Agriculture Reference
In-Depth Information
Rao RS, Ravishankar GA (2002) Plant cell cultures: chemical factories of secondary metabolites.
Biotech Advan 20:101-153
Ravishankar GA, Grewal S (1991) Development of media for growth of Dioscorea deltoidea cells
and in-vitro diosgenin production: Influence of media constituents and nutrient stress. Biotech
Lett 13:125-130
Rijhwani SK, Shanks JV (1998) Effect of elicitor dosage and exposure time on biosynthesis of
indole alkaloids by Catharanthus roseus hairy root culture. Biotechnol Prog 14:442-449
Robins RI (1994) Secondary products from cultured cells and organs: Molecular and cellular ap-
proaches. In: Dixon RA, Gonzales, RA (eds) Plant Cell Culture. IRI Press, NY
Roemis T (2001) Protein kinases in the plant defence response. Curr Opi Plant Biol 4:407-414
Roos W, Evers S, Hieke M, Tschöpe M, Schumann B (1998) Shifts of intracellular pH distribution
as a part of signal mechanism leading to the elicitation of benzophenanthridine alkaloids. Plant
Physiol 118:349-364
Ruiz-May E, Galaz-Ávalos RM, Loyola-Vargas VM (2009) Differential secretion and accumula-
tion of terpene indole alkaloids in hairy roots of Catharanthus roseus treated with Methyl
Jasmonate. Mol Biotechnol 41:278-285
Schmeller T, Wink M (1998) Utilization of alkaloids in modern medicine. In: Roberts MF, Wink
M (eds) Alkaloids. Biochemistry, ecology, and medicinal applications. Plenum Press, New
York, pp 435-459
Scragg AH (1992) Bioreactors for mass cultivation of plant cells. In: Fowler MW, Warren GS (eds)
Plant biotechnology. Peragmon Press, England, pp 45-62
Senoussi MM, Bassa Nora B, Joêl C (2009) Impact of hypoxia on the growth and alkaloid accumu-
lation in Catharanthus roseus cell suspension. Acta Physiol Plant 31:359-362
Shanks JV, Bhadra R, Morgan J, Rijhwani S, Vani S (1998) Quantification of metabolites in the
indole alkaloid pathways of Catharassnthus roseus : implications for metabolic engineering.
Biotechnol Bioeng 58:333-338
Sharma M, Sharma A, Kumar A, Basu SK (2011) Enhancement of secondary metabo;ites in cul-
tured plant cells through stress stimulus. American J Plant Physiol 6:50-71
Shirsau K, Nakajima H, Krishnamachari RV, Dixon RA, Lamb C (1997) Salicylic acid potentiates
an agonist-dependent gain control that amplifies pathogen signals in the activation of defense
mechanisms. Plant Cell 9:261-270
Shukla AK, Shasany AK, Verma RK, Gupta MM, Mathur AK, Khanuja SP (2010) Influence of cel-
lular differentiation and elicitation on intermediate and late steps of terpenoid indole alkaloid
biosynthesis in Catharanthus roseus . Protoplasma 242:35-47
Siddiqui ZH, Mujib A, Ahmad MM, Ali A (2010) Fungal elicitors: A potent approach for enhanc-
ing secondary metabolites in cultured cells. In: Gupta VK, Tuohy M, Gaur RK (eds) Fungal
biochemistry and biotechnology. Lap Lambert Academic Publishing AG & CO. KG, Germany,
pp 88-104
Singh SN, Vats P, Suri S et al. (2001) Effect of an antidiabetic extract of Catharanthus roseus
on enzymatic activities in streptozotocin induced diabetic rats. J Ethnopharmacol 76:269-277
Smetanska I (2008) Production of secondary metabolites using plant cell cultures. Advances in
Biochem Engi Biotech 111:187-228
Smith DA, Banks SW (1986) Biosynthesis, elicitation and biological activity of isoflavonoid phy-
toalexins. Phytochemistry 25:979-995
Srividya N, Devi BPS (1998) Azadirachtin and nimbin content in in-vitrocultured shoots and roots
of Azadirachta indica A. Juss. Indian J of Plant Physiol 3:129-134
Stafford A, Morris P, Fowler MW (1986) Plant cell biotechnology: a perspective. Enzyme Microb
Technol 8:578-597
Svoboda GH, Blake DA,(1975) The phytochemistry and pharmacology of Catharanthus roseus
(L.) G. Don. In: Taylor WI, Farnsworth NR (eds) The Catharanthus alkaloids. Marcel Dekker,
Inc., New York, pp 45-83
Taha HS, Abd El-Rahman RA, Abd-El-Kareem FM, Aly UE (2008) Successful application for
enhancement and production of anthocyantn pigment from calli cultures of some ornamental
plants. AJBAS 2:1148-1156
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