytuł artykułu

An improved encapsulation protocol for regrowth and conservation of four ornamental species

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The encapsulation technology, initially developed for clonal propagation through the production of synthetic seeds with somatic embryos, is currently proposed for use with non-embryogenic explants, such as buds and nodal segments (unipolar propagules). In the present study, the encapsulation procedure and its effect on shoot regeneration were evaluated. Apical buds isolated from shoot cultures of four ornamental species (Photinia × fraseri Dress., Polygala myrtifolia L., Metrosideros excelsa Soland. ex Gaertn., and Rosa) were encapsulated in 3% sodium alginate. Effects of complexation time, sucrose concentration, and storage temperature on the regrowth ability of propagules were assessed. With the appropriate combination of sucrose concentration and polymerization time, the encapsulated explants proved to have a better regrowth (80–100%) after sowing than the naked ones. In addition, medium-term storage of Metrosideros encapsulated explants promoted a high level of regrowth (74%) after 4 months in the dark at 10°C; while polygala beads were preserved up to 8 months regardless of storage temperatures. Potential current applications of encapsulation technology and the future use of beads in vivo conditions are also discussed.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

86

Numer

3

Opis fizyczny

Article 3559 [12p.],fig.,ref.

Twórcy

autor
  • Tree and Timber Institute (IVALSA) National Research Council, via Madonna del Piano 10, 50019 Sesto Fiorentino, Florence, Italy
autor
  • Department of Agricultural, Food and Environmental Sciences (DSA3), University of Perugia, Borgo XX Giugno 74, 06121 Perugia, Italy
autor
  • Tree and Timber Institute (IVALSA) National Research Council, via Madonna del Piano 10, 50019 Sesto Fiorentino, Florence, Italy

Bibliografia

  • 1. Rout GR, Mohapatra A, Mohan SJ. Tissue culture of ornamental pot plant: a critical review on present scenario and future prospects. Biotechnol Adv. 2006;24:531–560. https://doi.org/10.1016/j.biotechadv.2006.05.001
  • 2. Rai MK, Asthana P, Singh SK, Jaiswal VS, Jaiswal U. The encapsulation technology in fruit plants – a review. Biotechnol Adv. 2009;27:671–679. https://doi.org/10.1016/j.biotechadv.2009.04.025
  • 3. Reddy CM, Murthy KSR, Pullaiah T. Synthetic seeds: a review in agriculture and forestry. Afr J Biotechnol. 2012;11:14254–14275.
  • 4. Mandal J, Pattnaik S, Chand PK. Growth response of the alginate-encapsulated nodal segments of in vitro-cultured basils. Journal of Herbs, Spices and Medicinal Plants. 2001;8(4):65–74. https://doi.org/10.1300/J044v08n04_07
  • 5. Murch SJ, Peiris SE, Liu CZ, Saxena PK. In vitro conservation and propagation of medicinal plants. Biodiversity. 2004;5:19–24. https://doi.org/10.1080/14888386.2004.9712725
  • 6. Ozden-Tokatli Y, De Carlo A, Gumusel F, Pignattelli S, Lambardi M. Development of encapsulation techniques for the production and conservation of synthetic seeds in ornamental plants. Propagation of Ornamental Plants. 2008;8:17–22.
  • 7. West TP, Ravindra MB, Preece JE. Encapsulation, cold storage, and growth of Hibiscus moscheutos nodal segments. Plant Cell Tissue Organ Cult. 2006;87(3):223–231. https://doi.org/10.1007/s11240-006-9155-6
  • 8. Murashige T. Plant cell and organ cultures as horticultural practices. Acta Hortic. 1977;78:17–30. https://doi.org/10.17660/ActaHortic.1977.78.1
  • 9. Bapat VA, Mhatre M, Rao PS. Propagation of Morus indica L. (mulberry) by encapsulated shoot buds. Plant Cell Rep. 1987;6:393–395. https://doi.org/10.1007/BF00269570
  • 10. Aitken-Christie J, Kozai T, Takayama S. Automation in plant tissue culture: general introduction and overview. In: Aitken-Christie J, Kozai T, Smith MAL, editors. Automation and environmental control in plant tissue culture. Dordrecht: Kluwer; 1995. p. 1–18. https://doi.org/10.1007/978-94-015-8461-6_1
  • 11. Capuano G, Piccioni E, Standardi A. Effect of different treatments on the conversion of M 26 apple rootstock synthetic seeds obtained from encapsulated apical and axillary micropropagated buds. J Hortic Sci Biotechnol. 1998;73:299–305. https://doi.org/10.1080/14620316.1998.11510977
  • 12. Standardi A, Micheli M. Encapsulation of in vitro-derived explants: an innovative tool for nurseries. In: Lambardi M, Ozudogru EA, Jain MS, editors. Protocols for micropropagation of selected economically-important horticultural plants. New York, NY: Humana Press; 2013. p. 397–418. (Methods in Molecular Biology; vol 11013). https://doi.org/10.1007/978-1-62703-074-8_31
  • 13. Micheli M, Hafiz IA, Standardi A. Encapsulation of in vitro-derived explants of olive (Olea europaea L. cv. Moraiolo) II. Effects of storage on capsule and derived shoots performance. Sci Hortic. 2007;113:286–292. https://doi.org/10.1016/j.scienta.2007.04.001
  • 14. Nower AA, Ali EA, Rizkalla A. Synthetic seeds of pear (Pyrus communis L.) rootstock storage in vitro. Aust J Basic Appl Sci. 2007;1(3):262–270.
  • 15. Lambardi M, Benelli C, Ozudogru EA, Ozden-Tokatli Y. Synthetic seed technology in ornamental plants. In: Texeira da Silva JA, editor. Floriculture, ornamental and plant biotechnology: advances and topical issues. London: Global Science Books; 2006. p. 347–354.
  • 16. Daud N, Taha RM, Hasbullah NA. Artificial seed production from encapsulated micro shoots of Saintpaulia ionantha Wendl. (African violet). Journal of Applied Sciences. 2008;8:4662–4667. https://doi.org/10.3923/jas.2008.4662.4667
  • 17. Previati A, Benelli C, Da Re F, Ozudogru A, Lambardi M. Micropropagation and in vitro conservation of virus-free rose germplasm. Propagation of Ornamental Plants. 2008;8:93–98.
  • 18. Kulus D, Zalewska M. In vitro plant recovery from alginate-encapsulated Chrysanthemum × grandiflorum (Ramat.) Kitam. shoot tips. Propagation of Ornamental Plants. 2014;14:3–12.
  • 19. Huda AKMN, Rahrnau M, Bari MA. Effect of carbon source in alginate bead on synthetic seed germination in eggplant (Solanum melongena L.). J Plant Sci. 2007;2:538– 544.
  • 20. Nor Asmah H, Nor Hasnida H, Noraliza A, Nashatul Zaimah N, Nadiah salmi N. In vitro propagation of Acacia hybrid through alginate-encapsulated shoots and axillary buds. Afr J Biotechnol. 2012;11:12814–12817. https://doi.org/10.5897/AJB11.3874
  • 21. Naik SK, Chand PK. Nutrient-alginate encapsulation of in vitro nodal segments of pomegranate (Punica granatum L.) for germplasm distribution and exchange. Sci Hortic. 2006;108:247–252. https://doi.org/10.1016/j.scienta.2006.01.030
  • 22. Gantait S, Kundu S. Artificial seed technology for storage and exchange of plant genetic resources. In: Malik CP, Wani SH, Kushwaha HB, Kaur R, editors. Advanced technologies for crop improvement and agricultural productivity. Jodhpur: Agrobios (International); 2017. p. 135–159.
  • 23. Sharma S, Shahzad A, Teixeira da Silva JA. Synseed technology – a complete synthesis. Biotechnol Adv. 2013;31:186–207. https://doi.org/10.1016/j.biotechadv.2012.09.007
  • 24. Benelli C, De Carlo A, Engelmann F. Recent advances in the cryopreservation of shoot-derived germplasm of economically important fruit trees of Actinidia, Diospyros, Malus, Olea, Prunus, Pyrus and Vitis. Biotechnol Adv. 2013;31:175–185. https://doi.org/10.1016/j.biotechadv.2012.09.004
  • 25. De Carlo A, Benelli C, Lambardi M. Development of a shoot-tip vitrification protocol and comparison with encapsulation-based procedures for plum (Prunus domestica L.) cryopreservation. Cryo Letters. 2000;21:215–222.
  • 26. Pawłowska B, Bach A. Cryopreservation by encapsulation dehydration of in vitro grown shoot buds of rosa ‘New Dawn’. Acta Hortic. 2011;908:303–307. https://doi.org/10.17660/ActaHortic.2011.908.40
  • 27. Zalewska M, Kulus D. Cryopreservation of in vitro-grown shoot tips of chrysanthemum by encapsulation-dehydration. Folia Horticulturae. 2013;25:133–140. https://doi.org/10.2478/fhort-2013-0015
  • 28. Quoirin M, Lepoivre P. Etudes de milieu adaptés aux cultures in vitro de Prunus. Acta Hortic. 1977;78:437–442. https://doi.org/10.17660/ActaHortic.1977.78.54
  • 29. Murashige T, Skoog F. A revised medium for rapid growth and bioassays with tobacco tissue culture. Physiol Plant. 1962;15:473–497.
  • 30. Driver JA, Kuniyuki AH. In vitro propagation of paradox walnut rootstock. HortScience. 1984;19:507–509.
  • 31. Singh SK, Rai MK, Asthana P, Pandey S, Jaiswal VS, Jaiswal U. Plant regeneration from alginate-encapsulated shoot tips of Spilanthes acmella (L.) Murr., a medicinally important and herbal pesticidal plant species. Acta Physiol Plant. 2009;31:649–653. https://doi.org/10.1007/s11738-008-0250-7
  • 32. Awal A, Taha RM, Hasbullah NA. In vitro formation of synthetic seed of Begonia × hiemalis Fotch. International Journal of Environmental Sciences. 2007;2:189–192.
  • 33. Seran Thayamini H, Hirimburegama K, Gunasekare MTK. Encapsulation of embryonic axes of Camellia sinensis (L.) O. Kuntze (tea) and subsequent in vitro germination. J Hortic Sci Biotechnol. 2005;80:154–158. https://doi.org/10.1080/14620316.2005.11511908
  • 34. Sarmah DK, Borthakur M, Borua PK. Artificial seed production from encapsulated PLBs regenerated from leaf base of Vanda coerulea Grifft. ex. Lindl. – an endangered orchid. Curr Sci. 2010;98:686–690.
  • 35. Redenbaugh K, Slade D, Viss P, Fujii J. Encapsulation of somatic embryos in synthetic seed coats. HortScience. 1987;22:803–809.
  • 36. Janeiro LV, Ballester A, Vieitez AM. In vitro response of encapsulated somatic embryos of camellia. Plant Cell Tissue Organ Cult. 1997;51:119–125. https://doi.org/10.1023/A:1005958827202
  • 37. Kinoshita I, Saito A. Propagation of Japanese white birch by encapsulated axillary buds. 1. Regeneration of plantlets under aseptic conditions. Journal of the Japanese Forest Society. 1990;72(2):166–170.
  • 38. Iapichino G, Benelli C, Airò M, Vitale A. In vitro propagation and encapsulated seed production of Metrosideros excelsa. Italus Hortus. 2009;16:132–135.
  • 39. Ahmed MR, Anis M, Al-Etta HA. Encapsulation technology for short-term storage and germplasm exchange of Vitex trifolia L. Rendiconti Lincei. 2015;26:133–139. https://doi.org/10.1007/s12210-014-0366-1
  • 40. Manole-Paunescu A. Biotechnology for endangered plant conservation. In: Ahuja MR, Ramawat KG, editors. Biotechnology and biodiversity. Cham: Springer; 2014. p. 181–202. (Sustainable Development and Biodiversity; vol 4). https://doi.org/10.1007/978-3-319-09381-9_10
  • 41. Ozudogru EA, Previati A, Lambardi M. In vitro conservation and cryopreservation of ornamental plants. In: Protocols for in vitro propagation of ornamental plants. New York, NY: Humana Press; 2011. p. 303–324. (Methods in Molecular Biology; vol 589). https://doi.org/10.1007/978-1-60327-114-1_28
  • 42. Benelli C. Encapsulation of shoot tips and nodal segments for in vitro storage of “Kober 5BB” grapevine rootstock. Horticulturae. 2016;2:10. https://doi.org/10.3390/horticulturae2030010
  • 43. Benelli C, Ozudogru EA, Lambardi M, Dradi G. In vitro conservation ornamental plants by slow growth storage. Acta Hortic. 2012;961:89–93. https://doi.org/10.17660/ActaHortic.2012.961.8
  • 44. Reed BM, Sarasan V, Kane M, Kane Pence VC. Biodiversity conservation and conservation biotechnology tools. In Vitro Cell Dev Biol Plant. 2011;47:1–4. https://doi.org/10.1007/s11627-010-9337-0
  • 45. Ballester A, Janeiro LV, Vieitez AM. Cold storage of shoot cultures and alginate encapsulation of shoot tips of Camellia japonica L. and Camellia reticulata Lindley. Sci Hortic. 1997;71:67–78. https://doi.org/10.1016/S0304-4238(97)00074-5
  • 46. Jayasree N, Devi BP. Production of synthetic seeds and plant regeneration in Rosa hybrid L. cv. King’s Ransom. Indian J Exp Biol. 1997;35:310–312
  • 47. Refouvelet E, Le Nours S, Tallon C, Daguin F. A new method for in vitro propagation of lilac (Syringa vulgaris L.) regrowth and storage conditions for axillary buds encapsulated in alginate beads, development of a pre-acclimatisation stage. Sci Hortic. 1998;74:233– 241. https://doi.org/10.1016/S0304-4238(98)00088-0
  • 48. Rady MR, Hanafy MS. Synthetic seed technology for encapsulation and regrowth of in vitro-derived Gysophila paniculata L. shoot tips. Arab J Biotechnol. 2004;7:51–264.
  • 49. Datta KB, Kanjilal B, de Saker D. Artificial seed technology: development of a protocol in Geodorum densiflorum (Lam) Schltr. – an endangered orchid. Curr Sci. 1999;76(8):1142– 1145.
  • 50. Germanà MA, Micheli M, Pulcini L, Standardi A. Perspective of the encapsulation technology in the nursery activity of Citrus. Caryologia. 2007;60:192–195. https://doi.org/10.1080/00087114.2007.10589575
  • 51. Guerra MP, Dal Vesco LL. Strategies for the micropropagation of bromeliads. In: Jain SM, Ochatt SJ, editors. Protocols for in vitro propagation of ornamental plants: methods in molecular biology. New York, NY: Humana Press; 2010. p. 47–66. (Methods in Molecular Biology; vol 589). https://doi.org/10.1007/978-1-60327-114-1_6
  • 52. West TP, Preece JE. Use of acephate, benomyl and alginate encapsulation for eliminating culture mites and fungal contamination from in vitro cultures of hardy hibiscus (Hibiscus moscheutos L.). In Vitro Cell Dev Biol Plant. 2006;42:301–304. https://doi.org/10.1079/IVP2006774

Typ dokumentu

Bibliografia

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