Cytogenetic characterization of Agrobacterium rhizogenes transformed root lines of Rauvolfia serpentina
Tóm tắt
Từ khóa
Tài liệu tham khảo
Aird ELH, Hamill JD, Rhodes MJC. Cytogenetic analysis of hairy root cultures from a number of plant species transformed by Agrobacterium rhizogenes. Plant Cell Tissue Organ Cult. 1988;15:47–57.
Alpizar E, Dechamp E, Lapeyre-Montes F, Guilhaumon C, Bertrand B, Jourdan C, et al. Agrobacterium rhizogenes-transformed roots of coffee (Coffea arabica): conditions for long-term proliferation and morphological and molecular characterization. Ann Bot. 2008;101:929–40.
Anonymous. The wealth of India: A dictionary of Indian raw materials and industrial products. New Delhi: CSIR; 2003.
Baíza AM, Quiroz-Moreno A, Ruíz JA, Loyola-Vargas VM. Genetic stability of hairy root cultures of Datura stramonium. Plant Cell Tissue Organ Cult. 1999;59:9–17.
Bandyopadhyay M, Jha S, Tepfer D. Changes in morphological phenotypes and withanolide composition of Ri-transformed roots of Withania somnifera. Plant Cell Rep. 2007;26:599–609.
Banerjee N, Sharma AK. Chromosome constitution and alkaloid content in Rauwolfia L. (Apocynaceae). Cytologia. 1989;54:723–8.
Banerjee-Chattopadhyay S, Schwemmin AM, Schwemmin DJ. A study of karyotypes and their alterations in cultured and Agrobacterium transformed roots of Lycopersicon peruvianum Mill. Theor Appl Genet. 1985;71:258–62.
Batra J, Dutta A, Singh D, Kumar S, Sen J. Growth and terpenoid indole alkaloid production in Catharanthus roseus hairy root clones in relation to left- and right termini-linked Ri T-DNA gene integration. Plant Cell Rep. 2004;23:148–54.
Benjamin BD, Roja G, Heble MR. Agrobacterium rhizogens mediated transformation of Rauvolfia serpentina: regeneration and alkaloid synthesis. Plant Cell Tissue Organ Cult. 1993;35:253–7.
Benjamin BD, Roja G, Heble MR. Alkaloid synthesis by root cultures of Rauwolfia serpentina transformed by Agrobacterium rhizogenes. Phytochemistry. 1994;35:381–3.
Blakesley D, Chaldecott MA. The role of endogenous auxin in root initiation Part II. Sensitivity and evidence from studies on transgenic plant tissues. Plant Growth Regul. 1993;13:77–84.
Cardarelli M, Spano L, Mariotti D, Mauro ML, Van Sluys MA, Constantino P. Identification of the genetic locus responsible for non-polar root induction by Agrobacterium rhizogenes. Plant Mol Biol. 1985;5:385–91.
Chaudhuri KN, Ghosh B, Tepfer D, Jha S. Genetic transformation of Tylophora indica with Agrobacterium rhizogenes A4: growth and tylophorine productivity in different transformed root clones. Plant Cell Rep. 2005;24:25–35.
Dellaporta SL, Woods J, Hicks JB. A plant DNA minipreparation: version 2. Plant Mol Biol Rep. 1983;1:19–22.
Ermayanti TM, McComb JA, O'Brien PA. Cytological analysis of seedling roots, transformed root cultures and roots regenerated from callus of Swainsona galegifolia (Andr.) R. Br. J Exp Bot. 1992;44:375–80.
Ermayanti TM, Octavia Y, Hafizh EA. Cytological analysis of root cultures of Artemissia cina. Ann Bogoriensesns. 2004;9:50–8.
Gamborg OL, Miller RA, Ojima K. Nutrient requirements of suspension cultures of soybean root cells. Exp Cell Res. 1968;50:151–8.
Georgiev MI, Pavlov AI, Bley T. Hairy root type plant in vitro systems as sources of bioactive substances. Appl Microbiol Biotechnol. 2007;74:1175–85.
Hänisch ten Cate CH H, Loonen AE, Ottaviani MP, Ennik L, van Eldik G, Stiekema WJ. Frequent spontaneous deletions of Ri T-DNA in Agrobacterium rhizogenes transformed potato roots and regenerated plants. Plant Mol Biol. 1990;14:735–41.
Hooykass PJJ, Klapwjik PM, Nuti MP, Schilperoort RA, Rorsch A. Transfer of the A. tumefaciens Ti plasmid to avirulent Agrobacteria and Rhizobium ex planta. J Gen Microbiol. 1977;98:477–84.
Levan A, Sandberg A, Fredga K. Nomenclature for centromeric position on chromosomes. Hereditas. 1964;52:201–20.
Mano Y, Nabeshima S, Matsui C, Ohkawa H. Production of tropane alkaloids by hairy root cultures of Scopolia japonica. Agric Biol Chem. 1986;50:2715–22.
Mehrotra S, Goel MK, Rahman LU, Kukreja AK. Molecular and chemical characterization of plants regenerated from Ri-mediated hairy root cultures of Rauwolfia serpentina. Plant Cell Tissue Organ Cult. 2013;114:31–8.
Moyano E, Fornalé S, Palazòn J, Cusidò RM, Bonfill M, Piñol MC. Effect of Agrobacterium rhizogenes T-DNA on alkaloid production of Solanaceae plants. Phytochem. 1999;52:1287–92.
Mukherjee S, Das S, Jha S. Chromosomal stability in transformed hairy root cultures of Artemissia annua L. Cell Chromos Res. 1994;17:71–6.
Murashige T, Skoog F. A revised medium for rapid growth and bioassay with tobacco tissue cultures. Physiol Plant. 1962;15:473–97.
Nilsson O, Olsson O. Getting to the root: the role of the Agrobacterium rhizogenes rol genes in the formation of hairy roots. Physiol Plant. 1997;100:463–73.
Panwar GS, Attitalla IH, Guru SK. An efficient in vitro clonal propagation and estimation of reserpine content in different plant parts of Rauwolfia serpentina L. Am-Eurasian J Sci Res. 2011;6:217–22.
Payne J, Hamill JD, Robins RJ, Rhodes MJC. Production of hyoscyamine by hairy root cultures of Datura stramonium. Planta Med. 1987;53:474–8.
Ramsay G, Kumar A. Transformation of Vicia faba cotyledon and stem tissues by Agrobacterium rhizogenes: infectivity and cytological studies. J Exp Bot. 1990;41:841–7.
Roychowdhury D, Ghosh B, Chaubey B, Jha S. Genetic and morphological stability of six-year-old transgenic Tylophora indica plants. Nucleus. 2013;56:81–9.
Roychowdhury D, Majumder A, Jha S. Agrobacterium rhizogenes mediated transformation in medicinal plants: prospects and challenges. In: Chandra S, Verma A (eds). Biotechnology for medicinal plants. Springer,2013;29-68.
Sokal RR, Rohlf FJ. Introduction to biostatistics. New York: WH Freeman; 1987.
Spena A, Schmülling T, Koncz C, Schell J. Independent and synergistic activity of RolA, B and C loci in stimulating abnormal growth in plants. Embo J. 1987;6:3891–9.
Stebbins GL. Chromosomal evolution in higher plants. London: Edward Arnold Publ Ltd; 1971. p. 49–113.
Taneja J, Jaggi M, Wankhede DP, Sinha AK. Effect of loss of T-DNA genes on MIA biosynthetic pathway gene regulation and alkaloid accumulation in Catharanthus roseus hairy roots. Plant Cell Rep. 2010;29:1119–29.
Villaine F, Casse-Delbart F. Independant induction of transformed roots by the TL and TR regions of the Ri plasmid of agropine type Agrobacterium rhizogenes. Mol Gen Genet. 1987;206:17–23.
Virmani OP, Popli SP, Misra LN, Gupta MM, Srivastava GN, Abraham Z, Singh AK. Dictionary of Indian Medicinal Plants. CIMAP, Lucknow: India;1992:387.
Vries-Uijtewaal ED, Gilissen LJW, Flipse E, Sree Ramulu K, De Groot B. Characterization of root clones obtained after transformation of monohaploid and diploid potato genotypes with hairy root inducing strains of Agrobacterium. Plant Sci. 1988;58:193–202.
Webb KJ, Jones S, Robbins MP, Minchin FR. Characterization of transgenic root cultures of Trifolium repens, Trifolium pratense and transgenic plants of Lotus corniculatus. Plant Sci. 1990;70:243–54.
White FF, Taylor BH, Huffman GA, Gordon MP, Nester EW. Molecular and genetic analysis of the transferred DNA regions of the root inducing plasmid of Agrobacterium rhizogenes. J Bacteriol. 1985;164:33–44.
Xu Z-Q, Jia J-F. The reduction of chromosome number and the loss of generation ability during subculture of hairy root cultures of Onobrychis viciaefolia transformed by Agrobacterium rhizogenes. Plant Sci. 1996;120:107–12.