Kastell A, Smetanska I, Ulrichs C, et al. Effects of phytohormones and jasmonic acid on glucosinolate content in hairy root cultures of Sinapis alba and Brassica rapa[J]. Appl Biochem Biotechnol,2013,169(2):624.
Li W, Koike K, Asada Y, et al. Biotransformation of low-molecular-weight alcohols by Coleus forskohlii hairy root cultures[J]. Carbohydr Res, 2003,338:729.
[8]
Peng C X, Gong J S, Zhang X F,et al. Production of gastrodin through biotransformation of p-hydroxybenzyl alcohol using hairy root cultures of Datura tatula L. [J]. Afr J Biotechnol, 2008, 7(3):211.
[9]
Marta Grech-Baran, Katarzyna Syktowska-Baranek, Anna Krajewska-Patan, et al. Biotransformation of cinnamyl alcohol to rosavins by non-transformed wild type and hairy root cultures of Rhodiola kirilowii[J]. Biotechnol Lett, 2013, doi:10. 1007/s10529-013-1401-5.
[10]
Desai P, Shrivastava N, Padh H. Pharming and transgenic plants[J]. Biotechnol Annu Rev, 2007, 13:115.
[11]
Liu C, Towler M J, Mediano G, et al. Production of mouse interleukin-12 is greater in tobacco hairy roots grown in a mist reactor than in an airlift reactor[J]. Biotechnol Bioeng, 2009, 102(4):1074.
[12]
Sunil Kumar G B, Ganapathi T R, Srinivas L, et al. Expression of hepatitis B surface antigen in potato hairy roots[J]. Plant Sci, 2006, 170(5):918.
[13]
Pham N B, Schafer H, Wink M. Production and secretion of recombinant thaumatin in tobacco hairy root cultures[J]. Biotechnol J, 2012, 7(4):537.
[14]
Van Larebeke N, Engler G, Holsters M, et al. Large plasmid in Agrobacterium tumefaciens essential for crown gall-inducing ability[J]. Nature, 1974, 252(5479):169.
[15]
Moore L, Warren G, Strobel G, et al. Involvement of a plasmid in the hairy root disease of plants caused by Agrobacterium rhizogenes[J]. Plasmid, 1979,2(4):617.
[16]
White F F, Nester E W. Relationship of plasmids responsible for hairy root and crown gall tumorigenicity[J]. J Bacteriol, 1980,144(2):710.
[17]
Chilton M D, Tepfer D A, Petit A, et al. Agrobacterium rhizogenes inserts T-DNA into the genomes of the host plant root cells[J]. Nature, 1982,295:432.
Sun J, Xiao J, Wang X, et al. Improved cardenolide production in Calotropis gigantea hairy roots using mechanical wounding and elicitation[J]. Biotechnol Lett, 2012, 34(3):563.
[27]
Zhang H C, Liu J M, Lu H Y, et al. Enhanced flavonoid production in hairy root cultures of Glycyrrhiza uralensis Fisch by combining the over-expression of chalcone isomerase gene with the elicitation treatment[J]. Plant Cell Rep, 2009, 28(8):1205.
[28]
Khalili G M, Tahereh H, Seyyed K K T. Ag+ enhanced silymarin production in hairy root cultures of Silybum marianum L[J]. Plant Omics, 2010, 3:109.
Yang D, Ma P, Liang X, et al. PEG and ABA trigger methyl jasmonate accumulation to induce the MEP pathway and increase tanshinone production in Salvia miltiorrhiza hairy roots[J]. Physiol Plant, 2012, 146(2):173.
[37]
Yang D, Du X, Liang X, et al. Different roles of the mevalonate and methylerythritol phosphate pathways in cell growth and tanshinone production of Salvia miltiorrhiza hairy roots[J]. PLoS ONE, 2012,7(11): e46797.
[38]
Kim Y K, Kim J K, Kim Y B, et al. Enhanced accumulation of phytosterol and triterpene in hairy root cultures of Platycodon grandiflorum by overexpression of Panax ginseng 3-hydroxy-3-methylglutaryl-coenzyme A reductase[J]. J Agric Food Chem,2013, 61(8):1928.
Kai G, Zhang A, Guo Y, et al. Enhancing the production of tropane alkaloids in transgenic Anisodus acutangulus hairy root cultures by over-expressing tropinone reductase I and hyoscyamine-6beta-hydroxylase[J]. Mol Biosyst, 2012, 8(11):2883.
Wu X J, Du M, Wang Z Y, et al. Enhanced astragaloside Ⅳ biosynthesis in hairy roots of Astragalus Membranceus by over-expression of granule bound starch synthase [J]. Pharm Biotechnol, 2011, 19(5):485.