Analysis on Genetic Diversity of Wild Populations of Licorice ( Glycyrrhiza uralensis Fisch.) with AFLP Markers 甘草野生种群遗传多样性的AFLP分析
The Influence of the Exogenous Calcium on the Accumulation of Glycyrrhizin in the Cultivated Glycyrrhiza Uralensis Fisch Eurasian herb cultivated for its dark-centered deep red flowers. 外源钙对人工培育甘草药材中甘草酸积累的影响因其黑心的暗红色花朵而培育的欧亚草本植物。
The Comparison of Contents of Effective Components and Yields of Glycyrrhiza uralensis Fisch. from Different Origin 不同来源乌拉尔甘草产量和有效成分含量比较
Objective: Study on the influence of the exogenous calcium on the accumulation of glycyrrhizin in the cultivated Glycyrrhiza uralensis Fisch. 目的:研究外源钙施肥水平对甘草酸在甘草植物体内积累的影响。
Results: daphne genkwa had effect on hepatic function and indexes of myocardial enzymes in rats, but Daphne genkwa combined with Glycyrrhiza uralensis Fisch had greater effect on the above indexes and a certain effect on the tissue forms of heart, liver and kidney of rats. 结果单纯芫花对动物肝功能及心肌酶谱等指标有一定影响,但配伍甘草后对以上指标的影响有加重的趋势,对大鼠心、肝、肾组织形态有一定影响。
Protective Effect of Extraction of Glycyrrhiza Uralensis Fisch. on CCl4 Induced Acute Hepatic Injury in Mice 甘草提取物对小鼠四氯化碳急性肝损伤的影响
The cultivation of Glycyrrhiza uralensis Fisch have been operated with mechanization at Hexi area of Gansu. 甘肃人工栽培的甘草主要分布在河西地区,目前多应用机械化栽培。
α-Glucosidase Inhibitors from Glycyrrhiza uralensis Fisch. 甘草中α-葡萄糖苷酶抑制剂的筛选(英文)
In this article, we extract the antioxidants from the Glycyrrhiza uralensis Fisch, kudzu root and Sedum sarmentosum Bunge by water-cooking method, then the substances were extracted with petroleum ether and ethyl acetate. 本文采用水煮法提取甘草、葛根、垂盆草中的抗氧化物质,再利用液-液萃取的方法,分别用石油醚和乙酸乙酯对提取物加以分离提纯。
Research on Seed Germination Testing of Glycyrrhiza uralensis Fisch. 乌拉尔甘草种子发芽检测方法研究(简报)
Glycyrrhiza uralensis Fisch has high value of being researched and developed, because it is not only the important drought-resistant plant in desert of northwest China but also the medicinal material with high demanding. 乌拉尔甘草是构成我国西北荒漠植被的重要植物,同时又是接近濒危的大宗地道药材,具备很高的研究和开发价值。
The effect of N+ ion implantation on the antioxidative system ( SOD 、 CAT) and MDA content of liquorice seedlings ( Glycyrrhiza uralensis Fisch) under PEG-induced drought stress was investigated in this study. 以低能氮离子束为诱变源,对甘草种进行注入处理后,以萌发的幼苗为材料对其在干旱胁迫条件下保护酶活性及MDA含量变化进行研究。
Conclusion Quality of GAP glycyrrhiza uralensis Fisch. can be controlled effectively by TLC fingerprint. 结论采用TLC指纹图谱可有效控制GAP基地甘草的质量。
Glycyrrhiza uralensis Fisch., with high value of medicine and high ecological protection function, is belongs to the second degree protective plants in our country. In order to breed and cultivate new species of G. 甘草(GlycyrrhizauralensisFisch.)为国家二类保护植物,具有很高的药用价值和重要的生态保护功能。
Objective: To study the dynamic accumulation of glycyrrhizic acid ( GA) in semi wild Glycyrrhiza uralensis Fisch. 目的:研究甘草中甘草酸的积累动态,确定内蒙古梁外地区育苗移栽的半野生甘草最佳采收期。
Visible, Ca2+ participated in the UV-B radiation signal transduction in the series process during the Glycyrrhiza uralensis Fisch. leaf palisade tissue cells, and even participate in the induction of palisade tissue signal transduction process of programmed cell death. 可见,Ca2+参与了U-V-B辐射期间乌拉尔甘草叶片栅栏组织细胞中信号传导的过程,也可能参与了诱导栅栏组织细胞程序性死亡的信号传导过程。
Establishing good-breeding for licorice ( Glycyrrhiza uralensis Fisch.) is an important way to improve and control yield and quality. 对甘草进行优良品种选育是提高和稳定甘草药材产量和品质的重要途径。
This method has also been successfully applied to determine the optimum time of the steeping process and decocting process of Glycyrrhiza uralensis Fisch root. 2. 并且将该方法用于离线测定甘草根浸泡和煎煮过程中不同时间时甘草次酸和甘草酸的含量变化。
The results show that: The Glycyrrhiza uralensis Fisch. grown in three different habitats, their leaves were bright green and structure is complete. 结果表明:1.在大田、日光温室及室内三种生长环境下,乌拉尔甘草叶片均呈正常的鲜绿色,能够正常生长,叶肉组织显微和超微结构完整。