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1.
Selecting native species for restoration is often done without proper ecological background, particularly with regard to how native and invasive species interact. Here, we provide insights suggesting that such information may greatly enhance restoration success. The performance of the native vine, Pueraria lobata, and that of the invasive bitter vine, Mikania micrantha, were investigated in South China to test how priority effects (timing and rate of germination and seedling growth) and competition (phytochemical effects and competitive ability) impact invasive plant performance. We found that, in the absence of competition, the germination rate of M. micrantha, but not of P. lobata, was significantly affected by light availability. P. lobata seedlings also performed better than those of M. micrantha during early growth phases. Under competition, negative phytochemical effects of P. lobata on M. micrantha were strong and we found M. micrantha to have lower performance when grown with P. lobata compared to when grown by itself. Relative interaction indexes indicated that, under interspecific competition, P. lobata negatively affected (i.e., inhibited) M. micrantha, whereas M. micrantha positively affected (i.e., facilitated) P. lobata. Higher photosynthetic efficiency and soil nutrient utilization put P. lobata at a further advantage over M. micrantha. Field trails corroborated these experimental findings, showing little recruitment of M. micrantha in previously invaded and cleared field plots that were sown with P. lobata. Thus, P. lobata is a promising candidate for ecological restoration and for reducing impacts of M. micrantha in China. This research illustrates that careful species selection may improve restoration outcomes, a finding that may also apply to other invaded ecosystems and species.  相似文献   
2.
野葛花醇提物中异黄酮含量及其抗氧化活性测定   总被引:2,自引:1,他引:1  
以葛花苷为标准品,对野葛花醇提物的氯仿、乙酸乙酯、正丁醇萃取物及水溶物4部分中的异黄酮含量进行测定,并采用DPPH·法对各萃取物进行自由基清除实验.结果显示,(1)氯仿、乙酸乙酯、正丁醇萃取物及水溶物4部分的异黄酮含量分别为35.27%、53.42%、52.13%和2.34%.(2)抗氧化实验显示, 4 部分清除DPPH·的IC50值分别为252、49、197和344 μg/mL.(3)相关性分析表明,野葛花醇提物各萃取部分的抗氧化活性主要来自于其中含有的异黄酮类化合物.研究表明野葛花醇提物的乙酸乙酯和正丁醇萃取部分异黄酮含量较高;氯仿、乙酸乙酯、正丁醇萃取物及水溶物4部分对DPPH自由基均有一定的清除作用,其中以乙酸乙酯萃取物的效果最佳;表明异黄酮是一种天然的抗氧化剂,具有较强的抗氧化作用.  相似文献   
3.
采用超声法从野葛根中提取葛根异黄酮,再将提取物在盐酸水溶液中超声水解结合有机溶剂萃取法从野葛根中分离纯化葛根素和大豆苷元。葛根素收得率为1.2%,纯度为97.8%;大豆苷元收得率为0.5%,纯度为98.2%。超声法从野葛根中提取分离葛根异黄酮活性成分葛根素和大豆苷元具有省时、节能、提取率和产品纯度高的优点。  相似文献   
4.
一种简便方法从野葛根中提取纯化葛根异黄酮   总被引:6,自引:0,他引:6  
采用超声法70%乙醇为溶剂从野葛根中提取葛根异黄酮,将其以水为溶剂结合盐析法进行纯化,并且利用分光光度法和HPTLC法分别对超声提取物和纯化的葛根异黄酮产品中总黄酮和葛根素的含量进行了测定.结果表明以70%乙醇为溶剂超声萃取30 min提取葛根异黄酮和纯化葛根异黄酮产品的产率分别为17.8%和4.9%,异黄酮含量分别为42.55%和91.02%,葛根素含量分别为19.54%和67.15%.该方法从野葛根中提取纯化异黄酮具有省时、节约能源、操作方法简便和总异黄酮产品纯度高的优点.  相似文献   
5.
通过对我国有巨大生产量和应用潜力的油松、白皮松和青木千花粉的 1 8种氨基酸、蛋白质、维生素A、维生素E、维生素C、磷脂、葡萄糖氧化酶等重要营养成分含量的测定 ,发现这三种花粉的以上成分含量都很高。其中青木千花粉的维生素A含量达 70 641 .6IU/ 1 0 0g ,氨基酸总量达 2 4 .443mg/ 1 0 0mg。从营养的角度来看 ,青木千花粉是较优秀的花粉。  相似文献   
6.
三裂叶野葛毛状根的诱导及其固体培养和液体培养   总被引:6,自引:1,他引:5  
发根农杆菌(Agrobacterium rhizogenes)ATCC15834感染三裂叶野葛(Pueraria phaseoloides)叶片外植体20 d后产生毛状根,毛状根可直接从叶片外植体叶脉处或从叶脉处产生的愈伤组织上产生。感染35d后,约85%的叶片外植体产生毛状根。毛状根能在无外源生长调节剂的 MS固体和液体培养基上自主生长。PCR扩增结果表明,发根农杆菌Ri质粒的rolBrolC基因已在三裂叶野葛毛状根基因组中整合并得到表达。与固体培养的毛状根相比,在液体培养基中培养的毛状根不仅生长迅速,也不会形成愈伤组织。在无外源生长调节剂的液体MS培养基中培养15d的三裂叶野葛毛状根的鲜重、干重、可溶性总糖含量及细胞内活性氧(ROS)含量分别为固体培养毛状根的1.59倍、1.18倍、5.25倍和1.16倍。  相似文献   
7.
8.
Pueraria lobata (kudzu), a clonal, leguminous vine, is invading the southeastern United States at a rate of 50 000 ha per year. Genetic variability and clonal diversity were measured in 20 southeastern U.S. populations using 14 allozyme loci. Within its U.S. range, 92.9% of the loci were polymorphic and overall genetic diversity was 0.290. Such high levels of genetic diversity are consistent with its history of multiple introductions over an extended period of time. The average proportions of polymorphic loci and genetic diversity within populations were 55.7% (range = 28.6–85.7%) and 0.213 (range = 0.114–0.317), respectively. The proportion of total genetic diversity found among populations was similar to species with equivalent life history characters (GST = 0.199). No regional patterns of variation were seen. The number of putative genotypes in each population ranged from 2 to 26. Mean genotypic diversity was 0.694, ranging from 0.223 to 0.955. Such high levels of genotypic diversity indicate that local sites are often colonized by several propagules (most likely seeds) and/or that sexual reproduction occurs within populations after establishment. An excess of heterozygosity was observed in populations with few unique genets, implying that selection for highly heterozygous individuals may occur in populations of P. lobata.  相似文献   
9.
鄂西产三种野生葛总黄酮含量的紫外分光光度法测定   总被引:6,自引:0,他引:6  
鄂西产三种野生葛总黄酮含量的紫外分光光度法测定李石生刘欣邓京振赵守训(中国药科大学天然药物化学教研室,南京210038)Determinationoftotalflavonoidin3wildspeciesofPuerariafromWestHub...  相似文献   
10.
Nitrogen-15 foliar applications for the production of field-labeled plant tissues may achieve more effective labeling of plant shoot and root tissues and minimize directly labeling the soil N fraction as occurs when15 N is soil applied. Consequently, foliar-labeled plant tissues should be better suited for subsequent 15N mineralization studies. A field experiment was conducted to determine the effectiveness of 15N-labeling and the accumulation of 15N in various plant parts of two tropical legumes. Desmodium ovalifolium Guillemin and Perrottet and Pueraria phaseoloides (Roxb.) Benth., grown in 0.5 m2 microplots, were labeled with foliar-applied urea containing 99 atom% 15N. Plants in each microplot received a total of 0.1698 g 15N that was applied all at once or split equally into two, three or four applications. Legume shoots and roots and soil were destructively harvested and analyzed for total 15N content. Averaged over both legumes and foliar application rates, total plant (shoots, flowers, leaf litter, and roots) recovery was approximately 79% of the 15N applied. The soil contained 3% of the 15N applied, of which 2.5 and 0.5% were in the inorganic and organic fractions, respectively. Nitrogen-15 recovery in shoots (76%) was sixty-five fold greater than in roots (1%) and about nineteen fold greater than the sum of roots and soil (4.1%), a much greater percent recovery than observed in other foliar labeling studies. Averaged over all four foliar split-application rates, 15N recovery by Desmodium shoots was greater than Pueraria. Results demonstrate that 15N foliar application to legumes is an effective method for labeling, resulting in atom% excess 15N levels and 15N recoveries comparable to those reported with the more traditional soil-labeling approach. Another advantage of this method is a nondestructive, in situ labeling method that permits separation of shoot and root residual N contribution to subsequent crops in N tracer studies.  相似文献   
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