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      Alstroemeria plants and its biotechnological applications

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      https://www.riss.kr/link?id=A103806331

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      다국어 초록 (Multilingual Abstract)

      Alstroemeria plants are widely cultivated in many countries especially in Western Europe and North America and popularity has increased in recently due to its long-base life, large variety of colors and low energy requirement during cultivation period...

      Alstroemeria plants are widely cultivated in many countries especially in Western Europe and North America and popularity has increased in recently due to its long-base life, large variety of colors and low energy requirement during cultivation period. So far, more than 60 species have been released on the commercial market in the world. To meet the demand of consumer and develop the elite Alstroemeria cultivars, conventional breeding including cross-hybridization and selection as well as mutation breeding were used.
      However, as other important ornamental plants such as lily, rose, carnation and orchids accepted the biotechnological methods, this newly-born approach should be applied and developed an optimized the genetic transformation system. Then, this biotechnological approach can be fused with the conventional breeding methods and thus can be contributed to the production of elite Alstroemeria plants containing agriculturally good genetic traits which are useful for the both farmers and consumers in the future. In this paper, we reviewed the botanical and genetical features of Alstroemeria plants and its biotechnological approaches in the last decades.

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      참고문헌 (Reference)

      1 Ziv M, "Vegetative propagation of Alstroemeria in vitro" 1 : 271-277, 1973

      2 Akutsu M, "Transformation of the monocotyledonous Alstroemeria by Agrobacterium tumefaciens" 22 : 561-568, 2004

      3 Akutsu M, "Transformation of the monocot Alstroemeria by Agrobacterium rhizogenes" 13 : 69-78, 2004

      4 Aker S, "The phytogeography of the genus Alstroemeria" 46 : 76-87, 1990

      5 Dahlgren RMT, "The families of monocotyledons" Springer- Verslag 1985

      6 Hutchinson J, "The families of flowering plants II. Monocotyledons" Clarendon Press 1957

      7 Hutchinson MJ, "Somatic embryogenesis in liquid cultures of a tetraploid Alstroemeria" 47 : 293-297, 1997

      8 Sage DO, "Somatic embryogenesis in Narcissus pseudonarcissus cvs. Golden Harvest and St. Keverne" 150 : 209-216, 2000

      9 De Jeu MJ, "Sexual reproduction biology of Alstroemeria" 325 : 571-575, 1992

      10 Tae-Ho Park, "Review on the development of virus resistant plants in Alstroemeria" 한국식물생명공학회 37 (37): 370-378, 2010

      1 Ziv M, "Vegetative propagation of Alstroemeria in vitro" 1 : 271-277, 1973

      2 Akutsu M, "Transformation of the monocotyledonous Alstroemeria by Agrobacterium tumefaciens" 22 : 561-568, 2004

      3 Akutsu M, "Transformation of the monocot Alstroemeria by Agrobacterium rhizogenes" 13 : 69-78, 2004

      4 Aker S, "The phytogeography of the genus Alstroemeria" 46 : 76-87, 1990

      5 Dahlgren RMT, "The families of monocotyledons" Springer- Verslag 1985

      6 Hutchinson J, "The families of flowering plants II. Monocotyledons" Clarendon Press 1957

      7 Hutchinson MJ, "Somatic embryogenesis in liquid cultures of a tetraploid Alstroemeria" 47 : 293-297, 1997

      8 Sage DO, "Somatic embryogenesis in Narcissus pseudonarcissus cvs. Golden Harvest and St. Keverne" 150 : 209-216, 2000

      9 De Jeu MJ, "Sexual reproduction biology of Alstroemeria" 325 : 571-575, 1992

      10 Tae-Ho Park, "Review on the development of virus resistant plants in Alstroemeria" 한국식물생명공학회 37 (37): 370-378, 2010

      11 Healy WE, "Repose of Alstroemeria ‘Regina’ to temperature treatments prior to flower-inducing temperatures" 17 : 383-390, 1982

      12 Healy WE, "Relationship between rhizome temperatures and shoot temperatures for flower initiation and cut flower production of Alstroemeria ‘Regina’" 111 : 94-97, 1986

      13 Gonzalez-Benito E, "Regeneration from Alstroemeria callus" 280 : 135-138, 1990

      14 Van Schaik CE, "Plant regeneration through somatic embryogenesis from callus induced on immature embryos of Alstroemeria spp. L" 15 : 377-380, 1996

      15 Ravenna P, "New or noteworthy species of Alstroemeria" 64 : 281-288, 1988

      16 Dahlgren RMT, "Monocotyledons. A comparative study" Academic Press 378-, 1982

      17 Buitendijk JH, "Micropropagation ability: towards a selection criterion in Alstroemeria breeding" 325 : 493-498, 1992

      18 김종보, "Isolation of protoplasts, and culture and regeneration into plants in Alstroemeria" CABI PUBLISHING 41 (41): 505-510, 2005

      19 Akutsu M, "Induction of proembryos in liquid culture increases the efficiency of plant regeneration from Alstroemeria calli" 163 : 475-479, 2002

      20 De Jeu MJ, "Hybrid detection in Alstroemeria by use of species repetitive probes" 420 : 62-64, 1995

      21 Lin HS, "Genetic transformation of Alstroemeria using particle bombardment" 6 : 369-377, 2000

      22 Kim JB, "Efficient somatic embryogenesis in Alstroemeria" 47 : 293-297, 2006

      23 김종보, "Efficient production of transgenic Alstroemeria plants by using Agrobacterium tumefaciens" BLACKWELL PUBLISHING 151 : 401-412, 2007

      24 Buxbaum F, "Die Grundachse von Alstroemeria und die Einheit ihres morphologischem Typus mit dem der echtem Liliaceen" 1 : 170-184, 1951

      25 Bayer E, "Die Gattung Alstroemeria in Chile. Mitteilungen der Botanischen saatssammlung" 24 : 1-362, 1987

      26 Lin HS, "Development of two in vitro regeneration systems through leaf explant and callus culture and the application for genetic transformation in Alstroemeria" Wageningen University 1998

      27 Lin HS, "Development of a plant regeneration system based on friable embryogenic callus in the ornamental Alstroemeria" 19 : 529-534, 2000

      28 Whyte RO, "Chromosome studies. I. Relationship of the genera Alstroemeria and Bomarea" 28 : 3119-3344, 1929

      29 Hang A, "Chromosome studies in the genus Alstroemeria. II. Chromosome constitutions of eleven additional cultivars" 100 : 273-279, 1988

      30 Tsuchyia T, "Chromosome studies in genus Alstroemeria" 205 : 281-287, 1987

      31 Gonzalez-Benito E, "Callus induction and plant regeneration in Alstroemeria" 43 : 205-211, 1992

      32 Hutchinson MJ, "Callus induction and plant regeneration from mature zygotic embryos of a tetraploid Alstroemeria (A. pelegrina X A. psittacina)" 14 : 184-187, 1994

      33 Bridgen MP, "Biotechnological breeding for Alstroemeria" 45 : 93-95, 1989

      34 Herbert W, "Amaryllidaceae; preceded by an attempt to arrange the monocotyledonous orders and followed by a treatise on cross-bred vegetables, and supplement" Ridgway and Sons 88-103, 1837

      35 Hannibal LS, "Alstroemeria and Bomarea from seeds" 9 : 183-187, 1942

      36 Uphof JCT, "A review of the genus Alstroemeria" 8 : 37-53, 1952

      37 Buitendijk JH, "A cytological characterization of genomes of Alstroemeria, the production of interspecific hybrids, and their performance during micropropagation" Wageningen University 1998

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