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References of gentiana.pl

GENTIANA

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  33. Kikuchi M., Yoshiro N. 1995. Cryopreservation of lateral buds of gentian by the encapsulation - dehydratation technique. Japanese Soc. for Plant Tissue Culture, Program and Abstracts of the Meeting, p:74
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  36. Li Y., Li F-F., Chen G-Q.,Ge X-J. 2007. Development of ten microsatellite loci for Gentiana crassicaulis (Gentianaceae). Conserv. Gent. 8:1499-1501
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  40. Menkovic N, Šavikin-Fodulovic K, Momcilovic I, Grubišic D. 2000. Quantitative determination of secoiridoid and g-pyrone compounds in Gentiana lutea cultured in vitro. Planta Medica 66: 96-98.
  41. Menkovic N, Šavikin-Fodulovic K, Vinterhalter B, Vinterhalter D, Jankovic T, Krstic D. 2000. Secoiridoid content in hairy roots of Gentiana punctata. Pharm. Pharmacol. Lett 10: 73-75.
  42. Menković N., Šavikin-Fodulović K., Vinterhalter B., Vinterhalter D., Grubišić D. 1998. Secoiridoid content of naturally grown and in vitro cultured Gentiana punctata. Pharmaceutical and Pharmacological Letters 8: 110-111.
  43. Mishiba K., Yamane K., Nakatsuka T., Nakano Y., Yamamura S., Abe J., Kawamura H., Takahata Y., Nishihara M. 2009. Genetic relationships in the genus Gentiana based on chloroplast DNA sequence data and nuclear DNA content. Breedimg Science 59: 119-127
  44. Mishiba K., Nishihara T., Abe Y., Hirano H., Yokoi T., Kikuchi A., Yammamura S. 2005. Consistent transcriptional silencing of 35S-driven transgense in gentian . Plant Journal 44: 541-556.
  45. Mishiba K-I., Nishihara M., Nakatsuka T., Abe Y., Hirano H., Yokoi Y., Kiuchi A., Yamamaura S. 2005. Consistent transcriptional silencing of 35-S driven transgenes in gentian. Plant J. 44:541-556
  46. Mishiba K., Nishihara M., Abe Y., Nakatsuka T., Kawamura K., Kodama K., Takesawa T., Abe J., Yamamura S.2006. Production of dwarf potted gentian using wild-type Agrobacteriun rhizogenes. Plant Biotechnology 23: 33-38
  47. Mishihara M., Nakatsuka T., Mizutani - FukuchiM.,Tanaka Y., Yamamura 2008. Gentians: from gene cloning to molecular breeding. In: Teixeria da Silva JA (ed) Floriculture, ornamental and plant biotechnology V. Global Science Books, London, pp 57-67
  48. Momčilović I., Grubišić D., Nešković M. 1997. Micropropagation of four Gentiana species (G. lutea, G. cruciata, G. purpurea and G. acaulis). Plant Cell Tissue and Organ Culture 49: 141-144.
  49. Momčilowić I, Grubišić D., Nešković M. 2001. Transgenic Gentiana species (Gentian). In: Bajaj YPS [ed.], Biotechnology in agriculture and forestry, vol. 48, Transgenic crops III, 123-138. Springer-Verlag, Berlin Heidelberg.
  50. Momčilowić I., Grubišić D., Kojić M, Nešković M. 1997. Agrobacterium rhizogenes - mediated transformation and plant regeneration of four Gentiana species. Plant Cell Tissue and Ogran Culture 50: 1-6.
  51. Morgan ER. 2004. Use of in ovulo embryo culture to produce interspecific hybrids between Gentiana triflora and Gentiana lutea. New Zealand Journal of Crop and Horticultural Science 32: 343-347.
  52. Morgan E.R., Butler R.M., Bicknell R.A. 1997. In vitro propagation of Gentiana cerina and Gentiana corymbifera. New Zealand Journal of Crop and Horticultural Science 25: 1- 8.
  53. Morgan E.R., Hofmann B.L., Grant J.E. 2003. Production of tetraploid Gentiana triflora var. japonica 'Royal Blue' plants. New Zealand Journal of Crop and Horticultural Science 31: 65-68
  54. Nakano M., Hosokawa K., Oomiya T., Yamamura S. 1995. Plant regeneratiopn from protyoplasts of Gentiana by embedding protoplasts in gellan gum. Plant Cell and Tissue, Organ Culture 41: 221-227.
  55. Nakatsuka T., Abe Y., Kakizaki Y., Kubota A., Shimada N., Nishihara M. 2009. Over-expression of Arabidopsis FT gene reduces juvenile phase and induces early flowering in ornamental gentian plants. Euphytica 168: 113-119
  56. Nakatsuka T., Mishiba K-I., Abe Y., Kubota A., Kakizaki Y., Yamamura S., Nihihara M. 2008. Flower color modification of gentian plants RNAi-mediated gene silencing.Plant Biotechnology 25:61-68
  57. Nakatsuka T., Nishihara M., Mishiba k., Hirano H., Yamamura S. 2006. Two different transposable elements inserted in flavonoid 3', 5' -hydroxylase gene contribute to pink flower coloration in Gentiana scabra. Mol.Genet. Genomics 275: 231-241
  58. Nakatsuka T., Nishihara M., Mishiba K., Yamamura S. 2005. Two different mutations are involved in the formation of white -flowerd gentian plants. Plant Sci. 168: 949-958.
  59. Nakatsuka T., Nishihara M., Mishiba K., Yamamura S. 2005. Temporal expression of flavonoid biosynthesis related genes regulates flower pigmentation in gentian plants. Plant Sci. 168: 1309-1318.
  60. Nakatsuka T., Sato K., Takahashi H., Yamamura S., NishiharaM. 2008. Cloning and characterization of UDP-glucose:anthocyanin 5-0- glucosyltransferase gene from blue-flowered gentian J.Exp. Bot. 59: 1241- 1252.
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  62. Nalawade S.M., Tsay H-S. 2004. In vitro propagation of some important chinese medicinal plants and their sustainable usage. In Vitro Cell Dev. Biol.-Plant 40:143-154.
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  64. Nishihara M., Nakatsuka T.. Mishibak., Hirano H., Yamamura.S 2006. Genetic regulation of flower pigmentation in Japanese Gentian Plant. 4th 4International Workshop on Anthocyanins, Rotorua, New Zealand 14- 17 February 2006, Abstract P8, pp66.
  65. Pawlowska B., Bach A., 2003. In vitro propagation of protected species Gentiana pneumonanthe L. for ornamental horticultural use. Folia Horticulturae 15/1: 113 -122
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  67. Raina R., Behera M.C., Chand R., Sharma Y. 2003. Reproductive biology of Gentiana kurroo Royle. Current Science 85: 667-670.
  68. Sharma N., Chandel K.P.S., Paul A. 1993. In vitro propagation of Gentiana kurroo - an indigenous threatened plant of medicinal importance. Plant Cell, Tissue and Organ Culture 34: 307-309.
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  70. Skrzypczak L. 1992. Roœliny z rodziny Gentianaceae z kultur in vitro potencjalnym Ÿródłem sekoirydoidów aktywnych biologicznie. Biotechnologia 4(19): 50 -54 (all in Polish).
  71. Skrzypczak L., Wesołowska M., Skrzypczak E. 1993. Gentiana species: in vitro culture, regeneration and production of secoiridoid glucosides. In: Bajaj YPS [ed.], Biotechnology in agriculture and forestry. vol. 21. Medicinal and aromatic plants IV, 172-186. Springer, Berlin, Heidelberg, New York.
  72. Skrzypczak-Pietraszek E, Skrzypczak L., Wesołowska M. 1993. Gentiana tibetica (King) from tissue culture. Scienta Pharmaceutica 61: 287-296.
  73. Suginuma C., Akihana T.1995. Transformation of gentian with Agrobacterium rhizogenes Acta Hort.(ISHS)393:153-160
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  94. Yuan Y.M., Kupfer P. 1997.The monophyll and rapie evaluation of Gentiana sect. Chondrophyllae Bunges.l. (Gentianaceae) evidence from the nucleotide sequences of the internal transcribed spacers of nuclear ribosomal DNA. Bot. J. Linn. Soc. 123:25-43
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  98. Zhang H.L., Xue S.H., Pu F., Tiwari R.K., Wang X.Y. 2010. Establishment of hairy root lines and analysis of gentiopictoside in the medicinal plant Gentiana macrophylla. Russian Journal of Plant Physiology 57: 110-117
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EUSTOMA

  1. Ballal S.K. 1990. Morphogenic potential of Exacum affine and Eustoma grandiflorum in tissue culture.Plant Growth Regulator Soc. Amer. Quart. 18; 73 - .76
  2. Deroles S., Bradley M., Davies K., Schwinnk., Manson D. 1995. Genertion of novel patterns in lisanthus flowers using an antisense chalcone synthase gene. Acta Horticulture 420: 26-28.
  3. Govannini A., Pecchioni N., Allavena A. 1996. Genetic transformation of lisanthus (Eustoma grandiflorum Griseb) by Agrobacterium rhizogenes. J.Genet. and Breed. 50: 35-40.
  4. Griesbach R.J., Bhat R.N. 1990. Colchicine - induced polyploidy in Eustoma grandiflora. HortScience 25: 1248-1286
  5. Griesbach R.J., Semeniuk P. 1987. Use of somaclonal variation in the improvement of Eustoma grandiflorum J.Heredity 78: 114-116
  6. Griesbach R.J., Semeniuk P., Roh M., Lawson R.H. 1988. Tissue culture in the improvement of Eustoma. Hort. Science 26: 791.
  7. Kunitake H., Nakashima T., Mori K., Tanaka M., Mii M. 1995. Plant regeneration from mesophyll protoplasts of lisanthus (Eustoma grandiflorum) by adding activated charcoal into protoplast culture medium. Plant Cell Tissue Organ Culture 43: 59 - 65.
  8. Ledger S.E., Deroles S.C., Manson D.G., Bradley J.M., Given N.K. 1997. Transformation of lisanthus. Plant Cell Reports 16: 853-858.
  9. Lindsay G.C., Hoppinf M.E., O'Brien I.E.W 1994. Detection of protoplast-derived DNA tetraploid Lisanthus (Eustoma grandiflorum) by leaf and flower characteristics and by flow cytometry. Plant Cell, Tissue and Organ Culture 38: 53-55
  10. O’Brien I.E.W., Lindsay G. 1993. Protoplasts to plants of Gentianaceae. Regeneration of lisanthus (Eustoma grandiflorum) is aqffected by calcium ion preconditioning, osmolarity and pH of the culture media. Plant, Cell Tissue and Organ Culture 33: 31-37.
  11. Semeniuk P., Griesbach R.J. 1987. In vitro propagation of prairie gentian. Plant Cell Tissue Organ Cult. 8: 249-253.
  12. Semeria L., Ruffoni B., Rabaglio M., Genga A., Vaira A.M., Accotto G.P., Allavena A. 1996. Genetic transformation of Eustoma grandiflorum by Agrobacterium tumefaciems. Plant Cell, Tissue and Organ Culture 47:67-72.
  13. Skrzypczak L., Wesołowska M., Thiem B. 1988. Callus culture and micropropagation of Eustoma grandiflora Shinn. Acta Soc. Bot. Pol. 57: 423-430.

 

CENTAURIUM

  1. Boresova H. 1988. Centaurium erythraea Rafn: Micropropagation and the production of the secoiridoid glucosides. In : Biotechnology in Agriculture and Forestry . Bajaj Y.P.S. (ed.) Springer- Verlag, Berlin, Heidelberg Vol.4, Medicinal and Aromatic Plants I, pp. 350-366
  2. Iriondo J.M., Perez C. 1969. Micropropagation and in vitro storage of Centaurium riguali Esteve (Gentianaceae). Israel Journal aof Plant Sciences 44:115-123.
  3. Jankovic T, Krstic D, Šavikin-Fodulovic K, Menkovic N, Grubišic D. 1997. Comparative investigation of secoiridoid compounds of Centaurium erythraea grown in nature and cultured in vitro. Pharm. Pharmacol. Lett. 7: 30-32.
  4. Jankovic T, Krstic D, Šavikin-Fodulovic K, Menkovic N. 2000. Xanthone compounds of Centaurium erythraea grown in nature and cultured in vitro. Pharm. Pharmacol. Lett. 10: 23-25.
  5. Jankovic T, Krstic D, Šavikin-Fodulovic K, Menkovic N. 2002. Xanthones and secoiridoids from hairy root cultures of Centaurium erythraea and C. pulchellum. Planta Medica 68: 944-946.
  6. Krstic D, Jankovic T, Šavikin-Fodulovic K, Menkovic N, Grubišic D. 2003. Secoiridoids and Xanthones in the shoots and root of Centaurium pulchellum cultured in vitro. In vitro Cellular and Developmental Biology - Plant 39: 203-207.
  7. Piatczak E., Chmiel A., Wysokińska H., 2005. Mist trickling bioreactor for Centauria erythrea Rafn growth of shoots and production of secoiridoids. Biotechnology Letters 27: 721 -724.
  8. Piatczak E., Królicka A., Wysokińska H. 2006. Genetic transformation of Centaurium erythrae Rafn. by Agrobacterium rhizogenes and the production of secoiridoids. Plant Cell Rep. 25: 1308-1315
  9. Piatczak E., Wysokińska H. 2005. Liquid culture system for shoot multiplication and secoiridoid production in micropropagated plants of Centaurium erythrea Rafn. Plant Sci. 168; 431-437
  10. Piatczak E., Wysokińska H. 2003. In vitro regeneration of Centaurium erythraea Rafn from shoot tips and seedling explamts. Acta Soc. Bot. Pol. 72:283-288
  11. Subotic A, Budimir S, Grubišic D, Momcilovic I. 2003/2004. Direct regeneration of shoots from hairy root cultures of Centaurium erythraea inoculated with Agrobacterium rhizogenes. Biologia Plantarum 47: 617-619.
  12. Vagnerova H. 1992. Micropropagaton of common centaury. Biotechnology in Agrticultue and Forestry 19: 388-399, Bajaj Y.P.S ed., Springer-Verlag, Berlin, Heidelberg.

 

BLACKSTONIA

  1. Bijelovic A, Rosic N, Miljus Djukic J, Ninkovic S, Grubišic D. 2004. In vitro regeneration and transformation of Blackstonia perfoliata. Biologia Plantarum 48: 333-338.
  2. Sobovljevic A., Rosic N., Jankovic T., Grubusic D. 2006. Secoiridoid content of Blackstonia perfoliata in vivo and in vitro. In Vitro Cell. Dev. Biol. Plant 42: 247-431

 

SWERTIA

  1. Ahuja A., Koul S., Koul B.L., Verma N.K., Kaul M.K., Raina R.K., Qazi G.N. 2003. Media composition for faster propagation of Swertia chirayita. WO 03/045132 AL. US Patent 7238527
  2. Balaraju K., Agastin P., Ignacimuthu S. 2009. Micropropagation of Swertia chirata Buch.-Hams. ex Wall.: a criticall endangered medicinal herb. Acta Physiol. Plany. 31:487-494.
  3. Chaudhuri R.K., Pal A., Jha T.B. 2007. Production of genetically uniform plants from nodal explants of Swertia chirata Buch.-Ham. ex Wall. an endangered medicinal herb. In vitro Cell. Dev. Biol. - Plant 43:467 - 472
  4. Chaudhuri R.K., Pal A., Jha T.B., 2008. Conservation of Swertia chirata through direct shoot multiplication from leaf explants. Plant Biotechnology Report 2:213 -218.
  5. Ishimura K., Sudo H.,Satake M., Matsunaga Y., Takemoto S.,Shimomura K., 1990. Amarogentin, amaroswerin and four xanthones from root cultureof Swertia japonica. Phytochemistry 29: 1563 – 1565.
  6. Joshi P., V. Dhawan. 2007. Assessment of genetic fidelity of micropropagated Swertia chirayita by ISSR marker assay. Biologia Plantarum 51: 22-26.
  7. Joshi P., Dhawan V. 2007. Axillary multiplication of Swertia chirayita (Roxb.Ex Fleming) H.Karst., a critically endangered medicinal herb of temperate Himalayes. In vitro Cell Dev Biol - Plant 43: 631-638.
  8. Kitamura Y., Dono M., Miura H., Sugi M. 1988. Production of swertiamarin in cultured tissue of Swertia pseudochinensis. Chem.Pharm. Bull. 36; 1575-1576
  9. Miura H.1991. Swertia spp. In vitro culture, regeneration and the production of secondary metabilotes. In: Bajaj Y.P.S. ed. Biotechnology in Agriculture and Forestry. Medicinal and aromatiuc plants III, vol.15 Springer, Berlin, Heidelberg, New York pp. 451-463
  10. Wawrosch C., Maskay N., Kopp B. 1999. Micropropagation of the threatened Nepalese medicinal plant Swertia chirata Buch. Ham Ex Wall. Plant Cell Rep. 18: 997 -1001

 

EXACUM

  1. Ballal S.K. 1990. Morphogenic potential of Exacum affine and Eustoma grandiflorum in tissue culture.Plant Growth Regulator Soc. Amer. Quart. 18; 73 - .76
  2. Torres K.C., Natarell N.J. 1984. In vitro propagation of Exacum. Hort Science 19; 224 -225
  3. Williams S., Wolf S., Holcomb E.J. 1983. Growth and flowering of Exacum affine ay three radiant energy levels. HortScience 18; 366-367