Hamill J D, Parr A J, Rhodes M J, et al. New routes to plant secondary products[J]. Nat Biotechnol,1987,5(8):800.
[15]
冀玉良,冀文良. 药用植物转基因研究进展[J]. 陕西农业科学,2008,54(2):103.
[16]
Guillon S, Trémouillaux-Guiller J, Pati P K, et al. Hairy root research: recent scenario and exciting prospects[J]. Curr Opin Plant Biol,2006,9(3):341.
[17]
于瑞莲,巢建国. 发根农杆菌 Ri 质粒及在药用植物中的应用[J]. 现代中药研究与实践,2005,19(6):59.
[18]
Boyles J G, Cryan P M, Mccracken G F, et al. Economic importance of bats in agriculture[J]. Science,2011,332(6025):41.
[19]
Saito K, Yamazaki M, Murakoshi I. Transgenic medicinal plants: Agrobacterium-mediated foreign gene transfer and production of secondary metabolites[J]. J Nat Prod,1992,55(2):149.
[20]
Shah D M, Rommens C M, Beachy R N. Resistance to diseases and insects in transgenic plants: progress and applications to agriculture[J]. Trends Biotechnol,1995,13(9):362.
[21]
Ryan C A. Protease inhibitors in plants: genes for improving defenses against insects and pathogens[J]. Annu Rev Phytopathol,1990,28(1):425.
[22]
Gururani M A, Venkatesh J, Upadhyaya C P, et al. Plant disease resistance genes: current status and future directions[J]. Physiol Mol Plant P,2012,78:51.
[23]
刁玲武. 阳春砂遗传转化受体系统建立及转基因初步研究[D]. 广州:广州中医药大学,2011.
[24]
董燕,张莹,易浪,等. 抗菌肽 cecropin B 和兔 NP-1 融合基因转化鱼腥草的研究[J]. 中国中药杂志,2010,35(13):1660.
Kamada H, Okamura N, Satake M, et al. Alkaloid production by hairy root cultures in Atropa belladonna[J]. Plant Cell Rep,1986,5(4):239.
[37]
Ge X, Wu J. Tanshinone production and isoprenoid pathways in Salvia miltiorrhiza hairy roots induced by Ag+ and yeast elicitor[J]. Plant Sci,2005,168(2):487.
[38]
Nose M, Terawaki K, Oguri K, et al. Activation of macrophages by crude polysaccharide fractions obtained from shoots of Glycyrrhiza glabra and hairy roots of Glycyrrhiza uralensis in vitro[J]. Biol Pharm Bull,1998,21(10):1110.
[39]
Park N I, Xu H, Li X, et al. Overexpression of phenylalanine ammonia-lyase improves flavones production in transgenic hairy root cultures of Scutellaria baicalensis[J]. Process Biochem,2012,47(12):2575.
[40]
Yang C, Chen M, Zeng L, et al. Improvement of tropane alkaloids production in hairy root cultures of Atropa belladonna by overexpressing pmt and h6h genes[J]. Plant Omics,2011,4(1):29.
[41]
Vukovic \' R, Bauer N, C \' urkovic \'-Perica M. Expression of β-cryptogein stimulates rosmarinic acid secretion from the Coleus blumei transgenic roots[C]. Croatian:5th Croatian Congress of Microbiology with International Participation, 2012.
[42]
Vukovic \' R, Bauer N, C \' urkovic \'-Perica M. Genetic elicitation by inducible expression of β-cryptogein stimulates secretion of phenolics from Coleus blumei hairy roots[J]. Plant Sci,2013,199:18.
Cheng Q, Su P, Hu Y, et al. RNA interference-mediated repression of SmCPS (copalyldiphosphate synthase) expression in hairy roots of Salvia miltiorrhiza causes a decrease of tanshinones and sheds light on the functional role of SmCPS[J]. Biotechnol Lett,2014,36(2):363.
[52]
Sauerwein M, Yamazaki T, Shimomura K. Hernandulcin in hairy root cultures of Lippia dulcis[J]. Plant Cell Rep,1991,9(10):579.
[53]
Sauerwein M, Flores H E, Yamazaki T, et al. Lippia dulcis shoot cultures as a source of the sweet sesquiterpene hernandulcin[J]. Plant Cell Rep,1991,9(12):663.
Han K, Fleming P, Walker K, et al. Genetic transformation of mature Taxus: an approach to genetically control the in vitro production of the anticancer drug, taxol[J]. Plant Sci,1994,95(2):187.
[57]
Ma W L, Yan C Y, Zhu J H, et al. Biotransformation of paeonol and emodin by transgenic crown galls of Panax quinquefolium[J]. Appl Biochem Biotechnol,2010,160(5):1301.
[58]
Subroto M A, Kwok K H, Hamill J D, et al. Coculture of genetically transformed roots and shoots for synthesis, translocation, and biotransformation of secondary metabolites[J]. Biotechnol Bioeng,1996,49(5):481.
[59]
Mahagamasekera M, Doran P M. Intergeneric co-culture of genetically transformed organs for the production of scopolamine[J]. Phytochemistry,1998,47(1):17.
[60]
Becker D. Binary vectors which allow the exchange of plant selectable markers and reporter genes[J]. Nucleic Acids Res,1990,18(1):203.
[61]
Becker D, Kemper E, Schell J, et al. New plant binary vectors with selectable markers located proximal to the left T-DNA border[J]. Plant Mol Biol,1992,20(6):1195.
Fred Magdoff,Brian Tokar. Book review: agriculture and food in crisis: conflict, resistance, and renewal[M]. New York:Monthly Review Press, 2013:317.
[64]
Leger R J S, Wang C. Genetic engineering of fungal biocontrol agents to achieve greater efficacy against insect pests[J]. Appl Microbiol Biot,2010,85(4):901.
[65]
Huang J, Gu M, Lai Z, et al. Functional analysis of the Arabidopsis PAL gene family in plant growth, development, and response to environmental stress[J]. Plant Physiol,2010,153(4):1526.
[66]
Yamazaki M, Son L, Hayashi T, et al. Transgenic fertile Scoparia dulcis L., a folk medicinal plant, conferred with a herbicide-resistant trait using an Ri binary vector[J]. Plant Cell Rep,1996,15(5):317.