African Journal of
Biotechnology

  • Abbreviation: Afr. J. Biotechnol.
  • Language: English
  • ISSN: 1684-5315
  • DOI: 10.5897/AJB
  • Start Year: 2002
  • Published Articles: 12488

Full Length Research Paper

Micropropagation of an endangered medicinal herb Chlorophytum borivilianum Sant. et Fernand. in bioreactor

Mohd. Zahid Rizvi*
  • Mohd. Zahid Rizvi*
  • Plant Tissue Culture Division, Central Institute of Medicinal and Aromatic Plants (CIMAP) near Kukrail Picnic Spot Road, P.O. CIMAP-226015, Lucknow, Uttar Pradesh, India; †Present Address: Department of Botany, Shia Post Graduate College, Sitapur Road, Lucknow-226020, Uttar Pradesh, India.
  • Google Scholar
Arun Kumar Kukreja
  • Arun Kumar Kukreja
  • Plant Tissue Culture Division, Central Institute of Medicinal and Aromatic Plants (CIMAP) near Kukrail Picnic Spot Road, P.O. CIMAP-226015, Lucknow, Uttar Pradesh, India; †Present Address: Department of Botany, Shia Post Graduate College, Sitapur Road, Lucknow-226020, Uttar Pradesh, India.
  • Google Scholar


  •  Received: 06 June 2013
  •  Accepted: 14 March 2014
  •  Published: 23 April 2014

References

Archambault J, Williams RD, Lavoie L, Pépin MF, Chavarie C (1994). Production of somatic embryos in a helical ribbon impeller bioreactor. Biotechnol. Bioeng. 44: 930-943.
Crossref
 
Bordia PC, Joshi A, Simlot MM (1995). Safed musli. In: Advances in Horticulture: Medicinal and Aromatic plants, Chadha KL, Gupta R (Eds). Malhotra Pub. House, New Delhi. 2: 429-451.
 
Borkowska B (2001). Morphological and physiological characteristics of micropropagated strawberry plants rooted in vitro or ex vitro. Sci. Hortic. 89(3): 195-206.
Crossref
 
Chakrabarty D, Hahn EJ, Yoon YS, Paek KY (2003). Micropropagation of apple root stock 'M9 EMLA' using bioreactor. J. Hortic. Sci. Biotechnol. 78: 605-609.
 

Debergh PC, Zimmerman RH (1991). Micropropagation: Technology and Application. Kluwer Acad. Pub., Dordrecht.

Google Scholar

 

Debnath SC (2009). A scale-up system for lowbush blueberry micropropagation using a bioreactor. Hortic. Sci. 44(7): 1962-1966.

Google Scholar

 
Deore SL, Khadabadi SS (2010). Isolation and characterization of phytoconstituents from Chlorophytum borivilianum. Phcog. Res. 2: 343-349
Crossref
 

Farahani F, Majd A (2012). Comparison of liquid culture methods and effect of temporary immersion bioreactor on growth and multiplication of banana (Musa, cv. Dwarf Cavendish). Afr. J. Biotechnol. 11(33): 8302-8308.

Google Scholar

 

Gurel A (2009). Propagation possibilities of commercially important plants through tissue culture techniques. Intl. J. Nat. Eng. Sci. 3(2):7-9

Google Scholar

 

Haq I, Dahot MU (2007). Effect of permanent and temporary immersion systems on banana micropropagation. Pak. J. Bot. 39: 1763-1772.

Google Scholar

 
Honda H, Liu C, Kobayashi T (2001). ''Large scale plant propagation''. In: Advances in Biochemical Engineering/Biotechnology, Scheper T (Ed). Springer-Verlag Berlin, Heidelberg. 72: 157-182.
Pubmed
 
Ibaraki Y, Kurata K (2001). Automation of somatic embryo production. Plant Cell Tissue Organ Cult. 65: 179-199.
Crossref
 

Jin H, Piao XC, Sun D, Xiu JR, Lian ML (2007). Mass production of rhizome and shoot in Cymbidum niveo-maginatum using simple bioreactor. J. Northeast For. Univ. 35(7): 44-45, 48.

Google Scholar

 
Kaushik N (2005). Saponins of Chlorophytum species. Phytochem. Rev. 4: 191-196.
Crossref
 
Kim EK (2002). Propagation of multiple shoots and microbulbs using bioreactor system in garlic. MS Thesis, Chungbuk National University, Korea.
 
Kozai T, Kubota C, Jeong BR (1997). Environmental control for the large scale production of plants through in vitro techniques. Plant Cell Tissue Organ Cult. 51: 49-56.
Crossref
 
Kumar M, Meena P, Verma S, Kumar M, Kumar A (2010). Anti-tumour, anti-mutagenic and chemomodulatory potential of Chlorophytum borivilianum. Asian Pac. J. Cancer Prev. 11(2):327-334
Pubmed
 

McGranahan G, Hackett WP, Lampinen BD, Leslie C, Bujazha D, Hirbod S (2006). Clonal propagation of walnut rootstock genotypes for genetic improvement. Wallnut Res. Rep. p. 71.

Google Scholar

 

Mehrotra S, Manoj KG, Arun K, Bhartendu NM (2007). Efficiency of liquid culture systems over conventional micropropagation: A progress towards commercialization. Afr. J. Biotechnol. 6(13): 5-6.

View

 
Mitra A, Bhattacharya PS, Dey S, Sawarkar SK, Bhattacharyya BC (1998). Photoautotrophic in vitro culture of Chrysanthemum under CO2 enrichment. Biotechnol. Tech. 12: 335-337.
Crossref
 
Murashige T, Skoog F (1962). A revised medium for rapid growth and bioassay with tobacco tissue cultures. Physiol. Plant. 15: 473-497.
Crossref
 
Nayar MP, Sastry ARK (1988). Chlorophytum borivilianum. In: Red Data Book of Indian Plants, Nayar MP, Sastry ARK (Eds). Bot. Survey India. 2: 412.
 
Paek KY, Chakrabarty D, Hahn EJ (2005). Application of bioreactor systems for large scale production of horticultural and medicinal plants. Plant Cell Tissue Organ Cult. 81: 287-300.
Crossref
 
Paek KY, Hahn EJ, Son SH (2001). Application of bioreactors of large scale micropropagation systems of plants. In Vitro Cell. Dev. Biol. Plant. 37: 149-157.
Crossref
 
Preil W (1991). Application of bioreactors in plant propagation. In: Micropropagation: Technology and Application. Debergh PC, Zimmerman RH (Eds). Kluwer Acad. Pub., Dordrecht. pp. 425-455.
Crossref
 
Ramawat KG, Jain S, Suri SS, Arora DK (1988). Aphrodisiac plants of Aravalli Hills with special reference to safed musli. In: Role of Biotechnology in Medicinal and Aromatic Plants, Khan I, Khanum A (Eds). Ukaz Pub., Hyderabad. pp. 210-223.
 
Roels S, Noceda C, Escalona M, Sandoval J, Canal MJ, Rodrigues R, Debergh P (2006). The effect of headspace renewal in a temporary immersion bioreactor on plantain (Musa AAB) shoot proliferation and quality. Plant Cell Tissue Organ Cult. 84: 155-163.
Crossref
 
Ross S, Castillo A (2009). Mass propagation of Vaccinium corymbosum in bioreactors. Agrociencia Uruguay. 13(2): 1-8.
 

Sajid GM, Pervaiz S (2008). Bioreactor mediated growth, culture ventilation, stationary and shake culture effects on in vitro growth of sugarcane. Pak. J. Bot. 40(5): 1949-1956.

Google Scholar

 

Scheidt GN, Silva ALL, Dronk AG, Biasi LA, Arakaki AH, Soccol CR (2009). In vitro multiplication of Oncidium leucochilum (Orchidaceae) in different culture system. Biociências. 17: 82-85.

Google Scholar

 

Takayama S (1991). Mass propagation of plants through shake and bioreactor culture techniques. In: Biotechnology in Agriculture and Forestry: High-tech and Micropropagation, Bajaj YPS (Ed), Springer-Verlag, Berlin. 17: 1-46.

Google Scholar

 
Tandon M, Shukla YN, Thakur RS (1992). 4-hydroxyl-8, 11-oxidohemicosanol and other constituents from Chlorophytum arundinaceum roots. Phytochem. 31: 2525-2526.
Crossref
 
Thakur GS, Bag M, Sanodiya BS, Debnath M, Zacharia A, Bhadauriya P, Prasad GB, Bisen PS (2009). Chlorophytum borivilianum : a white gold for biopharmaceuticals and neutraceuticals. Curr. Pharm. Biotechnol. 10(7): 650-666.
Crossref
 

Wu RZ, Chakrabarty D, Hahn EJ, Paek KY (2007). Micropropagation of an endangered jewel orchid (Anoectochilus formosanus) using bioreactor system. Hortic., Environ. Biotechnol. 48 (6): 376-380.

Google Scholar

 

Yesil-Celiktas O, Gurel A, Vardar-Sukan F (2010). Large scale cultivation of plant cell and tissue culture in bioreactors. Transworld Res. Network, Kerala, India. pp. 1-54.

Google Scholar

 
Zhu LH, Li XY, Welander M (2005). Optimisation of growing conditions for the apple rootstock M26 grown in RITA containers using temporary immersion principle. Plant Cell Tissue Organ Cult.
Crossref