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1.
抱茎蓼挥发油成分及其抗菌活性的研究   总被引:10,自引:0,他引:10  
水蒸气蒸馏法从抱茎蓼全草中提取挥发油,用气相色谱-质谱联用技术对其挥发油组分进行分离和鉴定,运用气相色谱面积归一化法确定各组分的相对含量,并利用正构烷烃系列物质对各组分进行定性确定,从抱茎蓼全草的挥发油中检出41个组分,占全油的99.21%,鉴定出38个组分,其主要组分是石竹烯(16.98%)、3-己烯-1-醇(14.69%)、3-辛烯-3醇(8.89%)、a-里哪醇(7.13%)、β-环柠檬醛(6.36%)等。对抱茎蓼全草的挥发油做了抗菌试验,其挥发油对大肠埃希菌(ATCC25922株)、肠炎沙门菌(50040株)、金黄色葡萄球菌(ATCC25925株)有显著地抑制和灭活作用。  相似文献   

2.
头花蓼挥发性成分研究   总被引:7,自引:0,他引:7  
目的:研究头花蓼(Herba Polygoni Capitati)挥发性成分.方法:利用水蒸汽蒸馏法提取头花蓼挥发性成分,用GC/MS进行分离测定,结合计算机检索技术对分离的化合物进行结构鉴定,应用色谱峰面积归一化法计算各成分的相对百分含量.结果:分离出88个成分,确定了51个化合物,占挥发油总量的73.10%.结论:头花蓼挥发油成分大于2%的为1-辛烯-3-醇15.205%,2-己烯醛4.444%,γ-古芸烯4.220%,2-庚烯醛4.047%,壬醛3.280%,长叶冰片2.722%,蓝桉醇2.544%.含量最高的化合物为1-辛烯-3-醇.  相似文献   

3.
GC-MS法分析曼陀罗挥发油的化学成分   总被引:6,自引:0,他引:6  
用水蒸气蒸馏法从曼陀罗中提取挥发油,并用气相色谱/质谱联用技术(GC-MS)对挥发油的化学成分进行分离鉴定,用气相色谱峰面积归一化法确定各组分的相对含量.结果从曼陀罗挥发油中鉴定出58种化合物,占总挥发油量的92.37%.其中主要成分为5,6-二氢-6-戊基-2H-吡喃-2-酮(44.29%)、二苯胺(12.50%)、四十四烷(10.41%)、二十烷(4.19%)、(E)-3-己烯-1-醇(2.38%)、3,7,11,15-四甲基-2-十六碳烯-1-醇(2.28%)等.  相似文献   

4.
采用气相色谱-质谱法(GC-MS)分析同时蒸馏萃取法(SDE)、固相微萃取法(SPME)和动态顶空吸附法(DHA)三种方法提取的印度紫檀挥发性成分。结果表明:三种方法提取印度紫檀挥发油的化学成分有差异。同时蒸馏萃取法提取印度紫檀挥发油鉴定出25种化合物,主要成分为2-硝基乙醇,相对含量为35.29%;固相微萃取法提取印度紫檀挥发油鉴定出27种化合物,主要成分为乙酸叶醇酯,相对含量为33.62%;动态顶空吸附法提取印度紫檀挥发油鉴定出27种化合物,主要成分为2-硝基乙醇,相对含量为30.42%。三种方法共检测到2种相同组分,检出的主要物质是醇类、酯类和缩醛。  相似文献   

5.
采用共水蒸馏法分别提取唇形科香薷属鸡骨柴茎、叶、花中的挥发油,用气相色谱-质谱联用(GC-MS)技术并结合Kovats保留指数(KI)对比法对挥发油进行了化学成分对比鉴定,运用面积归一化法确定各组分相对含量。分别从茎、叶、花中鉴定出24、33、42种成分。其中花和叶中的主要成分和相对含量相似,分别为1,8-桉树脑(21.9%,24.73%)、丁香烯(8.79%,8.51%)、γ-松油烯(4.57%,5.11%)、邻伞花烃(3.98%,6.13%)等,其次要成分差异较大。茎中的成分与花和叶中的相差较大,主要成分为棕榈酸(65.05%)、植醇(2.75%)、丁香烯(2.53%)等。结果表明,鸡骨柴茎、叶、花挥发油的成分和相对含量各不相同,均含有大量的活性成分,具有较高的应用潜力和综合开发前景。  相似文献   

6.
太子参挥发油化学成分研究 (Ⅰ)   总被引:3,自引:0,他引:3  
为了研究太子参在GAP实施过程中产地加工对其挥发油化学成分的影响,采用乙醚回流-水蒸气蒸馏提取法,分别提取晒干和烘干太子参的挥发油,运用GC-MS-DS联用分析技术和气相色谱保留指数法,对晒干和烘干太子参挥发油化学成分进行比较分析,用GC面积归一法分别计算了各成分的相对含量.结果表明,晒干和烘干太子参的挥发油得率分别为0.28%和0.13%.晒干太子参挥发油鉴定出9种化合物,其中相对含量最高(87.19%)的成分是邻苯二甲酸二丁酯,烘干太子参挥发油鉴定出15种化合物,其中相对含量最高(77.34%)的成分是2,6-二(1,1-二甲乙基)-4-甲基苯酚,两者挥发油化学成分含量和组成有明显差异.  相似文献   

7.
蝴蝶果花、叶挥发油的化学成分   总被引:1,自引:0,他引:1  
苏秀芳  林强  梁振益 《广西植物》2008,28(3):424-427
采用水蒸汽蒸馏法从大戟科蝴蝶果花、叶中提取挥发油,用气相色谱-质谱联用技术对挥发油化学成分进行分析,并应用面积归一化法测定各成分的相对百分含量。从花中鉴定出10种化合物,占总油量的96.90%,其主要成分为十六烷酸(59.89%)、(Z,Z)-9,12-十八碳二烯酸(13.82%)、(Z,Z,Z)-9,12,15-十八碳三烯-1-醇(6.58%)及双(2-乙基)邻苯二甲酸酯(5.59%)。从叶中鉴定出10种化合物,占总油量的45.26%,主要成分为邻苯二甲酸二乙酯(19.64%)、二丁基羟基甲苯(10.58%)、十六烷酸(3.70%)及苯甲酸(3.46%)。  相似文献   

8.
苏秀芳  林强  梁振益 《广西植物》2007,27(5):805-807
采用水蒸汽蒸馏法从大戟科蝴蝶果茎中提取挥发油,用气相色谱-质谱联用技术对挥发油化学成分进行分析。分离出36个峰,鉴定出35种化合物,占总油量的98.34%,并应用面积归一化法测定各成分的相对百分含量。其主要成分为十六烷酸乙酯(13.19%)、正十六烷酸(11.11%)、十八碳烯酸乙酯(6.18%)、正十八烷(4.98%)、(Z,Z)-9,12-十八碳二烯酸(4.90%)及十八碳二烯酸乙酯(4.21%)。  相似文献   

9.
采用水蒸气蒸馏法提取,运用气相色谱-质谱联用技术(GC-MS),首次对扁桃叶挥发油的化学成分进行分析,并用气相色谱面积归一化法测定各成分的相对百分含量.共鉴定出其中的38种化合物,占挥发油总量的94.52%,其主要成分为:大根香叶烯(18.33%),喇叭醇(9.46%),石竹烯(9.04%),δ-杜松烯(5.73%),...  相似文献   

10.
中华抱茎蓼又名鸡血七、血三七等,为蓼科蓼属植物,具有清热解毒、活血舒经、行气止痛及止血生肌之功效。现代研究表明中华抱茎蓼主要含黄酮、酚酸及挥发油等化学成分,具抗炎镇痛、抗菌及抗氧化等药理作用。本文综述了中华抱茎蓼的化学成分及药理作用,为该药用植物的开发利用提供参考。  相似文献   

11.
樟树叶挥发性成分研究   总被引:5,自引:1,他引:4  
吴学文  熊艳  游奎一 《广西植物》2011,31(1):139-142
通过GC/MS方法,对湖南樟树嫩叶、老叶以及枯叶挥发油的成分和抗氧化性能进行了研究,分析鉴定了其中含量占95%以上的31个化合物.结果表明:嫩叶中以Copaene(28.55%)、石竹烯(25.81%)和α-石竹烯(12.69%)为主要成分;老叶挥发油以芳樟醇含量最高(78.30%);枯叶挥发油主含石竹烯(38.64%...  相似文献   

12.
萼翅藤枝叶挥发油及其抗菌活性的研究   总被引:1,自引:0,他引:1  
萼翅藤枝叶挥发油由GC/MS检测.树叶挥发油的52种成分中,氧化石竹烯(13.79%)、棕榈酸(11.91%)和β-石竹烯(10.45%)是主要成分.同时,树枝挥发油中的10种成分占总量的99.99%,其中主要的化学成分为棕榈酸(59.18%),亚油酸(12.70%)和邻苯二甲酸丁辛酯(8.21%).用滤纸扩散法,分别测定了枝、叶挥发油对8种微生物的抑制效果.枝、叶挥发油均具有很强的抗菌效果,并且抗细菌活性优于抗真菌活性.叶挥发油比枝挥发油具有更广谱的抑菌效果,且对所试的大多数菌株都具有更高的活性.  相似文献   

13.
The essential oils of Lavandula viridis were analysed by GC and GC-MS. Comparisons were made between three types of plant material from the same clone: field-grown plant, in vitro shoot cultures and micropropagated plants of the same clone. The most common components usually found in lavender oils were present in the oil samples analysed and more than 45 constituents were identified, representing more than 80% of the essential oil. The essential oils analysed consisted mainly of monoterpenes (75.4-76.3%), where oxygenated and hydrocarbons identified ranged from 41.8 to 57.3% and 18.1 to 34.2%, respectively. The major components found were 1.8-cineole (18.2-25.1%), camphor (9.1-15.7%), alpha-pinene (8.8-14.1%), borneol (4.1-4.8%), beta-pinene (1.2-5.6%), delta 3-carene (1.0-6.5%) and alpha-terpineol (0.8-4.2%). The monoterpene fraction of the in vitro shoot cultures showed different relative amounts of hydrocarbons and oxygenated components in relation to the parent plant and to micropropagated plants. In the sesquiterpene hydrocarbon fraction of the oil samples analysed (6.1-8.2%), 7-epi-alpha-selinene (1.6-4.8%) was the most important component and the oxygenated sesquiterpenes were found in small amounts (1.1-1.7%). The essential oils from field-grown plants of L. viridis, when compared with those obtained from in vitro shoot cultures or micropropagated plants of the same clone, demonstrated that the same major components were found without significant compositional variations.  相似文献   

14.
Thirty-four essential oils were screened for their repellent activities against the twospotted spider mite, Tetranychus urticae Koch (Acarina: Tetranychidae), at 0.1% concentration level using choice and no-choice laboratory bioassays. Of these, 20 essential oils showed significant repellencies against T. urticae in the choice tests. In subsequent no-choice tests using these 20 essential oils, only sandalwood oil showed significant repellency against T. urticae. Total number of eggs oviposited by T. urticae was significantly lower than controls in the choice tests when the kidney bean leaves were treated with 1 of 14 essential oils. The significant repellency of sandalwood oil against T. urticae lasted at least for 5 h at the 0.1% concentration level. Our GC-MS analysis indicated that the major components of the sandalwood oil were alpha-santalol (45.8%), beta-santalol (20.6%), beta-sinensal (9.4%), and epi-beta-santalol (3.3%). Santanol, a mixture of the two main components in the sandalwood oil, appears to be responsible for the repellency of sandalwood oil against T. urticae.  相似文献   

15.
An evaluation has been made of the potential of near-infrared (NIR) technologies in the assessment of essential oil components and in the identification of individual essential oils. The results showed that cross-validation models are able to predict accurately almost all of the components of essential oils. In different cinnamon (Cinnamomum zeylanicum) and clove (Syzygium aromaticum) essential oils, which showed a similar composition, 23 components (representing 97.8-99.9% of the oil) were accurately predicted, as well as 20 components (93.0-99.1%) in Cinnamomum camphora (ravintsara), 32 components (92.3-98.1%) in Ravensara aromatica (ravensara), and 26 components (96.6-98.4%) in Lippia multiflora. For almost all of the components, the modelled and reference values obtained by GC-FID were highly correlated (r2 > or = 0.985) and exhibited a low variance (less than 5%). The model was also able to discriminate between the ravintsara and ravensara essential oils. It was shown that two commercial oils labelled as R. aromatica were actually ravintsara (C. camphora), revealing the misidentification of these essential oils in the marketplace. The study demonstrates the application of NIR technology as a quality control tool for the rapid identification of individual essential oils, for product authentication, and for the detection of adulteration.  相似文献   

16.
Thymus caespititius Brot. is an important aromatic species, due to synthesis and production of essential oils for the pharmaceutical and food industries. In the present study, levels of essential oils from two chemotypes, including carvacrol/thymol (CT) and sabinene/carvacrol (SC), were evaluated in proliferating shoot cultures (6–12 subcultures following establishment) and compared to those from field-grown plants. The essential oils were isolated by hydrodistillation and analysed by gas chromatography (GC) and GC–mass spectrometry (GC–MS). Cultures grown under in vitro culture conditions, evaluated over six subcultures, were found to maintain stable composition of essential oils. For the CT chemotype, carvacrol (42 %) and thymol (23 %) were the main essential oil components detected in field-grown plants; in proliferating shoot cultures the levels detected attained 17–25 % in the case of carvacrol and 18–23 % in that of thymol, closely followed by carvacryl acetate (15–23 %) and thymyl acetate (11–15 %). For the SC chemotype, carvacrol (13–28 %), sabinene (18–45 %), and thymol (9–12 %) were the main essential oil components detected in both field-grown and proliferating shoot cultures. Our experiments showed that the essential oil composition in proliferating shoot cultures was not only stable, but also qualitatively similar to that of field-grown plants, notwithstanding minor quantitative differences.  相似文献   

17.
1.罗汉果根、茎、叶的结构与葫芦科其它植物大致相似;不同之处有三方面:(1)叶子主脉中维管束为5个:(2)叶子中有硅质细胞成群分布;(3)块根具异常次生生长;在次生木质部中围绕导管形成形成层,由之分化出多个具韧皮部与木质部的小维管束。2.叶中的硅质细胞分布于表皮、栅栏组织、海绵组织中,多个细胞集合在一起。其细胞壁加厚并硅质化,细胞内容物消失。推测与增加叶子的支持力量有关。3.罗汉果雌株叶子上、下表皮气也数之比为0.04,雄株为0.03,比值均很低,同时根据叶的解剖结构推测罗汉果为C3植物。4.雌株叶子下表皮单位面积气孔数比雄株的多26%,差异很显著,值得进一步研究简化观察统计方法,以用于鉴别幼苗的性别。  相似文献   

18.
Essential oil has been isolated from the above-ground part of the lemon balm growing in the neighborhood of Krasnoyarsk by the method of exhaustive water and steam distillation. Forty seven components, each with a content of more than 0.1% of whole oil, have been identified by GC-MS. The main oil components are citronellol (36.71%) and geraniol (27.20%). The oil also contains ten components with a content of more than 1% of the sum of all oil components: benzyl alcohol (1.67%), linalool (1.75%), citronellal (1.44%), neral (3.33%), geranial (4.39%), caryophyllene (3.73%), caryophyllene oxide (1.40%), dibutyl phthalate (1.36%), butylisobutyl ester of phthalic acid (2.45%), and phytol (2.55%). The composition of lemon balm oils from different regions of the world has been compared.  相似文献   

19.
The hepatitis E virus (HEV) causes a common infectious disease that infects pigs, wild boars, deer, and humans. In most cases, humans are infected by eating raw meat. Some essential oils have been reported to exhibit antiviral activities. In this study, in order to investigate the anti-HEV properties of essential oils, the immunoreactivities of HEV antigen proteins against the relevant antibodies were analyzed after the HEV antigens underwent treatment with various essential oils. The essential oils extracted from the tea tree, which was previously reported to exhibit antiviral activity, lavender, and lemon had strongly reduced activity. We found that treatment with the essential oil prepared from Sakhalin spruce was associated with the strongest reduction in immunoreactivity of HEV antigen protein(s) among the tested substances. The main volatile constituents of Sakhalin spruce essential oil were found to be bornyl acetate (32.30 %), α-pinene (16.66 %), camphene (11.14 %), camphor (5.52 %), β-phellandrene (9.09 %), borneol (4.77 %), and limonene (4.57 %). The anti-HEV properties of the various components of the essential oils were examined: treatment with bornyl acetate, the main component of Sakhalin spruce oil, α-pinene, the main component of tea tree oil, and limonene, the main component of lemon oil, resulted in a strong reduction in HEV antigen immunoreactivity. These results indicate that each main component of the essential oils plays an important role in the reduction of the immunoreactivity of HEV antigen protein(s); they also suggest that Sakhalin spruce essential oil exhibits anti-HEV activity. In a formulation with the potential to eliminate the infectivity of HEV in foodborne infections, this essential oil can be applied as an inactivating agent for meat processing and cooking utensils, such as knives and chopping boards.  相似文献   

20.
The plants of wild Origanum vulgare L. ssp. vulgare were collected in 10 localities of Vilnius district (Lithuania) in 1995-1999. The main constituents of the essential oils from 8 localities were beta-ocimene (14.9-21.6%), germacrene D (10.0-16.2), beta-caryophyllene (10.8- 15.7%) and sabinene (6.6- 4.2%). The essential oils from two localities contained only three above compounds as major components: germacrene D, beta-ocimene and sabinene or beta-caryophyllene, beta-ocimene and germacrene D. Three chemotypes of essential oils were identified. The main chemotype was beta-ocimene germacrene D-beta-caryophyllene. The terpenic hydrocarbons made up 52.8-80.6% of the essential oils. The 42 identified components made up 85.6-98.0% of the essential oil.  相似文献   

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