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Optimization of in vitro asymbiotic seed germination protocol for Serapias vomeracea Cover

Optimization of in vitro asymbiotic seed germination protocol for Serapias vomeracea

By: Arda Acemi and  Fazıl Özen  
Open Access
|Jul 2019

References

  1. Bellusci F, Pellegrino G, Musacchio A. Different levels of inbreeding depression between outcrossing and selfing Serapias species (Orchidaceae). Biol Plant 2009; 53: 175-178.10.1007/s10535-009-0029-8
  2. Acemi A, Çobanoğlu Ö, Türker-Kaya S. FTIR-based comparative analysis of glucomannan contents in some tuberous orchids, and effects of pre-processing on glucomannan measurement. J Sci Food Agric 2019; 99: 3681–3686.3063826510.1002/jsfa.9596
  3. Arvill A, Bodin L. Effect of short-term ingestion of konjac glucomannan on serum cholesterol in healthy men. Am J Clin Nutr 1995; 61: 585-589.10.1093/ajcn/61.3.5857872224
  4. Sood N, Baker LW, Coleman CI. Effect of glucomannan on plasma lipid and glucose concentrations, body weight, and blood pressure: Systematic review and meta-analysis. Am J Clin Nutr 2008; 88: 1167-1175.1884280810.1093/ajcn/88.4.1167
  5. Arditti J. Micropropagation of orchids 2nd ed Blackwell Publishing, UK, 2008.
  6. Rasmussen HN, Dixon KW, Jersáková J, Těšitelová T. Germination and seedling establishment in orchids: a complex of requirements. Ann Bot 2015; 116: 391-402.10.1093/aob/mcv08726271118
  7. Paul S, Kumaria S, Tandon P. An effective nutrient medium for asymbiotic seed germination and large-scale in vitro regeneration of Dendrobium hookerianum a threatened orchid of northeast India, AoB Plants 2012; plr032.
  8. Yeung EC, Park J, Harry IS. Orchid seed germination and micro-propagation I: Background information and related protocols; pp. 101-125 in Lee YI; Yeung ET (Eds) Orchid Propagation: From laboratories to greenhouses—Methods and protocols New York, Springer Protocols Handbooks, Humana Press, 2018.
  9. Katsalirou E, Gerakis A, Haldas X, Deconninck G. Optimal disinfection times for seeds of Mediterranean orchids propagated on nutrient media. Eur J Environ Sci 2017; 7: 119-124.
  10. Özkoç I, Dalcı M. Germination of the seeds of Orchis laxiflora Lam. (Orchidaceae) through asymbiotic culture techniques. Turk J Bot 1994; 18: 461-464.
  11. Gümüş C, Ellialtıoğlu Ş. Seed germination and development of Serapias vomeracea (Burm. fil.) Briq. ssp. orientalis Greuter in tissue culture. Res J Biotechnol 2012; 7: 4-8.
  12. Knudson L. A new nutrient solution for germination of orchid seed. Amer Orchid Soc Bull 1946; 15: 214-217.
  13. Vacin E, Went FW. Some pH changes in nutrient solutions. Bot Gaz 1949; 110: 605-613.10.1086/335561
  14. Lindemann EG, Gunckel JE, Davidson OW. Meristem culture of Cattleya Amer Orchid Soc Bull 1970; 39: 1002-1004.
  15. Yamazaki J, Miyoshi K. In vitro asymbiotic germination of immature seed and formation of protocorm by Cephalanthera falcata (Orchidaceae), Ann Bot 2006; 98: 1197-1206.10.1093/aob/mcl22317071633
  16. Yeung EC. A perspective on orchid seed and protocorm development. Bot Stud 2017; 58: 33.10.1186/s40529-017-0188-428779349
  17. Kauth PJ, Dutra D, Johnson TR, Stewart SL, Kane ME, Vendrame W. Techniques and applications of in vitro orchid seed germination; pp. 375–391 in Teixeira da Silva, J.A. (Ed.) Floriculture, Ornamental and Plant Biotechnology: Advances and Topical Issues Isleworth, UK, Global Science Book, 2008.
  18. Ponert J, Vosolsobê S, Kmecová K, Lipavská H. European orchid cultivation – from seed to mature plant. Eur J Environ Sci 2011; 1: 95-107.
  19. Ercole E, Rodda M, Girlanda M, Perotto S. Establishment of a symbiotic in vitro system between a green meadow orchid and a Rhizoctonia-like fungus. Bio-protocol 2015; 5(10): e1482.
  20. Barsberg S, Rasmussen HN, Kodahl N. Composition of Cypripedium calceolus (Orchidaceae) seeds analyzed by attenuated total reflectance ir spectroscopy: In search of understanding longevity in the ground. Am J Bot 2013; 100(10): 2066–2073.10.3732/ajb.120064624070862
  21. Bektaş E, Cüce M, Sökmen A. In vitro germination, protocorm formation and plantlet development of Orchis coriophora (Orchidaceae), a naturally growing orchid species in Turkey. Turk J Bot 2013; 37: 336-342.
  22. Bektaş E, Sökmen A. In vitro seed germination, plantlet growth, tuberization, and synthetic seed production of Serapias vomeracea (Burm.f.) Briq. Turk J Bot 2016; 40: 584-594.10.3906/bot-1512-13
  23. Zahara M, Datta A, Boonkorkaew P, Mishra A. The effects of Different media, sucrose concentrations and natural additives on plant-let growth of Phalaenopsis hybrid ‘Pink’. Braz Arch Biol Technol 2017; 60: e17160149.
  24. De Long JR, Swarts ND, Dixon KW, Egerton-Warburton LM. Mycorrhizal preference promotes habitat invasion by a native Australian orchid: Microtis media Ann Bot 2012; 111: 409-18.23275632
  25. Yoder JA, Zettler LW, Stewart SL. Water requirements of terrestrial and epiphytic orchid seeds and seedlings, and evidence for water uptake by means of mycotrophy. Plant Sci 2000; 156: 145-150.1093652010.1016/S0168-9452(00)00246-6
  26. Tsai W-T, Chu C-Y. Static liquid culture of Doritaenopsis seedlings. Hortscience 2008; 43: 206–210.10.21273/HORTSCI.43.1.206
  27. Edwin FG. Plant propagation by tissue culture Exegetics Ltd., Edington Wilts, UK, 1993.
  28. Gogoi K, Kumaria S, Tandon P. Ex situ conservation of Cymbidium eburneum Lindl.: a threatened and vulnerable orchid, by asymbiotic seed germination. 3 Biotech 2012; 2: 337.
  29. Alexander C, Alexander IJ, Hadley G. Phosphate uptake by Goody-era repens in relation to mycorrhizal infection. New Phytol 1984; 97: 401-411.10.1111/j.1469-8137.1984.tb03606.x
  30. Rodrigues DT, Novais RF, Alvarez VH, Dias JMM, Villani EMA. Orchid growth and nutrition in response to mineral and organic fertilizers. Rev Bras Cienc Solo 2010; 34: 1609-1616.10.1590/S0100-06832010000500014
  31. Fochi V, Chitarra V, Kohler A, Voyron S, Singan VR, Lindquist EA, Barry KW, Girlanda M, Grigoriev IV, Martin F, Balestrini R, Perotto S. Fungal and plant gene expression in the Tulasnella calospora – Serapias vomeracea symbiosis provides clues about nitrogen pathways in orchid mycorrhizas. New Phytol 2017; 213: 365-379.10.1111/nph.1427927859287
  32. Kauth PJ, Vendrame W, Kane ME. In vitro seed culture and seedling development of Calopogon tuberosus Plant Cell Tissue Organ Cult 2006; 85: 95-102.
  33. Das AK, Das J, Gogoi HK, Srivastava RB. Mass propagation of orchids through in vitro seed culture technology. J Cell Tissue Cult Res 2008; 8: 1585-1588.
  34. Philip RJ, Kakati JP, Sebestinraj J, Suriya K. In vitro seed germination of Cymbidium aloifolium (L.) Sw., a potential medicinal orchid from Eastern Ghats of Tamil Nadu, India. J Plant Biotechnol 2017; 44: 343-348.10.5010/JPB.2017.44.3.343
Language: English
Page range: 143 - 151
Published on: Jul 25, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Arda Acemi, Fazıl Özen, published by European Biotechnology Thematic Network Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.