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Original Articles

Embryogenic cultures of lily (Lilium spp.): optimising callus initiation, maintenance, and plantlet regeneration

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Pages 159-166 | Accepted 08 Nov 2013, Published online: 07 Nov 2015

References

  • Aboshama, H. M. S. (2011). Direct somatic embryogenesis of pepper (Capsicum annuum L.). World Journal of Agricultural Sciences, 7, 755–762.
  • Azadi, P., Chin,D.P.,Kuroda, K., Khan, R. S. and Mii, M. (2010a). Macro-elements in inoculation and co-cultivation medium strongly affect the efficiency of Agrobacterium-mediated transformation in Lilium. Plant Cell, Tissue and Organ Culture, 101, 201–209.
  • Azadi, P., Otang, N. V., Chin, D. P., Nakamura, I., Fujisawa, M., Harada, H., Misawa, N. and Mii, M. (2010b). Metabolic engineering of Lilium × formolongi using multiple genes of the carotenoid biosynthesis pathway. Plant Biotechnology Reports, 4, 269–280.
  • Azadi, P., Otang, N. V., Supaporn, H., Khan, R. S., Chin, D. P., Nakamura, I. and Mii, M. (2011). Increased resistance to cucumber mosaic virus (CMV) in Lilium transformed with a defective CMV replicase gene. Biotechnology Letters, 33, 1249–1255.
  • Bakhshaie, M., Babalar, M., Mirmasoumi, M. and Khalighi,A. (2010a). Somatic embryogenesis and plant regeneration of Lilium ledebourii (Baker) Boiss., an endangered species. Plant Cell, Tissue and Organ Culture, 102, 229–235.
  • Bakhshaie, M., Babalar, M., Mirmasoumi, M. and Khalighi,A. (2010b). Effects of light, sucrose, and cytokinins on somatic embryogenesis in Lilium ledebourii (Baker) Bioss. via transverse thin cell-layer cultures of bulblet microscales. Journal of Horticultural Science & Biotechnology, 85, 491–496.
  • Benkirane, H., Sabounji, K., Chlyah, A. and Chlyah, H. (2000). Somatic embryogenesis and plant regeneration from fragments of immature inflorescences and coleoptiles of durum wheat. Plant Cell, Tissue and Organ Culture, 61, 107–113.
  • Cheruvathur,M.K.,Najeeb, N. and Thomas, T. D. (2013). In vitro propagation and conservation of Indian sarsaparilla, Hemidesmus indicus L. R. Br. through somatic embryogenesis and synthetic seed production. Acta Physiologiae Plantarum, 35, 771–779.
  • Dhekney, S. A., Li, Z. T., Compton, M. E. and Gray, D. J. (2009). Optimizing initiation and maintenance of Vitis embryogenic cultures. HortScience, 44, 1400–1406.
  • Duncan, D. B. (1995). Multiple range and multiple F test Biometrics, 11, 1–42.
  • Friml, J. (2003). Auxin transport: shaping the plant. Current Opinion in Plant Biology, 6, 7–12.
  • Friml, J. and Palme, K. (2002). Polar auxin transport: old questions and new concepts? Plant Molecular Biology, 49, 273–284.
  • Forestan, C. and Varotto, S. (2012). The role of PIN auxin efflux carriers in polar auxin transport and accumulation and their effect on shaping maize development. Molecular Plant, 5, 787–798.
  • Gaj, M. D. (2004). Factors influencing somatic embryogenesis induction and plant regeneration with particular reference to Arabidopsis thaliana (L.) Heynh. Plant Growth Regulation, 43, 27–47.
  • Godo, T., Matsui, K., Kida, T. and Mii, M. (1996). Effect of sugar type on the effciency of plant regeneration from protoplasts isolated from shoot tip-derived meristematic nodular cell clumps of Lilium formolongi Hort. Plant Cell Reports, 15, 401–404.
  • Haensch, K.T. (1996). Plant regeneration through somatic embryogenesis in different genotypes of Lilium hybrids. Gartenbauwissenschaft, 61, 214–218.
  • Ho, C. W., Jian, W. T. and Lai, H. C. (2006). Plant regeneration via somatic embryogenesis from suspension cell cultures of Lilium formolongi Hort. using a bioreactor system. In Vitro Cellular & Developmental Biology – Plant, 42, 240–246.
  • Horita, M., Morohashi, H. and Komai, F. (2002). Regeneration of flowering plants from difficile lily protoplasts by means of a nurse culture. Planta, 215, 880–884.
  • Horita, M., Morohashi, H. and Komai, F. (2003). Production of fertile somatic hybrid plants between Oriental hybrid lily and Lilium formolongi. Planta, 217, 597–601.
  • Hoshi, Y., Kondo, M., Mori, S., Adachi, Y., Nakano, M. and Kobayashi, H. (2004). Production of transgenic lily plants by Agrobacterium-mediated transformation. Plant Cell Reports, 22, 359–364.
  • HUMÁNez, A., Blasco, M., Brisa, C., Segura, J. and Arrillaga,I (2012). Somatic embryogenesis from different tissues of Spanish populations of maritime pine. Plant Cell, Tissue and Organ Culture, 111, 373–383.
  • Jiang, X. C., Liu, C., Ming, J., Mu, D. and Yuan, S. X. (2011 Establishment of cell suspension culture and plantlet regeneration of Lilium regale. Acta Horticulturae Sinica, 38, 327–334. (In Chinese.)
  • Karami, O., Deljou, A., ESNA-Ashari, M. and OSTAD-Ahmadi,P (2006). Effects of sucrose concentration on somatic embryogenesis in carnation (Dianthus caryophyllus L.). Scientia Horticulturae, 110, 340–344.
  • Komatsuda, T., Lee, W. and Oka, S. (1992). Maturation and germination of somatic embryos as affected by sucrose and plant growth regulators in soybean Glycine gracilis Skvortz and Glycine max (L.) Merr. Plant Cell,Tissue and Organ Culture, 28, 103–113.
  • Kordestani, G. K. and Karami, O. (2008). Picloram-induced somatic embryogenesis in leaves of strawberry (Fragaria ananassa L.). Acta Biologica Cracoviensia Series Botanica, 50, 69–72.
  • Liu, J., Zhang, J., Xu, B., Jia, C., Zhang, J., Tan, G. and Jin, Z (2011). Regeneration and production of transgenic Lilium longiflorum via Agrobacterium tumefaciens. In Vitro Cellular & Developmental Biology – Plant, 47, 348–356.
  • Manchanda, P. and Gosal, S. S. (2012). Effect of Ac, carbon sources and gelling agents on direct somatic embryogenesis and regeneration in sugarcane via leaf roll segments. Sugar Tech, 14, 168–173.
  • Mercuri, A., Benedetti, L. D., Bruna, S., Bregliano, R., BIAN-Chini, C., Foglia, G. and Schiva, T. (2003). Agrobacterium-mediated transformation with rol genes of Lilium longiflorum Thunb. Acta Horticulturae, 612, 129–136.
  • Mii, M., Yuzawa, Y., Suetomi, H., Motegi, T. and Godo, T. (1994 Fertile plant regeneration from protoplasts of a seed-propagated cultivar of Lilium formolongi by utilizing meristematic nodular cell clumps. Plant Science, 100, 221–226.
  • Mori, S., Adachi, Y., Horimoto, S., Suzuki, S. and Nakano, M (2005). Callus formation and plant regeneration in various Lilium species and cultivars. In Vitro Cellular & Developmental Biology – Plant, 41, 783–788.
  • Moura,E.F.,Motoike, S. Y., Ventrella,M.C.,DE SÁ JÚNior,A Q. and Carvalho, M. (2009). Somatic embryogenesis in macaw palm (Acrocomia aculeata) from zygotic embryos. Scientia Horticulturae, 119, 447–454.
  • Nakano, M., Sakakibara, T., Suzuki, S. and Saito, H. (2000 Decrease in the regeneration potential of long-term cell suspension cultures of Lilium formosanum Wallace and its restoration by the auxin transport inhibitor, 2,3,5-triiodobenzoic acid. Plant Science, 158, 129–137.
  • Nhut, D. T., Bui, V. L., Fukai, S., Tanaka, M. and TRAN THANH Van, K. (2001). Effects of activated charcoal, explant size, explant position and sucrose concentration on plant and shoot regeneration of Lilium longiflorum via young stem culture. Plant Growth Regulation, 33, 59–65.
  • Nhut, D.T., Le, B.V., Minh, N.T.,Teixeira,S.J.,Fukai, S.,Tanaka, M. and TRAN THANH Van, K. (2002). Somatic embryogenesis through pseudo-bulblet transverse thin cell layer of Lilium longiflorum. Plant Growth Regulation, 37, 193–198.
  • Nhut, D. T., Hanh,N.T.M.,Tuan,P.Q.,Nquyet,L.T.M.,Tram,N T. H., Chinh, N. C., Nguyen, N. H. and Vinh, D. N. (2006). Liquid culture as a positive condition to induce and enhance quality and quantity of somatic embryogenesis of Lilium longiflorum. Scientia Horticulturae, 110, 93–97.
  • Ogaki, M., Furuichi, Y., Kuroda, K., Chin, D. P., Ogawa, Y. and Importance of co-cultivation medium pH for successful Agrobacterium-mediated transformation of Lilium formolongi. Plant Cell Reports, 27, 699–705.
  • Pinto, D. L., Almeida, A. M., RÊGo,M.M.,Silva, M. L., Oliveira, E. J. and Otoni, W. C. (2011). Somatic embryogenesis from mature zygotic embryos of commercial passionfruit (Passiflora edulis Sims) genotypes. Plant Cell, Tissue and Organ Culture, 107, 521–530.
  • Steinmacher, D. A., Clement, C. R. and Guerra, M. P. (2007). Somatic embryogenesis from immature peach palm inflorescence explants: towards development of an efficient protocol. Plant Cell, Tissue and Organ Culture, 89, 15–22.
  • Thomas, T. D. (2008). The role of activated charcoal in plant tissue culture. Biotechnology Advances, 26, 618–631.
  • Trembly, L. and Trembly, F. (1995). Maturation of black spruce somatic embryos: sucrose hydrolysis and resulting osmotic pressure of the medium. Plant Cell, Tissue and Organ Culture, 42, 39–46.
  • Tribulato, A., Remotti,P.C.,LÖFfler, H. J. M. and VAN Tuyl,J. M. (1997). Somatic embryogenesis and plant regeneration in Lilium longiflorum Thunb. Plant Cell Reports, 17, 113–118.
  • Wang, Y., Kronenburg, B. V., Menzel, T., Maliepaard, C., Shen, X. H. and Krens, F. (2012). Regeneration and Agrobacterium-mediated transformation of multiple lily cultivars. Plant Cell, Tissue and Organ Culture, 111, 113–122.
  • Zhou,Z.F.,Ai,S.Y.,Yang, M. C. and Li, Z.A. (2006). Cytohistological study on morphogenesis in filament culture of Lilium ‘Star Gazer’. Subtropical Plant Science, 35, 5–8. (In Chinese.)

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