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1.
以3年生蒙古黄芪植株为材料,采用盆栽法模拟干旱处理,研究水分胁迫对黄芪生理状态以及其根、茎、叶中毛蕊异黄酮、毛蕊异黄酮葡萄糖苷、芒柄花素和芒柄花苷4种黄酮类化合物含量的影响。结果显示:(1)毛蕊异黄酮和毛蕊异黄酮葡萄糖苷在黄芪根、茎、叶均有分布,不同器官的毛蕊异黄酮葡萄糖苷含量表现为根叶茎,而毛蕊异黄酮含量则是叶茎根。(2)干旱胁迫下,黄芪根中毛蕊异黄酮葡萄糖苷和芒柄花苷在胁迫第8~12天有一定的积累;叶中的毛蕊异黄酮则在干旱第4~8天有明显的积累,而毛蕊异黄酮葡萄糖苷则没有明显变化。研究发现,4种黄酮类化合物在黄芪各器官中分布和含量不尽相同,同一器官中不同黄酮类化合物对干旱胁迫的响应规律也存在差异;适度的干旱胁迫能够促进黄芪毛蕊异黄酮葡萄糖苷的积累,但过度干旱胁迫则不利于其积累。  相似文献   

2.
膜荚黄芪中的异黄酮化合物   总被引:27,自引:0,他引:27  
从上海崇明产膜荚黄芪(Astragalus membranaceus(Fisch.)Bunge)根的乙醇提取物中分离鉴定了6个异黄酮化合物:8,3'-二羟基-7,4'-二甲氧基异黄酮、奥刀拉亭-7-O-β-D-葡萄吡喃糖甙、芒柄花素、7,3'-二羟基-8,4'-二甲氧基异黄酮、毛蕊异黄酮和毛蕊异黄酮-7-O-β-D葡萄吡喃糖甙。其中,前两个为新化合物。  相似文献   

3.
黄芪化学成分与生态因子的相关性   总被引:2,自引:0,他引:2  
以主成分分析(PCA)和相关性分析(CA)法研究黄芪中主要有效成分与生态因子的相关性,探究影响黄芪主要成分积累的生态因子.结果表明: 山西产地黄芪中的黄芪甲苷、毛蕊异黄酮苷、芒柄花苷、山奈酚和黄芪多糖的含量显著高于内蒙古和甘肃两地.影响黄芪化学成分含量的气候因子主要为年均相对湿度、年日照时数及7月均温.影响黄芪化学成分含量的土壤元素主要为钙,且钙在一定范围内与毛蕊异黄酮苷、山柰酚、芒柄花苷、槲皮素、黄芪多糖的含量呈负相关.  相似文献   

4.
膜荚黄芪活性成分研究   总被引:1,自引:0,他引:1  
对膜荚黄芪(Astragatus membranaceus (Fisch.)Bunge)的成分进行了系统分离和鉴定,同时用E- 112顺磁共振仪测定了以芒柄花素为代表的异黄酮类化合物清除超氧自由基的活性,结果证明黄芪中的异黄酮类化合物具有清除超氧阴离子的活性。这可能是黄芪药物具有治疗心力衰竭和抗衰老的活性机理之一,在分离过程中,得到15种结晶,经化学降解和光谱分析分别鉴定为:晶Ⅰ:蔗糖(sucrose),晶Ⅱ:黄芪皂甙Ⅳ(astragaloside Ⅳ),晶Ⅲ:芒柄花素(formononetin),晶Ⅳ:毛蕊异黄酮(calycosin),晶V:黄芪皂甙Ⅵ(astragaloside Ⅵ),晶Ⅵ:(3R)7,2’-二羟基-5’,6’二甲氧基异黄烷-7-O-β-D葡萄糖甙,晶Ⅶ:黄芪皂甙Ⅱ(astragaloside Ⅱ),晶Ⅶ:黄芪皂甙Ⅱ(astragaloside Ⅱ),晶Ⅷ:黄芪皂甙Ⅲ(astragaloside Ⅲ),晶Ⅸ:β-谷甾醇(β-sitosterol),晶Ⅹ:棕榈酸(palmitic acid),晶Ⅺ:胡萝卜甙(daucosterol),晶XⅡ~XV结构待定,本文主要报道晶Ⅲ的活性及晶Ⅵ的结构鉴定,晶Ⅵ为一新化合物。  相似文献   

5.
建立HPLC-UV-ELSD法同时测定黄芪中黄芪皂苷Ⅰ、黄芪皂苷Ⅱ、黄芪皂苷Ⅲ、黄芪甲苷、毛蕊异黄酮葡萄糖苷、刺芒柄花苷、毛蕊异黄酮的含量,并比较四种不同供试液中7种成分的含量差异,实验采用Agilent 5 TC-C_(18)色谱柱(250 mm×4.6 mm,5μm),0.3%甲酸水溶液-乙腈进行梯度洗脱,流速为1.0 mL/min,检测波长254 nm;柱温30℃,漂移管温度70℃。在该色谱条件下,黄芪中7种成分能得到较好的分离,稳定性,重复性及精密度良好。本方法能简便、快捷、有效的测定黄芪药材中多种成分含量。大孔树脂制备供试品中黄芪皂苷和黄酮类成分更高,说明碱化处理对黄芪中的成分含量产生了一定影响。  相似文献   

6.
女贞小蜡树的酚性配糖体成分研究   总被引:1,自引:0,他引:1  
从女贞小蜡树 (LigustrumsinenseLour.)茎叶甲醇提取物的水溶性部分得到 1个新的和 6个已知酚性配糖体成分。它们是两个已知的裂环环烯醚萜类化合物 :1 0 hydroxyoleuropein( 1 )和specneuzhenide( 2 ) ,五个苯乙醇类化合物 :3 ,4 二羟基苯乙醇 ( 3 ) ,3 ,4 二羟基苯乙醇 2′ O β D 吡喃葡萄糖甙 ( 4 ) ,3 甲氧基 苯乙醇 4 O β D 吡喃葡萄糖甙 ( 5 ) ,4 羟基苯乙醇 ( 6) ,4 羟基苯乙醇 2′ O β D 吡喃葡萄糖甙 ( 7) ,化合物 5为新化合物 ,命名为小蜡甙A(sinenosideA) ,经理化和波谱分析鉴定了论文中的所有化合物的结构  相似文献   

7.
牛心朴子须根的化学成分研究   总被引:6,自引:2,他引:4  
从采自宁夏的萝摩科鹅绒藤属植物牛心朴子 (CynanchumkomaroviiAl.Iljinski.)须根的乙醇提取物中分离鉴定了十个非C2 1 甾体类化合物 :β D 呋喃果糖基 (2→ 1) α D [6 O 芥子酰基 ] 吡喃葡萄糖甙 (1) ,β D (3 O 芥子酰基 ) 呋喃果糖基 (2→ 1) α D [6 O 芥子酰基 ] 吡喃葡萄糖甙 (2 ) ,[6 O β D 吡喃葡萄糖基 (1→ 6 ) β D 吡喃葡萄糖基 1,2 双氧 (4 羟基 3,5 二甲氧基肉桂酰 ) (3) ,7 脱甲氧基娃儿藤碱 (4) ,9 羟基 芳樟醇 3 O β D 吡喃木糖基 (1→ 6 ) β D 吡喃葡萄糖甙 (5 ) ,(2E ,6R) 2 ,6 二甲基 2 ,7 辛二烯 1,6 二醇 (6 ) ,[(+) 丁香素 ](7) ,4′ O demethylepiyangambin(8) ,4′ 羟基 2′ 甲氧基苯乙酮 (9) ,(2S ,3S ,4R ,12E) N [2′ (R) 羟基二十二碳烷基 ] 1,3,4 三羟基 2 酰胺 二十碳烷基 12 烯 (10 )。除化合物 4和 9外 ,其余化合物均为首次从该植物中分离得到。  相似文献   

8.
为了研究红豆树茎枝抑菌活性成分,采用色谱法分离纯化得到16个黄酮类化合物,通过理化性质及波谱技术分别鉴定为圆荚草双糖苷(1)、5,7-二羟基-4'-甲氧基异黄酮-7-O-β-D-葡萄糖苷(2)、4',8-二甲氧基-7-O-β-D-葡萄糖基异黄酮(3)、芒柄花苷(4)、异樱黄素-7-O-β-D-葡萄糖苷(5)、芦丁(6)、山奈酚-3-O-β-D-芸香糖苷(7)、4'-甲氧基异黄酮-7-O-β-D-木糖(1→6)-O-β-D-吡喃葡萄糖苷(8)、4'-甲氧基异黄酮-7-O-β-D-芹糖(1→6)-O-β-D-吡喃葡萄糖苷(9)、染料木素(10)、异樱黄素(11)、2',4',5,7-四羟基异黄酮(12)、大豆素(13)、柚皮素(14)、二氢染料木素(15)、去甲基化美迪紫檀素(16)。其中化合物1~16为首次从红豆树植物中分离得到;化合物1、3、4、6~9、12、15、16首次从红豆属中分离得到;化合物2,5和14对禾谷镰刀菌、西瓜尖镰孢菌、茄病镰刀菌的菌丝生长显示出了中等强度的抑制作用。  相似文献   

9.
红豆树茎枝中黄酮类成分及其抑菌活性研究   总被引:1,自引:0,他引:1  
为了研究红豆树茎枝抑菌活性成分,采用色谱法分离纯化得到16个黄酮类化合物,通过理化性质及波谱技术分别鉴定为圆荚草双糖苷(1)、5,7-二羟基-4'-甲氧基异黄酮-7-O-β-D-葡萄糖苷(2)、4',8-二甲氧基-7-O-β-D-葡萄糖基异黄酮(3)、芒柄花苷(4)、异樱黄素-7-O-β-D-葡萄糖苷(5)、芦丁(6)、山奈酚-3-O-β-D-芸香糖苷(7)、4'-甲氧基异黄酮-7-O-β-D-木糖(1→6)-O-β-D-吡喃葡萄糖苷(8)、4'-甲氧基异黄酮-7-O-β-D-芹糖(1→6)-O-β-D-吡喃葡萄糖苷(9)、染料木素(10)、异樱黄素(11)、2',4',5,7-四羟基异黄酮(12)、大豆素(13)、柚皮素(14)、二氢染料木素(15)、去甲基化美迪紫檀素(16)。其中化合物1~16为首次从红豆树植物中分离得到;化合物1、3、4、6~9、12、15、16首次从红豆属中分离得到;化合物2,5和14对禾谷镰刀菌、西瓜尖镰孢菌、茄病镰刀菌的菌丝生长显示出了中等强度的抑制作用。  相似文献   

10.
鬼针草中一个新的查耳酮甙   总被引:5,自引:0,他引:5  
从鬼针草BidenspilosaL .地上部分的丙酮提取物中 ,分离鉴定了 1 8个化合物 ,其中包括一个新的查耳酮甙类化合物 (α,3,2′,4′ tetrahydroxy 2′ O β D glucopyranosylchalcone,2 )。其它化合物分别鉴定为butein (1 ) ,okanin 4 methylether 3′ O β glucoside (3) ,sulfuretin (4) ,6 ,7,3′,4′ tetrahydroxyaurone (5) ,海生菊苷 (maritimein ,6) ,(Z ) 6 O (6″ acetyl β D glucopyr anosyl) 6 ,7,3′,4′ tetrahydroxy aurone (7) ,(Z ) 6 O (4″,6″ diacetyl β D glucopyranosyl) 6 ,7,3′,4′ tetrahydroxy aurone (8) ,(Z ) 6 O (3″,4″,6″ triacetyl β D glucopyranosyl) 6 ,7,3′,4′ tetrahydroxy aurone (9) ,木犀草素 (luteolin ,1 0 ) ,槲皮素 (quercetin,1 1 ) ,异槲皮苷 (iso quercitrin,1 2 ) ,芦丁 (rutin,1 3) ,黄芪苷 (astragalin,1 4 ) ,quercetin 3,4′ dimethylether 7 O rutinoside (1 5) ,反式丁烯二酸 (1 6) ,2 β D glucopyranosyloxy 1 hydroxy trideca 3 ,5,7,9,1 1 pentayne (1 7)和 3 β D glucopyranosyloxy 1 hydroxy 6 (E ) tetradecene 8,1 0 ,1 2 triyne (1 8)。  相似文献   

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Curcumin is the yellow pigment of turmeric that interacts irreversibly forming an adduct with thioredoxin reductase (TrxR), an enzyme responsible for redox control of cell and defence against oxidative stress. Docking at both the active sites of TrxR was performed to compare the potency of three naturally occurring curcuminoids, namely curcumin, demethoxy curcumin and bis-demethoxy curcumin. Results show that active sites of TrxR occur at the junction of E and F chains. Volume and area of both cavities is predicted. It has been concluded by distance mapping of the most active conformations that Se atom of catalytic residue SeCYS498, is at a distance of 3.56 from C13 of demethoxy curcumin at the E chain active site, whereas C13 carbon atom forms adduct with Se atom of SeCys 498. We report that at least one methoxy group in curcuminoids is necessary for interation with catalytic residues of thioredoxin. Pharmacophore of both active sites of the TrxR receptor for curcumin and demethoxy curcumin molecules has been drawn and proposed for design and synthesis of most probable potent antiproliferative synthetic drugs.  相似文献   

13.
正Dear Editor,In December 2019, a novel human coronavirus caused an epidemic of severe pneumonia(Coronavirus Disease 2019,COVID-19) in Wuhan, Hubei, China(Wu et al. 2020; Zhu et al. 2020). So far, this virus has spread to all areas of China and even to other countries. The epidemic has caused 67,102 confirmed infections with 1526 fatal cases  相似文献   

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The young pistils in the melanthioid tribes, Hewardieae, Petrosavieae and Tricyrteae, are uniformly tricarpellate and syncarpous. They lack raphide idioblasts. All are multiovulate, with bitegmic ovules. The Petrosavieae are marked by the presence of septal glands and incomplete syncarpy. Tepals and stamens adhere to the ovary in the Hewardieae and the Petrosavieae but not in the Tricyrteae. Two vascular bundles occur in the stamens of the Hewartlieae and Tricyrtis latifolia. Ventral bundles in the upper part of the ovary of the Hewardieae are continuous with compound septal bundles and placental bundles in the lower part. Putative ventral bundles occur in the alternate position in the Tricyrteae and putative placental bundles in the opposite. position in the Petrosavieae. The dichtomously branched stigma in each carpel of the Tricyrteae is supplied by a bifurcated dorsal bundle.  相似文献   

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Some closely related members of the monocotyledonous familiesAlismataceae, Liliaceae, Juncaceae, Cyperaceae, Poaceae andAraceae with variable modes of pollination (insect- and wind-pollination) were studied in relation to the ultrastructure of pollenkitt and exine (amount, consistency and distribution of pollenkitt on the surface of pollen grains). The character syndromes of pollen cementing in entomophilous, anemophilous and intermediate (ambophilous or amphiphilous) monocotyledons are the same in principal as in dicotyledons. Comparing present with former results one can summarize: 1) The pollenkitt is always produced in the same manner by the anther tapetum in all angiosperm sub-classes. 2) The variable stickiness of entomophilous and anemophilous pollen always depends on the particular distribution and consistency of the pollenkitt, but not its amount on the pollen surface. 3) The mostly dry and powdery pollen of anemophilous plants always contains a variable amount of inactive pollenkitt in its exine cavities. 4) A step-by step change of the pollen cementing syndrome can be observed from entomophily towards anemophily. 5) From the omnipresence of pollenkitt in all wind-pollinated angiosperms studied one can conclude that the ancestors of anemophilous angiosperms probably have been zoophilous (i.e. entomophilous) throughout.
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正Dear Editor,Parainfluenza virus 5 (PIV5), known as canine parainfluenza virus in the veterinary field, is a negative-sense,nonsegmented, single-stranded RNA virus belonging to the Paramyxoviridae family (Chen 2018). The virus was first reported in primary monkey kidney cells in 1954 (Hsiung1972), then it has been frequently discovered in various  相似文献   

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