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商陆毛状根的诱导、培养及其皂甙的产生 被引量:17

Induction and Culture of Hairy Boots in Phytolacca esculenta and Its Saponin Production
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摘要 发根农杆菌 (Agrobacteriumrhizogenes)R16 0 1感染商陆叶片外植体 1周后 ,在其切口处产生毛状根 ,2 0d后产生毛状根的外植体比例达 70 % ;毛状根可直接从叶片外植体叶脉处或从叶脉处产生的愈伤组织上产生。毛状根能在无激素的MS培养基上自主生长 ,其呼吸速率比对照根提高 85 6 %。冠瘿碱检测和PCR扩增结果表明 ,发根农杆菌RiT DNA的冠瘿碱合成酶基因及其Ri质粒的rol基因均已在商陆毛状根基因组中得到表达。毛状根中总皂甙含量约为自然根的 1 5 4倍 ,但其多糖含量则仅为非转化根的 70 %。 Hairy roots appeared in vitro 20 days after inoculation of Phytolacca esculenta leaf explants with the strain of Agrobacterium rhizogenes R1601 The frequency of leaf explants transformed by R1601 was up to 70% Hairy roots can be incited directly from the veins of explants or via callus Hairy roots induced by R1601 grew rapidly on medium MS without hormone and were 85 6% higher in respiration rate than control roots Transformation was confirmed by opine detection and the amplification of rol B and rol C genes from the hairy roots of P esculenta The total saponin content in hairy roots of P esculenta was about 1 54 times as much as in natural roots whereas polysaccharides content was about 70% times as much as in the natural roots
出处 《生物工程学报》 CAS CSCD 北大核心 2003年第1期46-49,共4页 Chinese Journal of Biotechnology
关键词 商陆 毛状根 诱导 培养 皂甙 Agrobacterium rhizogenes, Phytolacca esculenta ,hairy roots, respiration rate, total saponin
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  • 1White F F, Nester E W.Hairy root;plasmid encodes virulence traits in Agrobacterium rhizogenes.J Bacteriol,1980,141:1134-1141
  • 2Yoshikawa T,Furuya T.Saponin production by cultures of Panax ginseng transformed with Agrobacterium rhizogenes.Plant Cell Reports,1987,6:449-453
  • 3FEI H M (费厚满),MEI K F(梅康凤),SHEN X(沈昕) et al.Transformation of Gymostemma pentaphyllum by Agrobacterium rhizogenes and saponin production in hairy root cultures.Acta Botanica Sinica(植物学报),1993,35(8):626-631
  • 4SUN M (孙敏),TANG S H (汤绍虎),YANG L Y(杨兰英).Studies on the alkaloids from transformed hairy root of Rauvolfia verticillata by Agrobacterium rhizogenes.Chinese Journal of Biotechnology (生物工程学报) 1993,9(3):287-290
  • 5Yazaki K, Tanaka S, Matsuoka H et al.Stable transformation of Lithospermum erythrorhizon by Agrobacterium rhizogenes and shikonin production of the transformants.Plant Cell Reports, 1998,18:214-219
  • 6Saito K, Sudo H,Yamazaki M et al.Feasible production of camptothecin by hairy root culture of Ophiorrhiza pumila.Plant Cell Reports 2001,20:267-271
  • 7Shan Xi Basic and clinical research group of chronic bronchitis (陕西省慢性气管炎基础临床研究协作组).Extraction of the active constituents of Phytolacca esculenta van Houtte and its pharmacodynamics and clinical curative effect.ZhongCao YaoTong Xun(中草药通讯),1973,(1):13-16
  • 8Jiang Su New medical college (江苏新医学院):A dictionary of Chinese Traditional Medicine(中药大辞典) Vol.II , P2245-2247,Shanghai People's Publishing House, 1977
  • 9Misawa M, K,Sakto, M.Hayashi .1974.Production of antibiotic substance.Japan Patent(Kokai)74-126,894,1974
  • 10Pythoud F,Sinkar V P, Nester E W et al.Increased virulence of Agrobacterium rhizogenes conferred by the vir region of pTiBo 542:application to genetic engineering of poplar.Bio/technology 1987,29(5):1323-1327

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