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lavandula_angustifolia_mill [2017/06/20 16:42]
andreas
lavandula_angustifolia_mill [2017/10/18 07:56]
andreas
Zeile 21: Zeile 21:
 [Sedative effects of the jasmine tea odor and (R)-(−)-linalool, one of its major odor components, on autonomic nerve activity and mood states., Kuroda, K., Inoue, N., Ito, Y., Kubota, K., Sugimoto, A., Kakuda, T., Fushiki, T., European journal of applied physiology, 95(2-3), 2005, 107-114]  [Sedative effects of the jasmine tea odor and (R)-(−)-linalool, one of its major odor components, on autonomic nerve activity and mood states., Kuroda, K., Inoue, N., Ito, Y., Kubota, K., Sugimoto, A., Kakuda, T., Fushiki, T., European journal of applied physiology, 95(2-3), 2005, 107-114] 
  
-"... two monoterpene synthases (LaLIMS and LaLINS) and one sesquiterpene synthase (LaBERS) were cloned from lavender leaves and flowers. LaLIMS catalyzed the formation of (R)-(+)-limonene, terpinolene, (1R,5S)-(+)-camphene, (1R,5R)-(+)-α-pinene, β-myrcene and traces of α-phellandrene. The proportions of these products changed significantly when Mn2+ was supplied as the cofactor instead of Mg2+. The second enzyme LaLINS produced exclusively (R)-(−)-linalool, the main component of lavender essential oil. LaBERS transformed farnesyl diphosphate and represents the first reported trans-α-bergamotene synthase." \\+"...two monoterpene synthases (LaLIMS and LaLINS) and one sesquiterpene synthase (LaBERS) were cloned from lavender leaves and flowers. LaLIMS catalyzed the formation of (R)-(+)-limonene, terpinolene, (1R,5S)-(+)-camphene, (1R,5R)-(+)-α-pinene, β-myrcene and traces of α-phellandrene. The proportions of these products changed significantly when Mn2+ was supplied as the cofactor instead of Mg2+. The second enzyme LaLINS produced exclusively (R)-(−)-linalool, the main component of lavender essential oil. LaBERS transformed farnesyl diphosphate and represents the first reported trans-α-bergamotene synthase. " \\
 [Cloning and functional characterization of three terpene synthases from lavender (Lavandula angustifolia)., Landmann, C., Fink, B., Festner, M., Dregus, M., Engel, K.H., Schwab, W., Archives of biochemistry and biophysics, 465(2), 2007, 417-429] [Cloning and functional characterization of three terpene synthases from lavender (Lavandula angustifolia)., Landmann, C., Fink, B., Festner, M., Dregus, M., Engel, K.H., Schwab, W., Archives of biochemistry and biophysics, 465(2), 2007, 417-429]
  
Zeile 47: Zeile 47:
 [Biosynthesis and Therapeutic Properties of Lavandula Essential Oil Constituents., Woronuk, G., Demissie, Z., Rheault, M., Mahmoud, S., Planta Med, Vol.77, 2011, 7-15]  [Biosynthesis and Therapeutic Properties of Lavandula Essential Oil Constituents., Woronuk, G., Demissie, Z., Rheault, M., Mahmoud, S., Planta Med, Vol.77, 2011, 7-15] 
  
-{{:lavandula_officinalis.jpg?500}} \\ +{{:lavandula_officinalis.jpg?600}} \\ 
-Lavandula angustifolia as Lavandula officinalis+Lavandula angustifolia as Lavandula officinalis \\
 Kohl,F.G., Die officinellen Pflanzen der Pharmacopoea Germanica, t.135 (1891-1895)   Kohl,F.G., Die officinellen Pflanzen der Pharmacopoea Germanica, t.135 (1891-1895)  
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 +{{http://www.botanische-spaziergaenge.at/Bilder/Lumix_6/P1500761.JPG}} \\
 +Lavandula angustifolia \\ © Rolf Marschner (2011),  
 +[[http://botanische-spaziergaenge.at/viewtopic.php?f=95&t=2142| www.botanische-spaziergaenge.at]]
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lavandula_angustifolia_mill.txt · Zuletzt geändert: 2022/09/03 19:00 von andreas