芳樟醇合成酶,Linalool synthase
1)Linalool synthase芳樟醇合成酶
1.In this study,a full length cDNA encoding linalool synthase was successfully cloned from floral organs of Osmanthus fragrans var.以金桂的花器官为试材,设计芳樟醇合成酶基因简并引物,通过逆转录PCR、快速扩增cDNA末端技术和Blastn分析等,获得金桂芳樟醇合成酶基因的全长cDNA序列,命名为OfLis(Osmanthus fragransvar。
英文短句/例句

1.Cloning and Sequence Analysis of a Homologous Linalool Synthase Gene Involved in Floral Scents in Osmanthus fragrans var. thunbergii金桂芳樟醇合成酶基因的克隆与序列分析(英文)
2.Studies on Gene Clone and Functional Identify as Well as Gene-transfer of Linalool Synthase of Lavandula Officinalis;薰衣草芳樟醇合成酶的基因克隆、功能鉴定及转基因技术的研究
3.STUDY ON PONANE AND PINANE HYDROPEROXIDE--INTERMEDIATES IN THE SYNTHESIS OF LINALOOL;蒎烯合成芳樟醇中间体蒎烷、蒎烷氢过氧化物的研究
4.A persistent repellency supervision of the slow-releasing linalool preparation缓释型芳樟醇制剂持效性的动态监测
5.Dynamic Analysis of Four Cultivars of Cinnamomum camphora4个芳樟醇型樟树无性系组培苗年生长动态分析
6.The application of transketolase for industrial purpose, such as production of ethanol, biosynthesis of aromatic amino acids and enantiotopic chemicals were reviewed.本文综述了该酶的工业生产及应用领域,如乙醇生产,芳香族氨基酸和手性物质的生物合成等。
7.The Asymmetric Reaction of Natural Borneol and Linalool Chiral Inducing Carbonyl;天然冰片和芳樟醇手性诱导羰基的不对称反应
8.Preparation and performance of the catalysts for selective hydrogenation of dehydrolinalool to linalool去氢芳樟醇加氢催化剂的制备与活性评价
9.The efficacy of different slow?releasing linalool formulation to Blattella germanica不同缓释性芳樟醇制剂的活性效应比较
10.STUDY ON PINANE HYDROPEROXIDE AND PINANOL--INTERMEDIATES IN THE SYNTHESIS OF LINALOOL;制备芳樟醇的中间体蒎烷氢过氧化物和蒎烷醇的研究
11.Studies on the Synthesis of Aromatase Inhibitor Fadrozole;芳香酶抑制剂法倔唑的合成工艺研究
12.Studies on the Constituents and Inhibitory Activities Against HIV-1 Integrase of Lindera Aggregata (Sims) Kosterm. and L. Chunii Merr.;乌药与鼎湖钓樟的化学成分及抗HIV-1整合酶活性研究
13.Application of Hydroxynitrile Lyases in Synthesis of Chiral Cyanohydrins醇腈酶在不对称催化合成氰醇中的应用
14.Enzymatic Synthesis of 2-Chloro-l-Phenylethanol with High Optical Purity高光学纯度2-氯-1-苯乙醇的酶法合成
15.An Investigation into the Synthesis of C-7 Ingraftation Decorated Steroidal Aromatase Inhibitor;7位接枝修饰的甾体芳香酶抑制剂的合成研究
16.Enzyme-Catalyzed Preparation of Arylhydroxylamines and Chiral Substituted Fluorenols;酶催化制备芳香羟胺及手性取代芴醇
17.Biosynthesis of L-ascorbyl Aromatic Acid Ester and Studies on Microbial Keratinase;L-抗坏血酸芳香酸酯酶法合成及微生物角蛋白酶研究
18.The Evaluation of the Protonation Constants of Comphoric Acid in Water-methanol Mixture by Potentiometry;甲醇-水混合溶剂中樟脑酸质子化常数的测定
相关短句/例句

linalool[英][li'n?l?,?ul][美][l?'n?lo,?l, -,ol, -,ɑl]芳樟醇
1.Preparation of inclusion compound of linalool and β-cyclodextrin;均匀设计法研究左旋芳樟醇-β-环糊精包合物的制备工艺
2.Kinetics of catalytic hydrogenation of dehydrolinalool on Raney-Ni catalyst;Raney-Ni催化剂上去氢芳樟醇催化加氢反应动力学
3.Selective Hydrogenation of Dehydrolinalool to Linalool by a Pd-catalyst Containing Bi and Pb;Pb、Bi改性Pd催化剂合成芳樟醇
3)(R)-(-)-linalool(R)-(-)-芳樟醇
1.With the concentration of 30 ng·μL~(-1),the EAG value of male antennae reached the maximum when the volume ratio of L-isoleucine methyl ester(LIME)to(R)-(-)-linalool was 7:1,which was almost equal to the EAG value of the crude extracts from 25 sex glands.雄虫触角对L-异亮氨酸甲酯和(R)-(-)-芳樟醇为7:1的二元混合物的反应值最高,和暗黑鳃金龟雌虫性信息素25个腺体提取液的EAG反应相当;对同一配比(7:1)不同剂量刺激液的EAC测试表明,雄虫对浓度为30 ng·μL~(-1)的二元混合物刺激液的反应值最高。
4)Cinnamomum camphora芳樟醇型樟树
1.Dynamic Analysis of Four Cultivars of Cinnamomum camphora4个芳樟醇型樟树无性系组培苗年生长动态分析
5)dehydrolinalool去氢芳樟醇
1.Kinetics of catalytic hydrogenation of dehydrolinalool on Raney-Ni catalyst;Raney-Ni催化剂上去氢芳樟醇催化加氢反应动力学
2.Preparation and performance of the catalysts for selective hydrogenation of dehydrolinalool to linalool去氢芳樟醇加氢催化剂的制备与活性评价
6)dihydrolinalool二氢芳樟醇
1.Under the condition of no inside and outside diffusion,the concentration of dehydrolinalool,linalool and dihydrolinalool versus time over the Raney-Ni catalyst were measured.通过测定去氢芳樟醇催化加氢过程中去氢芳樟醇、芳樟醇和二氢芳樟醇浓度随时间变化的c~t曲线,获取去氢芳樟醇催化加氢制备芳樟醇反应中各步反应的级数、速率常数和活化能等动力学参数。
延伸阅读

芳樟醇 又名沉香油萜醇、伽罗木醇。学名3,7-二甲基-l,6-辛二烯3-醇。无色液体。分子量154.24。密度O.858-0.862g/cm3。沸点198℃。闪点78℃。折射率1.4600-1.4630。不溶于水。以1:4溶于60%乙醇。能与乙醇和乙醚混溶。具有典型的类似铃兰的花香香气,无樟脑和萜烯气味,合成芳樟酵比天然品的香气更清鲜更纯净。 生产方法:采用合成法和分馏法。合成法是以丙酮和乙炔为原料,以钠为催化剂,进行乙炔化反应,合成甲基丁醇,再经5-辛烯-2-酮脱氢,最后合成而得。也可以β-蒎烯为原料,经热分解生成月桂烯,再与干燥氯化氢反应生成芳樟基氯,最后经水解而得。分馏法是以芳油、芳樟油、玫瑰木油、伽罗木油等精油为原料,经分馏而得。 用途:醇类合成香料。广泛用于香水等化妆品,用于调合百合、丁香、香豌豆、橙花等花精油,用作琥珀型香、东方型香、醛型香等的调合香料,也可用作香皂的赋香剂。还可用作乙酸芳樟酯、维生素E构成成分异植醇的合成原料.