A Successful Encapsulation Technique for the Production of Synthetic Seeds for Lilium candidum L. Grown Naturally in Turkey

Synthetic seed production from Lilium candidum

Yazarlar

DOI:

https://doi.org/10.1071/ejmbs.v2i1.20

Anahtar Kelimeler:

Ca-alginate- commercial production- white lily- artificial seed

Özet

Lilium candidum L. (white lily) is in danger of extinction due to the destruction of its natural habitat in Turkey and the removal of its tubers from nature for export.  For this reason, it is very important to carry out biotechnological studies with L. candidum, which is an important medicinal and ornamental plant.  In vitro techniques can provide the opportunity to preserve plant genetic resources in different forms and different genetic features (synthetic seed). With these techniques, it is possible to reproduce plant species rapidly in danger of extinction and transfer them to their natural environments with in vitro and ex situ conservation studies. In this study, we aimed to establish a suitable protocol for the production of synthetic seeds in L. candidum. Accordingly, regeneration was achieved by using the stem bulbils of the plant. An effective encapsulation technique has been created for the production of synthetic seeds in L. candidum, obtained from its calli by regeneration. The calculated callus development and embryogenesis rates of encapsulated calli were higher than single ones, 92.5%-88.6%, and 90.4%-77.1% respectively. Our protocol turned out to be successful for synthetic seed production as well as large-scale in vitro clonal propagation of L. candidum

Referanslar

Altan, F., Bürün, B., Sahin, N. (2010). Fungal contaminants observed during micropropagation of Lilium candidum L. and the effect of chemotherapeutic substances applied after sterilization. African Journal of Biotechnology, 9(7), 991-995.

Altan, F., Kaya, E., Yıldırım, H., Pirhan, A.F. (2021). Determination of Genetic Diversity and Generation of Biotechnological Methods for Naturally Grown Lilium candidum L. Populations in Turkey. TUBITAK 2018-2021, GRANT No: TOVAG- 217O009

Arnold, S.V., Eriksson, T. (1981). In vitro studies of adventitious shoot formation in Pinus contorta. Canadian Journal of Botany, 59(5), 870-874

Bakhshaie, M., Khosravi, S., Azadi, P., Bagheri, H., Van Tuyl, J.M. (2016). Biotechnological advances in Lilium. Plant Cell Reports 35, 1799-1826

Bayram, E., Kırıcı, S., Tansı, S., Yılmaz, G., Arabacı, O., Kızıl, S., Telci, I. (2010). Tıbbi ve Aromatik Bitkiler Üretiminin Arttırılması Olanakları. Türkiye Ziraat Mühendisliği VII.Teknik Kongresi Bildiriler Kitabı, 11-15 Ocak, ANKARA, 437-456

Baytop, T. (1984). Treatment with plants in Turkey. Istanbul University Publication. No: 3255. Istanbul University, Istanbul

Bhattacharyya, P., Kumar, V., Staden, J.V (2018). In vitro encapsulation based short term storage and assessment of genetic homogeneity in regenerated Ansellia africana (Leopard orchid) using gene targeted molecular markers. Plant Cell Tissue and Organ Culture (PCTOC), 133, 299–310

Bhojwani, S.S., Razdan, M.K. (1983) Plant Tissue Culture Theory and Practice Elsevier Science Publishers B.V., Netherlands

Bown, D. (1995). Echyclopaedia of herbs and their usue, Dorling Kindersley

Cangahuala-Inocente, G.C., Dal Vesco, L.L., Steinmacher, D. (2007). Improvements in somatic embryogenesis protocol in Feijoa (Acca sellowiana (Berg) Burret): Induction, conversion and synthetic seeds. Scientia Horticulturae, 111, 228-224

Chopra, R.N., Nayar, S., Chopra, I.C. (1986). Glossary of indian medicinal plants (incluiding the supplement), Council of Scientific and Indrustrial Research, New Delhi

Danso, K.E., Ford-Lloyd, B.V. (2003). Encapsulation of nodal cuttings and shoot tips for storage and exchange of cassava germplasm. Plant Cell Reports, 21, 718-725

Davis, P.H. (1984). Flora of Turkey and East Aegean Islands, Edinburg University Press, Vol. 8, pp. 280, Edinburg

Elhiti, M.A., Stasolla, C., Wang, A. (2013). Molecular regulation of plant somatic embryogenesis. In Vitro Cellular and Developmental Biology, 49(6), 1-12

Gantait, S., Bustam, S., Sinniah, U.R. (2012). Alginate-encapsulation, short-term storage and plant regeneration from protocorm-like bodies of Aranda Wan Chark Kuan ‘Blue’ x Vanda coerulea Grifft. ex. Lindl. (Orchidaceae). Plant Growth Regulation, 68(2), 303–311

Gantait, S., Vijayan, J., Majee, A. (2017). Artificial seed production of Tylophora indica for interim storing and swapping of germplasm. Horticultural Plant Journal, 3(1), 41-46

Giam, X., Bradshaw, C.J., Tan, H.T., Sodhi, N.S. (2010). Future habitat loss and the conservation of plant biodiversity. Biological Conservation, 143(7), 1594-1602.

Haque, S.M., Ghosh, B. (2014). Somatic embryogenesis and synthetic seed production-a biotechnological approach for true-to-type propagation and in vitro conservation of an ornamental bulbaceous plant Drimiopsis kirkii Baker. Applied Biochemistry and Biotechnology, 172, 4013-4024

Haque, S.M., Ghosh, B. (2016). High-frequency somatic embryogenesis and artificial seeds for mass production of true-to-type plants in Ledebouria revoluta: an important cardioprotective plant. Plant Cell Tissue Organ Culture, 127, 71–83

Kaviani, B. (2010). Cryopreservation by encapsulation dehydration for long-term storage of some important germplasm: seed of lily [Lilium ledebourii (Baker) Bioss.], embryonic axe of Persian lilac (Melia azedarach L.), and tea (Camellia sinensis L.). Plant Omics, 3, 177–182

Kumar, P.P., Loh, C.S. (2012). Plant tissue culture for biotechnology. In: Altman A, Hasegawa PM (Eds) Plant Biotechnology and Agriculture, Prospects for the 21st Century, Academic Press, pp. 131-138, USA

Majd, A., Ehsandar, S.H., Choukan, R., Abdi, H.R. (2010). Production of Synthetic Seed by Encapsulating Somatic Embryo in Potato (Solanum tuberosum L.). Biology Journal, 4(4), 23-32

Marascuilo, L.A., Mcsweeney, M. (1977). Post-hoc multiple comparisons in sample preparations for test of homogenesity. In: Mcsweeney, M., Marascuilo, L.A. (eds) Non-parametric and distribution free methods the social sciences. Books/Cole Publication, Belmont, pp 141-147

Murashige, T., Skoog, F. (1962). A Revised Medium for Rapid Growth and Bio Assays with Tobacco Tissue Cultures. Physiologia Plantarum, 15(3), 473-497

Nongdam, P. (2016). Development of synthetic seed technology in plants and its applications: a review. International Journal of Current Science, 19(4), E 86-E101

Özcan, S., Babaoğlu, M., Sancak, C. (2001). Somatik Embriyogenesis. In: Babaoğlu, M., Gürel, E., Özcan, S., (Eds), Bitki Biyoteknolojisi-Doku Kültürü ve Uygulamaları, Selçuk Üniversitesi Basımevi, pp. 71-88, Konya

Özen, F., Aka, G.E., Aksoy, Ö. (2016). Genetic diversity and conservation strategies of some Lilium candidum L. population in Turkey. Bangladesh Journal of Botany, 45(1), 133-141

Özüdoğru, E.A., Kaya, E., Kırdok, E., İşsever-Öztürk, S. (2011). In vitro propagation from young and mature explants of thyme (Thymus vulgaris and T. longicaulis) resulting in genetically stable shoots. In vitro Cellular and Developmental Biology-Plant, 47(2), 309-320

Pradhan, S., Tiruwa, B.L., Subedee, B.R., Pant, B. (2016). Efficient plant regeneration of Cymbidium aloifolium (L.) Sw., a threatened orchid of Nepal through artificial seed technology. American Journal of Plant Sciences, 7, 1964-1974

Reddy, M.C., Sri Rama, Murthy, K., Pullaiah, T. (2012). Synthetic seeds: A review in agriculture and forestry. African Journal of Biotechnology, 11(78), 14254-14275

Redenbaugh, K., Slade, D., Viss, P.R., Fujii, J. (1987). Encapsulation of somatic embryos in synthetic seed coats. Horticultural Science, 22, 803-809

Reed, B.M., Sarasan, V., Kane, M. Bunn, E., Pence, V.C. (2011). Biodiversity conservation and conservation biotechnology tools. In Vitro Cell Dev Biol-Plant, 47, 1-4.

Rugini, E. (1984). In vitro Propagation of Some Olive (Olea europaea sativa L.) Cultivars with Different Root-Ability, and Medium Development Using Analytical Data from Developing Shoots and Emryos. Scientia Hotriculturae, 24, 123-134

Sicurani, M., Piccioni, E., Standardi, A. (2001). Micropropagation and preparation of synthetic seed in M.26 apple rootstock I: Attempts towards saving labor in the production of adventitious shoot tips suitable for encapsulation. Plant Cell, Tissue and Organ Culture, 66, 207-216

Soneji, J.R., Rao, P.S., Mhatre, M. (2002). Germination of synthetic seeds of pineapple (Ananas comosus L. Merr.). Plant Cell Reports, 20, 891-894.

Souza, F.V.D., Kaya, E., Vieira, L.D.J., Souza, A.D.S., Carvalho, M.D.J.D.S., Santos, E.B., Alves, A.A.C., Ellis, D. (2017). Cryopreservation of Hamilin sweet orange (Citrus sinensis (L.) Osbeck) embryogenic calli using a modified aluminum cryo-plate technique”. Scientia Horticulturae, 224, 302-305

Thu, B., Smidsrod, O., Skjak-Braek, G. (1996). Alginate gels-Some structure-function correlations relevant to their use as immobilization matrix for cells. Progress in Biotechnology, 11, 19-30

Tokgöz, H.B., Altan, F. (2020). Callus Induction and Micropropagation of Lilium candidum L. Using Stem Bulbils and Confirmation of Genetic Stability via SSR-PCR. International Journal of Secondary Metabolite, 7 (4), 286-296

Vidalie, H. (1986). In vitro Culture and Its Applications In Horticulture. Economic Botany, 51(1), 92-93

Winkelmann, T., Meyer, L., Serek, M. (2004). Germination of encapsulated somatic embryos of Cyclamen persicum. HortScience, 39(5), 1093-1097

Yücesan, B.B., Çiçek, F., Gürel, E. (2014). Somatic embryogenesis and encapsulation of immature bulblets of an ornamental species, Grape hyacinths (Muscari armeniacum Leichtlin ex Baker). Turkish Journal of Agriculture and Forestry, 38, 716–722

Yayınlanmış

2022-06-30

Nasıl Atıf Yapılır

Tokgöz, H. B., Kaya, E., & Altan, F. (2022). A Successful Encapsulation Technique for the Production of Synthetic Seeds for Lilium candidum L. Grown Naturally in Turkey: Synthetic seed production from Lilium candidum. Eurasian Journal of Medical and Biological Sciences, 2(1), 23–30. https://doi.org/10.1071/ejmbs.v2i1.20

Sayı

Bölüm

Biological Seciences