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2015 | 37 | 05 |

Tytuł artykułu

Effect of several medium factors on polysaccharide and alkaloid accumulation in protocorm-like bodies of Dendrobium candidum during bioreactor culture

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Polysaccharides and alkaloids are the most important bioactive compounds found in Dendrobium candidum. For mass production of polysaccharide and alkaloids from protocorm-like bodies (PLBs), this study optimized medium condition by investigating several factors affecting D. candidum PLB biomass and bioactive compound accumulation in bioreactors. During PLB bioreactor culture, sucrose is a suitable carbon source at an optimal concentration of 30 g l-1 for polysaccharide and alkaloid production. High production of polysaccharides and alkaloids was determined in salt strengths of 1/29, 3/49, and full strength of the MS medium. Phosphate and ammonium/nitrate ratio in normal half-strength MS medium had to be adjusted, and 1.8 mmol phosphate and 30 mmol of NO3- as the sole nitrogen source were suitable. Production of bioactive compounds by PLB bioreactor culture is a feasible and efficient method, and polysaccharide and alkaloid yields can be improved by modifying the culture medium.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

37

Numer

05

Opis fizyczny

Article: 94 [9 p.], fig.,ref.

Twórcy

autor
  • Key Laboratory of Nature Resource of Changhai Mountain and Functional Molecular, Ministry of Education, Yanbian University, Park Road 977, Yanji 133002, Jilin, China
autor
  • Key Laboratory of Nature Resource of Changhai Mountain and Functional Molecular, Ministry of Education, Yanbian University, Park Road 977, Yanji 133002, Jilin, China
autor
  • Key Laboratory of Nature Resource of Changhai Mountain and Functional Molecular, Ministry of Education, Yanbian University, Park Road 977, Yanji 133002, Jilin, China
autor
  • Key Laboratory of Nature Resource of Changhai Mountain and Functional Molecular, Ministry of Education, Yanbian University, Park Road 977, Yanji 133002, Jilin, China
autor
  • Key Laboratory of Nature Resource of Changhai Mountain and Functional Molecular, Ministry of Education, Yanbian University, Park Road 977, Yanji 133002, Jilin, China

Bibliografia

  • Biao L, Wang BC, Tang K, Liang YL, Wang J, Wei JM (2006) A simple and convenient approach for isolating RNA from highly viscous plant tissue rich in polysaccharides. Colloid Surf B 49:101–105
  • Bush L, Wilkinson H, Schardl C (1997) Bioprotective alkaloids of grass-fungal endophyte symbioses. Plant Physiol 114:1–7
  • Cha XQ, Luo JP (2004) Nutrient requirement for growth and polysaccharide accumulation in liquid cultures of protocorm-like dodies of Dendrobium huoshanene. J Hefei Univ Technol 27:53–57
  • Cha XQ, Luo JP, Jiang ST (2005) Studies on the synthesis of active polysaccharides in suspension cultures of protocorm-like bodies of Dendrobium huoshanense. Food Sci 26:41–44
  • Chen X, Guo S (2001) Advances in the research of constituents and pharmacology of Dendrobium. Nat Prod Res Dev 13:70–75
  • Chugh S, Guha S, Rao IU (2009) Micropropagation of orchids: a review on the potential of different explants. Sci Hortic 122:507–520
  • Cui XH, Chakrabarty D, Lee EJ, Paek KY (2010) Production of adventitious roots and secondary metabolites by Hypericum perforatum L. in a bioreactor. Bioresour Technol 101:4708–4716
  • Cui HY, Baque MA, Lee EJ, Paek KY (2013) Scale-up of adventitious root cultures of Echinacea angustifolia in a pilotscale bioreactor for the production of biomass and caffeic acid derivatives. Plant Biotechnol Rep 7:297–308
  • Cui HY, Murthy HN, Moh SH, Cui YY, Lee EJ, Paek KY (2014) Production of biomass and bioactive compounds in protocorm cultures of Dendrobium candidum Wall ex Lindl. using balloon type bubble bioreactors. Ind Crop Prod 53:28–33
  • Dan Y, Meng ZX, Guo SX (2012) Effects of forty strains of orchidaceae mycorrhizal fungi on growth of protocorms and plantlets of Dendrobium candidum and D. nobile. Afr J Microbiol Res 6:34–39
  • Dubios M, Gilles KA, Hamilton JK, Rebers PA, Smith F (1956) Colorimetric method for determination of sugars and related substances. Anal Chem 28:350–356
  • Gao R, Wu SQ, Piao XC, Park SY, Lian ML (2014) Micropropagation of Cymbidium sinense using continuous and temporary airlift bioreactor systems. Acta Physiol Plant 36:117–124
  • He TG, Yang LT, Li YR, Wang CQ, Su J (2007) Effect of sucrose on growth of protocorms of Dendrobium candidum and accumulation of polysaccharide. J Anhui Agric Sci 35:3817–3819
  • Huang T, Gao W, Wang J (2010) Selection and optimization of a high-producing tissue culture of Panax ginseng C. A. Meyer. Acta Physiol Plant 32:765–772
  • Jiang ST, Wei M, Luo JP (2006) Effect of phosphate on cell growth and polysaccharide production by suspension cultures of protocorm-like bodies of Dendrobium huoshanense. Chin J Biotechnol 22:613–617
  • Leung PC, Cheng KF (2008) Good agricultural practice (GAP)—Does it ensure a perfect supply of medicinal herbs for research and drug development? Int J Appl Res Nat Prod 1:1–8
  • Li M, Hirata Y, Xu G, Niwa M (1990) Determination of polysaccharide contents in the drugs of Dendrobium. Chin Tradit Herb Drugs 21:10–12
  • Misic D, Siler B, Skoric M, Djurickovic MS, Zivkovic JN, Jovanovic V, Giba Z (2013) Secoiridoid glycosides production by Centaurium maritimum (L.) Fritch hairy root cultures in temporary immersion bioreactor. Process Biochem 48:1587–1591
  • Murashige T, Skoog F (1962) A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiol Plant 15:473–497
  • Nagella P, Murthy HN (2011) Effects of macroelements and nitrogen source on biomass accumulation and withanolide-A production from cell suspension cultures of Withania somnifera (L.) Dunal. Plant Cell Tiss Org Cult 104:119–124
  • Paek KY, Hahn EJ, Son SH (2001) Application of bioreactors for large-scale micropropagation systems of plants. In Vitro Cell Dev Biol Plant 37:149–157
  • Paek KY, Chakrabarty D, Hahn EJ (2005) Application of bioreactor systems for large-scale production of horticultural and medicinal plants. Plant Cell Tiss Org Cult 81:287–300
  • Park SY, Murthy HN, Paek KY (2000) Mass multiplication of protocorm-like bodies using bioreactor system and subsequent plant regeneration in Phalaenopsis. Plant Cell Tiss Org Cult 63:67–72
  • Shiau YJ, Nalawade SM, Hsia CN, Mulabagal V, Tsay HS (2005) In vitro propagation of the Chinese medicinal plant, Dendrobium candidum Wall. Ex Lindl., from axenic nodal segments. In Vitro Cell Dev Biol Plant 41:666–670
  • Shim KM, Hahn EJ, Jeon WK, Paek KY (2010) Accumulation of cell biomass, anthraquinones, phenolics, and flavonoids as affected by auxin, cytokinin, and medium salt strength in cell suspension culture of Morinda citrifolia. Kor J Hortic Sci Technol 28:288–294
  • Sivakumar G, Kim SJ, Hahn EJ, Paek KY (2005) Optimizing environmental factors for large-scale multiplication of chrysanthemum (Chrysanthemum grandiflorum) in balloon-type bioreactor culture. In Vitro Cell Dev Biol Plant 41:822–825
  • Thorpe T, Meier D (1972) Starch metabolism, respiration, and shoot formation in tobacco callus cultures. Physiol Plant 27:365–369
  • Wei XX, Su J, He TG (2008) Effects of several factors on protocorm growth and polysaccharide accumulation in suspension cultures of protocorm of Dendrobium candidum. Guangxi Agr Sci 39:601–606
  • Wu CH, Dewir YH, Hahn EJ, Paek KY (2006) Optimization of culturing conditions for the production of biomass and phenolics from adventitious roots of Echinacea angustifolia. J Plant Biol 49:193–199
  • Wu RZ, Chakrabarty D, Hahn EJ, Paek KY (2007) Micropropagation of an endangered jewel orchid (Anoectochilus formosanus) using bioreactor system. Hortic Environ Biotechnol 48:376–380
  • Yang JF, Piao XC, Sun D, Lian ML (2010) Production of protocormlike bodies with bioreactor and regeneration in vitro of Oncidium ‘Sugar Sweet’. Sci Hortic 125:712–717
  • Yin SS, Gao WY, Liang YY, Wang J, Liu H, Wei CL, Zuo BM (2013a) Influence of sucrose concentration and phosphate source on biomass and metabolite accumulation in adventitious roots of Pseudostellaria heterophylla. Acta Physiol Plant 35:1579–1585
  • Yin SS, Liang YY, Gao WY, Wang J, Jing SS, Zhang Y, Liu H (2013b) Influence of medium salt strength and nitrogen source on biomass and metabolite accumulation in adventitious root cultures of Pseudostellaria heterophylla. Acta Physiol Plant 35:2623–2628
  • Yoon YJ, Murthy HN, Hahn EJ, Paek KY (2007) Biomass production of Anoectochilus formosanus Hayata in a bioreactor system. J Plant Biol 50:573–576
  • Yu KW, Gao WY, Hahn EJ, Paek KY (2001) Effects of macro elements and nitrogen source on adventitious root growth and ginsenoside production in ginseng (Panax ginseng C. A. Meyer). J Plant Biol 44:179–184
  • Zeng SJ, Wang J, Wu KL, da Silva JAT, Zhang JX, Duan J (2013) In vitro propagation of Paphiopedilum hangianum Perner and Gruss. Sci Hortic 151:147–156
  • Zhao P, Wang W, Feng FS, Wu F, Yang ZQ, Wang WJ (2007) Highfrequency shoot regeneration through transverse thin cell layer culture in Dendrobium candidum Wall Ex Lindl. Plant Cell Tiss Org Cult 90:131–139
  • Zhao P, Wu F, Feng FS, Wang WJ (2008) Protocorm-like body (PLB) formation and plant regeneration from the callus culture of Dendrobium candidum Wall ex Lindl. In Vitro Cell Dev Biol Plant 44:178–185
  • Zheng Y, Jiang W, Silva EN, Mao L, Hannaway DB, Lu H (2012) Optimization of shade condition and harvest time for Dendrobium candidum plants based on leaf gas exchange, alkaloids and polysaccharides contents. Plant Omics 5:253–260
  • Zhong JJ, Wang SJ (1998) Effects of nitrogen source on the production of ginseng saponin and polysaccharide by cell cultures of Panax quinquefolium. Process Biochem 23:671–675
  • Zhong JJ, Zhu QX (1995) Effect of initial phosphate concentration on cell growth and ginsenoside saponin production by suspended cultures of Panax notoginseng. Appl Biochem Biotechnol 55:241–247

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-30793dac-d440-48e2-ab57-5b69739b12b0
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