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1.
Forty-five populations of Pentanema corresponding to seven species included in the Pentanema conyzae clade have been studied using AFLP fingerprinting. The results show that allopolyploidization could have been involved in the diversification of this group, specifically in species P. langeanum and P. maletii. Molecular data confirm the presence of P. britannicum in the Iberian Peninsula and key steps are provided to identify the species that are morphologically the most challenging.  相似文献   
2.
本文针对湖北贝母生产中存在繁殖系数低的问题,研究了单鳞片砂培繁殖对提高鳞茎繁殖率的效果和原理。试验结果表明:1.单鳞片繁殖率为对照种鳞茎的5—9倍,2.低温(2—10℃)预处理4—8周和暗条件培养,能有效地提高子球形成率,促使子球迅速长大,3.植物激素(6-BA、KT、2,4-D)处理,有利于促进鳞片不定芽原基的分化,繁殖率为种茎繁殖的9—11倍;4.单鳞片繁殖的小鳞茎主要发生在鳞片基部的茎盘上,还可发生在鳞片的远轴面上,但不发生在近轴面。  相似文献   
3.
湖北贝母的染色体核型分析   总被引:3,自引:1,他引:2  
本文报道了我国特有植物湖北贝母(Fritillaria hupehensis Hsiao et K.C.Hsia,百合科)的体细胞染色体数目和核型(2n=24=2m+2sin+4st+14t+2st~(sat).)  相似文献   
4.
5.
Chlorogenic (5‐CQA), 1,5‐, 3,5‐, 4,5‐ and 3,4‐dicaffeoylquinic (DCQA) acids were identified and quantified in the methanol extracts of Inula oculus‐christi L., I. bifrons L., I. aschersoniana Janka var. aschersoniana, I. ensifolia L., I. conyza (Griess .) DC. and I. germanica L. by HPLC analysis. The amount of 5‐CQA varied from 5.48 to 28.44 mg/g DE and the highest content was detected in I. ensifolia. 1,5‐DCQA (4.05–55.25 mg/g DE) was the most abundant dicaffeoyl ester of quinic acid followed by 3,5‐DCQA, 4,5‐DCQA and 3,4‐DCQA. The extract of I. ensifolia showed the highest total phenolic content (119.92±0.95 mg GAE/g DE) and exhibited the strongest DPPH radical scavenging activity (69.41±0.55 %). I. bifrons extract was found to be the most active sample against ABTS.+ (TEAC 0.257±0.012 mg/mL) and the best tyrosinase inhibitor. The studied extracts demonstrated a low inhibitory effect towards acetylcholinesterase and possessed low cytotoxicity in concentration range from 10 to 300 μg/mL toward non‐cancer (MDCK II) and cancer (A 549) cells.  相似文献   
6.
为进一步研究湖北旋覆花花序中的化学成分及抗结核活性。实验采用硅胶柱色谱、反相硅胶柱色谱以及制备型高相液相等方法进行了成分系统研究,肉汤二倍稀释法测定化合物的体外抗结核分支杆菌活性。从其花序中分离得到10个化合物。应用波谱学方法分别鉴定为:7,8-epoxy-9-(isobutyryloxy)thymolisobutyrate(1)、10-(2-methylbutyloxy)-8,9-epoxythymolisobutyrate(2)、stigmasterol(3)、ayapin(4)、ergolide(5)、5,10-epi-2,3-dihydroaromatin(6)、xanthalongin(7)、bigelovin(8)、carpesiolin(9)、aromaticin(10)。化合物1、2、5、6、8~10均为首次从该植物中分离得到。其中化合物5~10均为倍半萜类化合物。化合物5、6、8~10对结核分枝杆菌细胞株具有较好的抑制活性,最小抑制浓度MIC值分别为10.00、30.00、5.00、3.15、3.15μM,9和10的活性效果显著。  相似文献   
7.
Plants have a long history as therapeutics in the treatment of human diseases and have been used as source of medicines for ages. Searching for new biologically active natural products, many plants and herbs are screened for natural products with pharmacological activities. In this field, the genus Inula, which comprises more than 100 species, several of them being used in traditional medicine, is very important, especially due to the finding that several of the isolated pure secondary metabolites proved to possess important biological activities. Inula species have been reported as rich sources of sesquiterpene lactones, including eudesmanes, germacranes, guaianes, and dimeric structures, and since 2006 ca. 400 secondary metabolites, including more than 100 new natural products, some of them with relevant pharmacological activities, have been identified. Herein, we critically compile and update the information regarding the types of secondary metabolites found in the genus Inula and the progress in their isolation.  相似文献   
8.
An Aedes aegypti larval toxicity bioassay was performed on compounds representing many classes of natural compounds including polyacetylenes, phytosterols, flavonoids, sesquiterpenoids, and triterpenoids. Among these compounds, two eudesmanolides, alantolactone, and isoalantolactone showed larvicidal activities against Ae. aegypti and, therefore, were chosen for further structure–activity relationship study. In this study, structural modifications were performed on both alantolactone and isoalantolactone in an effort to understand the functional groups necessary for maintaining and/or increasing its activity, and to possibly lead to more effective insect‐control agents. All parent compounds and synthetic modification reaction products were evaluated for their toxic activities against Ae. aegypti larvae and adults. Structure modifications included epoxidations, reductions, catalytic hydrogenations, and Michael additions to the α,β‐unsaturated lactones. None of the synthetic isomers synthesized and screened against Ae. aegypti larvae were more active than isoalantolactone itself which had an LC50 value of 10.0 μg/ml. This was not the case for analogs of alantolactone for which many of the analogs had larvicidal activities ranging from 12.4 to 69.9 μg/ml. In general, activity trends observed from Ae. aegypti larval screening were not consistent with observations from adulticidal screening. The propylamine Michael addition analog of alantolactone was the most active adulticide synthesized with an LC50 value of 1.07 μg/mosquito. In addition, the crystal structures of both alantolactone and isoalantolactone were determined using CuKα radiation, which allowed their absolute configurations to be determined based on resonant scattering of the light atoms.  相似文献   
9.
显脉旋覆花化学成分的研究(英文)   总被引:1,自引:0,他引:1  
从显脉旋覆花(Inula nervosaWall.)地上部分的75%乙醇提取物中分离到13个化合物,经波谱鉴定为紫菀酮(1),β-谷甾醇(2),α-菠菜甾醇(3),熊果酸(4),胡萝卜苷(5),bigelovin(6),loliolide(7),24S-乙基-5α-胆甾-7,22E-二烯-3α-醇-β-半乳糖苷(8),菠叶素(9),山萘酚(10),α-菠甾醇-3-O-β-D-葡萄糖苷(11),苄醇-β-D-葡萄糖苷(12)和2-苯乙醇-β-D-葡萄糖苷(13)。其中,化合物1~3和6~13为首次从该植物中分离得到。  相似文献   
10.
Norbert Pütz   《Flora》2006,201(4):298-306
The development of a seedling into an adult plant comprises various underground processes. Time-lapse photography (TLP) makes them visible. This is documented for Potentilla inclinata (Rosaceae) and Inula ensifolia (Asteraceae).After germination, P. inclinata develops a taproot system. Contraction phenomena pull the basal part of the shoot at least 10 mm into the soil. Later, several adventitious roots are generated, and thus the root system changes to a fibrous one. This is followed by cloning without separation of the ramets.Seedlings of I. ensifolia develop a weak primary root. At an early stage, adventitious roots are formed at the leaf rosette. This fibrous root system exerts a strong pulling effect on the shoot. After one vegetation period the basis of the rosette is approx. 30 mm under the soil surface. Cloning includes the formation of many new horizontal shoots, which conquer new sites.These two examples show three functional steps common in the developmental progress of subterranean systems: (I) establishment of the seedling, (II) innovation and survival of the young plant, and (III) reiteration (cloning and dispersal). However, to accomplish these basic development steps the diversity of subterranean systems is enhanced by different organographical components.Furthermore, the development of subterranean systems is a dynamic process consisting of two kinetic processes: the vertical movement during seedling establishment, which brings the innovation buds to a safe soil position, and the horizontal movement during dispersal, which conquers new sites.  相似文献   
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