期刊文献+

米曲霉激发子促进紫草色素合成中细胞内Ca^(2+)和cAMP的变化(简报) 被引量:1

在线阅读 下载PDF
导出
摘要 米曲霉激发子促进滇紫草细胞合成紫草色素,这种作用与细胞内Ca(2+)相对浓度下降相关。离子载体A23187有抑制激发子的作用,Ca(2+)通道阻断剂Verapamil可部分模拟采曲霉激发子的作用,促进紫草色素合成。激发子处理后,胞内cAMP浓度快速上升。
出处 《植物生理学通讯》 CSCD 1998年第3期194-196,共3页 Plant Physiology Communications
  • 相关文献

参考文献3

二级参考文献12

  • 1宁文,生物工程学报,1994年,10卷,76页
  • 2宁文,植物生理学通讯,1993年,29卷,321页
  • 3曹日强,Biochemical engineering for 2001,1991年
  • 4朱汝幸,植物学报,1990年,30卷,749页
  • 5M. E. Cunninghame,J. L. Hall. The effect of calcium antagonists and inhibitors of secretory processes on auxin-induced elongation and fine structure ofPisum sativum stem segments[J] 1986,Protoplasma(2-3):149~159
  • 6Randy Wayne,Peter K. Hepler. The role of calcium ions in phytochrome-mediated germination of spores of Onoclea sensibilis L.[J] 1984,Planta(1):12~20
  • 7Russell L. Jones,John V. Jacobsen. Calcium regulation of the secretion of α-amylase isoenzymes and other proteins from barley aleurone layers[J] 1983,Planta(1):1~9
  • 8Carol Moll,Russell L. Jones. Calcium and gibberellin-induced elongation of lettuce hypocotyl sections[J] 1981,Planta(5):450~456
  • 9Johannes Gleitz,J?rg-Peter Schnitzler,Dietrich Steimle,Hanns Ulrich Seitz. Metabolic changes in carrot cells in response to simultaneous treatment with ultraviolet light and a fungal elicitor[J] 1991,Planta(3):362~367
  • 10M. P. Robbins,J. Hartnoll,P. Morris. Phenylpropanoid defence responses in transgenic Lotus corniculatus 1. Glutathione elicitation of isoflavan phytoalexins in transformed root cultures[J] 1991,Plant Cell Reports(2):59~62

共引文献224

同被引文献34

  • 1方德秋,侯嵩生,李新明,叶和春,李国凤.不同营养因子对新疆紫草悬浮培养细胞生长及紫草宁衍生物形成的影响[J].武汉植物学研究,1994,12(4):348-354. 被引量:5
  • 2宁文,徐红,曹日强.米曲霉激发子剌激滇紫草细胞活性氧的产生及与紫草色素形成的关系[J].南京大学学报(自然科学版),1997,33(2):259-264. 被引量:5
  • 3李国风 伍正蓉 叶和春 等.离体培养的新疆紫草萘醌色素的诱导形成[J].植物学通报,1988,5:84-86.
  • 4Tabata M, Mizukami H, Hiraoka N. Pigment formation in callus cultures of Lithmpemtum erythrorhison [J]. Phytoehemistry, 1974, 13: 927-932.
  • 5Yazaki K, Kunihisa M, Fujisaki T, et al. Geranyl diphosphate: 4-hydroxybenzoate geranyltransferase from Lithospermum erythrorhizon. Cloning and characterization of a key enzyme in shikonin biosynthesis [J]. J Biol Chem, 2002, 277(8): 6240-6246.
  • 6Inouye H, Ueda S, Inoue K, et al. Biosynthesis of shikonin in callus cultures of Lithospermum erythrorhizon [J]. Phytochemistry, 1979, 18(8): 1301-1308.
  • 7Yamamoto H, Inoue K, Li S, et al. Geranylhydroquinone 3"-hydroxylase, a cytochrome P-450 monooxygenase from Lithospermum erythrorhizon cell suspension cultures [J]. Plan ta, 2000, 210:312-317.
  • 8Gaisser S, Heide L. Inhibition and regulation of shikonin biosynthesis in suspension cultures of Lithospermum [J]. Phytochemistry, 1996, 41(4): 1065-1072.
  • 9Singh R S, Gara R K, Bhardwaj P K, et al. Expression of 3-hydroxy-3-methylglutaryl-CoA reductase, p-hydroxy- benzoate-m-geranyltransferase and genes of phenyl- propanoid pathway exhibits positive correlation with shikonins content in arnebia [Arnebia euchroma (Royle) Johnston] [J]. BMC Mol Biol, 2010, 11: 88.
  • 10Lange B M, Severin K, Bechthold A, et al. Regulatory role of microsomal 3 -hydroxy-3-methyl-glutaryl- coenzyme A reductase for shikonin biosynthesis in Lithospermum erythrorhizon cell suspension cultures [J]. Planta, 1998, 204(2): 234-241.

引证文献1

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部