[Objectives] This study was conducted to optimize the ethanol extraction technology of monoester alkaloids from Radix Aconiti Preparata. [Methods]On the basis of defined extraction times,ethanol concentration,ethanol ...[Objectives] This study was conducted to optimize the ethanol extraction technology of monoester alkaloids from Radix Aconiti Preparata. [Methods]On the basis of defined extraction times,ethanol concentration,ethanol times and extraction time were investigated by HPLC-MS combined with orthogonal test to optimize extraction process using the content of monoester alkaloids( the sum of benzoyl neoaconitine,benzoyl hypoaconitine and benzoyl aconitine) as an index.[Results]The optimum ethanol extraction technology was as follows: 75% ethanol,ethanol amount 25 times of the medicinal material,and each extraction for 1. 5 h.[Conclusions] The optimal extraction technology is simple,feasible,stable and reliable. It can provide reference for the industrial production and quality control of monoester alkaloids from Radix Aconiti Preparata.展开更多
Introduction Aconitine-type alkaloids isolated from the roots of Aconitum carmiechaeli show a potential toxicity and a broad spectrum of bioactivity[1-4].On the basis of the C8-substituent of C19-diterpenoid skeleton,...Introduction Aconitine-type alkaloids isolated from the roots of Aconitum carmiechaeli show a potential toxicity and a broad spectrum of bioactivity[1-4].On the basis of the C8-substituent of C19-diterpenoid skeleton,aconitine-type alkaloids can be divided into diester-diterpenoid alkaloids(DDAs),monoester-diterpenoid alkaloids(MDAs),and lipo-alkaloids(Fig.1).展开更多
OBJECTIVE o facilitate the basic acquaintance with the bioactive lycodine-type alkaloids biosynthetic pathways,we conducted the transcriptome analysis of L.casuarinoides by illumina sequencing.METHODS The plant of L.c...OBJECTIVE o facilitate the basic acquaintance with the bioactive lycodine-type alkaloids biosynthetic pathways,we conducted the transcriptome analysis of L.casuarinoides by illumina sequencing.METHODS The plant of L.casuarinoides was collected and was subjected to RNA isolation,cDNA library construction,and illumina sequencing before bioinformatics analysis.After sequencing,the clean reads were obtained for de novo assembly by using Trinity software,and then further processed with TGICL sequencing clustering software to generate unigenes,The unigenes are aligned by Blast X alignment to six public protein database.In addition,all unigenes are functionally annotated by GO,KEGG and characterized putative genes involved in lycopodium alkaloids biosynthesis.RESULTS In total,124,524 high-quality unigenes were obtained with an average sequence length of 601 bp.Among the L.casuarinoides transcripts,61,304 showed significant similarity(E-value<1 e-5) to the known proteins in the public database.Among the total 124 524 unigenes,47,538 open reading frame(ORFs) were predicted.Based on the bioinformatics analysis,all possible enzymes involved in the Lycodine-type alkaloids biosynthetic pathway of L.casuarinoides were identified,including primary amine oxidase(PAO),and Malonly-CoA decarboxylase.In addition,a total of 64 putative cytochrome P450(CYP450) and 827 transcription factors were selected as the candidates of Lycodine-type alka.loids modifiers.Furthermore,a total of 13 352 simple sequence repeats(SSRs) were identified from the 124,524 unigenes,of which dinucleotide motifs AG/CT(50.1%),were the most abundant.CONCLU.SION This transcriptome analysis of L.casuarinoides,provides many valuable candidate genes involv.ing in the biosynthesis of novel secondary metabolites but also lays the foundation for genetic diversity analysis via SSRs markers in L.casuarinoides.展开更多
One new monoterpenoid indole alkaloid, l l-methoxyburnamine-17-O-3′,4′,5′-trimethoxybenzoate (1), was isolated from Rauvolfia yunnanensis Tsiang. Its structure was identified by speclroscopic evidences.
Matrix solid-phase dispersion(MSPD) was developed for the extraction of four alkaloids, including aconitine, mesaconitine, hypaconitine and deoxyaconitine, from the roots ofAconitum kusnezoffii Reichb. The determina...Matrix solid-phase dispersion(MSPD) was developed for the extraction of four alkaloids, including aconitine, mesaconitine, hypaconitine and deoxyaconitine, from the roots ofAconitum kusnezoffii Reichb. The determination of the analyte was carried out by high performance liquid chromatography with UV detection. The alkaline alumina was used as sorbent. The mixture of acetonitrile and water was used as elution solvent. Several extraction parameters, such as type of sorbent, the ratio of sample to solid support material, type of the elution solvent and the volume of the elution solvent were tested. Mean recoveries ranged from 93.16% to 102.73%, with relative standard deviations from 0.27% to 4.17%. With the extraction efficiency and time expenditure taken into account, MSPD extraction should be a comparatively good method.展开更多
基金Supported by Traditional Chinese Medicine Science and Technology Development Program of Shandong Province (2017-1982019-0400)Major Science and Technology Innovation Project of Shandong Province (2018CXGC1304)。
文摘[Objectives] This study was conducted to optimize the ethanol extraction technology of monoester alkaloids from Radix Aconiti Preparata. [Methods]On the basis of defined extraction times,ethanol concentration,ethanol times and extraction time were investigated by HPLC-MS combined with orthogonal test to optimize extraction process using the content of monoester alkaloids( the sum of benzoyl neoaconitine,benzoyl hypoaconitine and benzoyl aconitine) as an index.[Results]The optimum ethanol extraction technology was as follows: 75% ethanol,ethanol amount 25 times of the medicinal material,and each extraction for 1. 5 h.[Conclusions] The optimal extraction technology is simple,feasible,stable and reliable. It can provide reference for the industrial production and quality control of monoester alkaloids from Radix Aconiti Preparata.
基金Supported by the National Natural Science Foundation of China(Nos.30472134and30672600)the National Basic Re-search Program of China(No.2006CB5047060).
文摘Introduction Aconitine-type alkaloids isolated from the roots of Aconitum carmiechaeli show a potential toxicity and a broad spectrum of bioactivity[1-4].On the basis of the C8-substituent of C19-diterpenoid skeleton,aconitine-type alkaloids can be divided into diester-diterpenoid alkaloids(DDAs),monoester-diterpenoid alkaloids(MDAs),and lipo-alkaloids(Fig.1).
基金supported by Jiangxi′s Major International Science and Technology Cooperation Projects(20151BDH80020)
文摘OBJECTIVE o facilitate the basic acquaintance with the bioactive lycodine-type alkaloids biosynthetic pathways,we conducted the transcriptome analysis of L.casuarinoides by illumina sequencing.METHODS The plant of L.casuarinoides was collected and was subjected to RNA isolation,cDNA library construction,and illumina sequencing before bioinformatics analysis.After sequencing,the clean reads were obtained for de novo assembly by using Trinity software,and then further processed with TGICL sequencing clustering software to generate unigenes,The unigenes are aligned by Blast X alignment to six public protein database.In addition,all unigenes are functionally annotated by GO,KEGG and characterized putative genes involved in lycopodium alkaloids biosynthesis.RESULTS In total,124,524 high-quality unigenes were obtained with an average sequence length of 601 bp.Among the L.casuarinoides transcripts,61,304 showed significant similarity(E-value<1 e-5) to the known proteins in the public database.Among the total 124 524 unigenes,47,538 open reading frame(ORFs) were predicted.Based on the bioinformatics analysis,all possible enzymes involved in the Lycodine-type alkaloids biosynthetic pathway of L.casuarinoides were identified,including primary amine oxidase(PAO),and Malonly-CoA decarboxylase.In addition,a total of 64 putative cytochrome P450(CYP450) and 827 transcription factors were selected as the candidates of Lycodine-type alka.loids modifiers.Furthermore,a total of 13 352 simple sequence repeats(SSRs) were identified from the 124,524 unigenes,of which dinucleotide motifs AG/CT(50.1%),were the most abundant.CONCLU.SION This transcriptome analysis of L.casuarinoides,provides many valuable candidate genes involv.ing in the biosynthesis of novel secondary metabolites but also lays the foundation for genetic diversity analysis via SSRs markers in L.casuarinoides.
基金supported by the Knowledge Innovation Program of the CAS(No.KSCX2-YW-G-038, KSCX2-YW-G-027,29KZCX2-XB2-15-03),NSFC(No.30772636)NSFY(No.2005C0010Z)High-Tech Special Project of Yunnan Province(2007),and Foundation of Key State Lab.of Phytochemistry and Plant Resources in West China
文摘One new monoterpenoid indole alkaloid, l l-methoxyburnamine-17-O-3′,4′,5′-trimethoxybenzoate (1), was isolated from Rauvolfia yunnanensis Tsiang. Its structure was identified by speclroscopic evidences.
基金Supported by the Projects in the National Science & Technology Pillar Program During the Eleventh Five-Year Plan Period of China(No 2006BAI14B01)
文摘Matrix solid-phase dispersion(MSPD) was developed for the extraction of four alkaloids, including aconitine, mesaconitine, hypaconitine and deoxyaconitine, from the roots ofAconitum kusnezoffii Reichb. The determination of the analyte was carried out by high performance liquid chromatography with UV detection. The alkaline alumina was used as sorbent. The mixture of acetonitrile and water was used as elution solvent. Several extraction parameters, such as type of sorbent, the ratio of sample to solid support material, type of the elution solvent and the volume of the elution solvent were tested. Mean recoveries ranged from 93.16% to 102.73%, with relative standard deviations from 0.27% to 4.17%. With the extraction efficiency and time expenditure taken into account, MSPD extraction should be a comparatively good method.