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三七叶、人参叶和西洋参叶其皂苷类成分相近,但专属性成分各异,皂苷类成分的分布比例也各不相同。本文建立了HPLC-UV法测定上述皂苷成分的方法,经过方法学考察,各种皂苷成分精密度好、加样回收率高,方法可靠。11种皂苷成分总含量顺序为:西洋参叶>人参叶>三七叶;二醇组皂苷成分含量:西洋参叶>三七叶>人参叶;三醇组皂苷成分含量:人参叶>西洋参叶>三七叶。西洋参叶中二醇组皂苷和人参叶中三醇组皂苷含量明显高于其他。西洋参叶中人参皂苷Rb3和Rd的含量之和占11种皂苷成分的60%以上。鉴于其中人参皂苷的高含量,三七叶、人参叶和西洋参叶应该作为皂苷来源得到充分利用;不同的皂苷成分有不同的药理活性,应基于它们的皂苷组成和比例选择性进行研究和开发。  相似文献   

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Root of Glycyrrhiza uralensis, one of the most important medicinal plants, containing bioactive triterpene saponins (glycyrrhizin). Squalene synthase (SQS) plays a regulatory role in the biosynthesis of triterpene saponins. In the present investigation, SQS coding sequence from G. uralensis was cloned by polymerase chain reaction (PCR) and a transgenic system was developed for G. uralensis through Agrobacterium rhizogenes-mediated transformation. The SQS gene placed under a CaMV 35S promoter was transferred into G. uralensis using A. rhizogenes strain ACCC10060. The transformed hairy roots were selected on Murashige and Skoog (1962)-containing phosphinothricin (PPT) and root lines were established. The integration of SQS gene was confirmed by PCR and Southern blot. Three transgenic root lines UP1, UP24, UP31 were obtained and their growth rates were detected. The result showed that transgenic root lines but UP1 line grew faster than control hairy roots; high-performance liquid chromatography (HPLC) analysis demonstrated the highest glycyrrhizin content of transgenic roots was 2.5 mg/g dry weight and was about 2.6 times higher than control hairy roots. The nucleotide sequences GuSQS1 and GUSQS2 reported in this paper appear in the EMBL nucleotide sequence database with the accession number AM182329 and AM182330, respectively.  相似文献   

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植物三萜皂苷生物合成中关键后修饰酶研究进展   总被引:1,自引:0,他引:1  
三萜皂苷是由三萜苷元、糖基、糖醛酸等组成的C30萜类化合物,是许多药用植物的主要活性成分,具有广泛的药理作用。三萜皂苷的生物合成包括前体和三萜皂苷骨架的形成以及调控皂苷结构多样性的后修饰。三萜皂苷的后修饰包括三萜骨架的氧化/羟基化和糖基化,分别由不同超基因家族编码的细胞色素P450单加氧酶和糖基转移酶进行催化。三萜皂苷通过后修饰最终可形成多种单体皂苷。目前,已在少数植物中识别和确认了个别与三萜皂苷生物合成相关的关键后修饰酶,发现了部分很可能参与后修饰过程的候选基因。该文就近年来国内外有关三萜皂苷生物合成途径关键后修饰酶的研究进行综述,为进一步开展相关研究和对合成精细途径的解析提供参考。  相似文献   

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Roots of Primula veris L. contain considerable amounts of triterpene saponins, which are used in medicine as expectorants. P. veris is in many places an endangered plant, and its production in the field is laborious and a low yielding process. Plant tissue culture provides an alternative means for producing secondary metabolites. Shoot apex, callus, suspension, and root cultures of P. veris were developed for saponin production. In these cultures, the content of triterpene saponins, with focus on primula acid I, the most dominant saponin in Primula species, was determined and compared to that in soil-grown plants. The highest content of primula acid I was observed in root cultures, on average 29.5 mg/g dry weight. Some culture lines contained higher amounts of primula acid I (62.6 mg/g dry weight) than the roots of plants grown in soil.  相似文献   

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Dan M  Su M  Gao X  Zhao T  Zhao A  Xie G  Qiu Y  Zhou M  Liu Z  Jia W 《Phytochemistry》2008,69(11):2237-2244
The metabolite profiling of different parts of Panax notoginseng was carried out using rapid ultra-performance liquid chromatography-electrospray ionization mass spectrometry (UPLC-ESI-MS) and multivariate statistical analysis. Principal component analysis (PCA) of the UPLC-ESI-MS data showed a clear separation of compositions among the flower buds, roots and rhizomes of P. notoginseng. The saponins accounting for such variations were identified through the corresponding loadings weights and were further verified by accurate mass, tandem mass and retention times of available standard saponins using UPLC quadrupole time-of-flight mass spectrometer (UPLC-QtofMS). Finally, the influential factors of different metabolic phenotypes of P. notoginseng was elucidated. The currently proposed UPLC-ESI-MS/MS analytical method coupled with multivariate statistical analysis can be further utilized to evaluate chemical components obtained from different parts of the plant and/or the plant of different geographical locations, thereby classifying the medicinal plant resources and potentially elucidating the mechanism of inherent phytochemical diversity.  相似文献   

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雷宇阳  李霁  赵丽云  罗鸣  陈红锋 《广西植物》2022,42(9):1473-1479
走马胎是我国华南地区重要的民族药物,其体内的次生代谢物三萜皂苷具有多种药用功效。为了解三萜皂苷含量变化以及生物合成通路相关基因的调控规律,该研究对走马胎在不同组织部位以及不同外源激素处理下所呈现的表达模式进行了比较分析。结果表明:(1)三萜皂苷含量在不同组织部位间和外源激素处理下均存在显著差异,具体表现为根部组织的含量显著高于叶部组织的,而用外源水杨酸(SA)与茉莉酸甲酯(MeJA)喷施处理后其含量低于对照组(CK)。(2)对这两个差异比较组进行qRT-PCR分析结果显示,相比叶部组织,在根部组织中AkPMD、AkHDS、AkSS、AkSM以及与三萜皂苷合成相关的走马胎P450家族、UGT家族基因皆有不同程度的上调;外源SA与MeJA处理会导致合成途径上游的AkPMD、AkHDS、AkSS、AkSM上调,而下游的P450家族、UGT家族基因则有所下调。因此,通过对不同组织部位和不同外源激素处理这两种差异表达模式的比较研究,可推测在这两种表达模式下走马胎三萜皂苷的合成更多地与下游特异化修饰的酶相关。  相似文献   

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Triterpene saponins are a group of bioactive compounds abundant in the genus Medicago , and have been studied extensively for their biological and pharmacological properties. In this article, we evaluated the effects of the ectopic expression of AsOXA1 cDNA from Aster sedifolius on the production of triterpene saponins in barrel medic ( Medicago truncatula Gaertn.). AsOXA1 cDNA encodes β-amyrin synthase, a key enzyme involved in triterpene saponin biosynthesis. One of the four transgenic lines expressing AsOXA1 accumulated significantly larger amounts of some triterpenic compounds in leaf and root than did control plants. In particular, the leaf exhibited significantly higher levels of bayogenin, medicagenic acid and zanhic acid. The amounts of medicagenic acid and zanhic acid, which represent the core of the M. truncatula leaf saponins, were 1.7 and 2.1 times higher, respectively, than the amounts extracted from the control line. In root, the production of bayogenin, hederagenin, soyasapogenol E and 2β-hydroxyoleanolic acid was increased significantly. The increase in the total amounts of triterpenic compounds observed in the leaves of transgenic lines correlated with the AsOXA1 expression level. Interestingly, the plants expressing AsOXA1 showed, under different growth conditions, improved nodulation when compared with the control line. Nodulation enhancement was also accompanied by a significant change in the soyasapogenol B content. Our results indicate that the ectopic expression of AsOXA1 in barrel medic leads to a greater accumulation of triterpene saponins and enhanced root nodulation.  相似文献   

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One of the goals of cancer chemotherapy and prevention is the discovery of compounds that are relatively selective to tumor cells and, therefore, have reduced effects on normal cell growth. In previously published studies, it was shown that certain triterpene saponins (called avicins) from a desert tree, Acacia victoriae, are selectively toxic to tumor cells at very low doses (IC(50): 0.2 microg/mL for Jurkat cells). To extend this research to human clinical studies, we needed to find a reliable supply of avicins and have developed a transformed "hairy root" culture as a means of biomass production. Protocols were optimized for A. victoriae micropropagation; after a boiling water treatment, A. victoriae seeds were maintained under in vitro conditions on defined media. Embryo-axis explants from shoot tips were removed and infected with Agrobacterium rhizogenes Conn (R 1000) for hairy root induction. Plasmid integration was confirmed by PCR analysis with a primer set for a segment of the rol B gene. Culture conditions have been optimized for root biomass production, and various inducers have been investigated for enhancement of avicin production. Hairy root cultures were compared with intact pod tissue from field-grown sources for avicin content following partial purification of triterpene glycosides and HPLC separation of the secondary metabolites. From bioassays of the collected HPLC fractions, we have identified putative triterpene "metabolic clusters" with enhanced activity against tumor cells. This now provides a system for both production of clinical trial lots of active samples, but also a means to correlate structure of individual triterpene glycosides with specific cellular target activity in mammalian cells.  相似文献   

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Tansakul P  Shibuya M  Kushiro T  Ebizuka Y 《FEBS letters》2006,580(22):5143-5149
Panax ginseng produces triterpene saponins called ginsenosides, which are classified into two groups by the skeleton of aglycones, namely dammarane type and oleanane type. Dammarane-type ginsenosides dominate over oleanane type not only in amount but also in structural varieties. However, their sapogenin structure is restricted to two aglycones, protopanaxadiol and protopanaxatriol. So far, the genes encoding oxidosqualene cyclase (OSC) responsible for formation of dammarane skeleton have not been cloned, although OSC yielding oleanane skeleton (β-amyrin synthase) has been successfully cloned from this plant. In this study, cDNA cloning of OSC producing dammmarane triterpene was attempted from hairy root cultures of P. ginseng by homology based PCR method. A new OSC gene (named as PNA) obtained was expressed in a lanosterol synthase deficient (erg7) Saccharomyces cerevisiae strain GIL77. LC-MS and NMR analyses identified the accumulated product in the yeast transformant to be dammarenediol-II, demonstrating PNA to encode dammarenediol-II synthase.  相似文献   

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The aim of the present work is to isolate a series of triterpene derivatives with rhamnosyl linking acetyl groups from Glechoma longituba according to the structural characteristics of previously described triterpene saponins. The extract ion chromatography spectrum of the crude extract of G. longituba was detected and analyzed by HPLC-HR-ESI-MS to determine possible components, and these metabolites were traced and separated by combining high-resolution mass spectrometry and predicted liquid chromatography retention time. Three 11α, 12α-epoxypentacyclic oleanolic acid triterpene saponins (glechomanosides H–J) and one ursane triterpene aldehyde saponin with a C-28 aldehyde group were isolated from G. longituba. The structure of these compounds was confirmed by NMR and compared with those of previously characterized compounds. The strategy described in this report enables a rapid, reliable, and complete analysis of glycoside compounds containing different numbers of acetyl groups at different positions on the sugar.  相似文献   

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为研究三七(Panax notoginseng(Burk)F.H.Chen)采收过程中残留须根的化感自毒效应,采用土培和水培2种方法,按不同比例添加三七须根粉碎物,检测根残体作用下土培三七土壤中皂苷的动态变化及水培三七根部形态结构变化。结果显示,土培条件下,随着须根粉碎物处理时间的延长,土壤中皂苷成分种类增加、总皂苷含量减少。水培条件下,随着处理时间的延长,添加须根粉碎物处理后的三七根尖细胞壁增厚,细胞中出现菌丝体;随着处理时间及处理浓度的增加,细胞开始皱缩甚至破碎,细胞中无完整细胞器结构,三七根部细胞结构差异明显。研究表明三七采收过程中残留在土壤中的须根腐解释放的化学物质可能是导致三七自毒效应的因素之一。  相似文献   

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三七是中国云南省的"第一药材",云南文山三七是三七的道地药材。三七块根的横截面为黄白色至紫色。紫色块根约占研究块根总数的28 .21 %,其中柱鞘、内皮层、皮层或表皮为紫色。特征颜色反应和紫外——可见光谱表明:三七块根紫色素属于黄酮类化合物,可能含有酚性邻位二羟基,不含类胡萝卜素、查耳酮、噢哢、异黄酮、儿茶素。花色苷和/或其苷元花色素奠定了紫色块根着色的基础,其他的非红色的黄酮类化合物起共色素的作用。块根的平均花色苷含量和平均总皂苷含量均以纯紫色块根的为最高,其次是黄紫混合色块根的,纯黄色的最低。块根的花色苷含量差异达到极显著水平,但总皂苷含量差异却没有达到显著水平。每个块根都含有不同量的花色苷,随花色苷量的增加,块根的紫色一般逐渐明显。块根的花色苷含量与其总皂苷含量之间呈显著正相关,相关系数r=0 .355。本文可为三七块根颜色呈现的机理探索及其色素的分子结构鉴定提供参考。  相似文献   

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三七根腐病原菌毁坏柱孢霉分子定量检测方法及其应用   总被引:1,自引:0,他引:1  
【目的】建立一种快速准确的三七根腐病病原真菌毁坏柱孢霉(Cylindrocarpon destructans)的分子定量检测方法,探讨毁坏柱孢霉与植株生长和AM真菌侵染之间的数量效应关系。【方法】根据GenBank登录的毁坏柱孢霉rDNA基因IGS序列片段,设计特异性引物对CDU2和CDL2b,利用含有SYBR Green I的实时荧光定量PCR建立毁坏柱孢霉定量检测方法,检测三七根际土壤毁坏柱孢霉rDNA基因IGS片段拷贝数,并分析其与植株生物量和AM真菌侵染之间的关系。【结果】发病植株根际土壤毁坏柱孢霉rDNA基因IGS片段拷贝数显著高于健康植株。三七根际土壤中毁坏柱孢霉数量与植株地上部生物量以及菌根侵染强度呈显著负相关(P<0.05),与根系生物量以及根内丛枝丰度相关性不显著。【结论】基于实时定量PCR技术建立的毁坏柱孢霉的分子定量方法能够有效反映三七根际土壤中毁坏柱孢霉的数量及其与植株生长和AM真菌侵染的关系。  相似文献   

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目的探讨三七皂甙对五步蛇咬伤的治疗作用。方法将2011年4~11月我院收治的五步蛇咬伤3h内就诊的患者30例随机分为对照组(A组)21例,给予常规治疗;研究组(B组)9例,在常规治疗的基础上加用三七皂甙治疗。观察比较两组患者24h后磷酸肌酸激酶的变化以及肿胀程度的改善情况。结果B组24h后磷酸肌酸激酶较A组下降,肿胀程度比A组减轻,差异均有显著统计学意义(P〈0.05)。结论三七皂甙对五步蛇咬伤的疗效明显,值得临床推广。  相似文献   

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三七总皂苷抗肝纤维化作用机制的研究进展   总被引:2,自引:0,他引:2  
肝纤维化是各种慢性肝病共同的病理基础,是慢性肝病发展到肝硬化、肝癌的必经途径。寻找有效的抗肝纤维化药物是近年研究的热点,其中对三七的研究也取得了很大进展。现综述近几年三七皂苷在保护肝细胞、抑制肝星形细胞活化、促进肝星形细胞凋亡、抑制细胞外基质的合成及促使其降解等方面的作用及可能机制,同时也阐述了三七总皂苷在抗肝纤维化中的重要意义及应用前景。  相似文献   

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实时荧光定量PCR检测三七SS基因表达的初步实践   总被引:2,自引:0,他引:2  
朱华  吴耀生 《广西植物》2008,28(5):703-707
运用含有SYBR Green I的Real Time RT-PCR法分析SS基因在一年生三七根、茎、芦头3个部位中转录水平的相对表达差异。统计分析表明SS基因在根中的表达量最高。本研究取得了特异性高、重复性好的结果,标准曲线斜率均在-3.33~-4范围内,扩增效率均在95%~100%之间,熔解曲线分析显示产物特异性的单一峰,为Real Time RT-PCR技术用于三七植物基因的差异表达分析建立了相应的技术平台。  相似文献   

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