Ackermann C (1977) Pflanzen aus Agrobacterium rhizogenes tumoren an Nicotiana tabacum. Plant Sci Lett 8:23–30
Google Scholar
Booth A, Satchuthananthavale R (1974) Regeneration in root cuttings in Taraxacum officinale part 2: effects of exogenous hormones on root segments and root callus cultures. New Phytol 73:453–460
CAS
Google Scholar
Bowes BG (1970) Preliminary observations on organogenesis in Taraxacum officinale tissue cultures. Protoplasma 71:197–202
Google Scholar
Bowes BG (1971) The occurrence of shoot teratomata in tissue cultures of Taraxacum officinale. Planta 100:272–276
Google Scholar
Burrows S, Shimpson JCE (1938) The triterpene group. Part IV. The triterpene alcohols of Taraxacum root. J Chem Soc 141:2042–2047
Google Scholar
Cardarelli M, Mariotti D, Pomponi M, Spano L, Capone I, Costantino P (1987) Agrobacterium rhizogenes T-DNA genes capable of inducing hairy root phenotype. Mol Gen Genet 209:475–480
CAS
Google Scholar
Masaaki S, Hong Z, Aki E, Kaori S, Tetsuo K, Yutaka E (1999) Two branches of the lupeol synthases gene in the molecular evolution of plant oxidosqualene cyclases. Eur J Biochem 266:302–307
Article
CAS
PubMed
Google Scholar
Murashige T, Skoog F (1962) Revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plant 15:473–497
CAS
Google Scholar
Ooms G, Bains A, Burrel M, Karp A, Twell D, Wilcox E (1985) Genetic manipulation in cultivars of oilseed rape (Brassica napus) using Agrobacterium. Theor Appl Genet 71:325–329
Google Scholar
Power FB, Browing H (1912) The constituents of Taraxacum root. J Chem Soc Trans 101:2411–2429
Google Scholar
Schmülling T, Schell J, Spena A (1988) Single genes from Agrobacterium rhizogenes influence plant development. EMBO J 7:2621–2629
Google Scholar
Schmülling T, Fladung M, Grossman K, Schell J (1993) Hormonal content and sensitivity of transgenic tobacco and potato plants expressing single rol genes of Agrobacterium rhizogenes T-DNA. Plant J 3:373–382
Google Scholar
Shen WH, Petit A, Guern J, Tempé J (1988) Hairy roots are more sensitive to auxin than normal roots. Proc Nat Acad Sci USA 85:3417–3421
CAS
Google Scholar
Skoog F, Miller CO (1957) Chemical regulation of growth and organ formation in plant tissues cultured in vitro. Symp Soc Exp Biol 11:118–231
Google Scholar
Spena A, Schmülling T, Koncz C, Schell J (1987) Independent and synergistic activities of the rolA, B and C loci in stimulating abnormal growth in plants. EMBO J 6:3891–3899
CAS
Google Scholar
Tepfer D (1984) Transformation of several species of higher plants by Agrobacterium rhizogenes: sexual transmission of the transformed genotype and phenotype. Cell 37:959–967
PubMed
Google Scholar
Yang DC, Choi YE (2000) Production of transgenic plants via Agrobacterium rhizogenes-mediated transformation of Panax ginseng. Plant Cell Rep 19:491–496
Article
CAS
Google Scholar
Yang DS, Whang WK, Kim IH (1996) The constituents of Taxacum hallaisanensis roots. Arch Pharmacol Res 19:507–513
CAS
Google Scholar