采用液液萃取法和硅胶柱层析法对抑藻物质EPME(methanol extracts of Enteromorpha prolifera)进行分离,通过监测米氏凯伦藻、中肋骨条藻和塔玛亚历山大藻的细胞数量,观察藻细胞形态,分析分离组分的抑藻活性。结果表明,EPME经液液萃取...采用液液萃取法和硅胶柱层析法对抑藻物质EPME(methanol extracts of Enteromorpha prolifera)进行分离,通过监测米氏凯伦藻、中肋骨条藻和塔玛亚历山大藻的细胞数量,观察藻细胞形态,分析分离组分的抑藻活性。结果表明,EPME经液液萃取法分离,获得4个组分Ⅰ、Ⅱ、Ⅲ和Ⅳ,得率分别为29.0%、19.0%、12.7%和5.45%。其中,仅组分Ⅱ具有明显的抑藻活性。当浓度为1.0 g/L时,组分Ⅱ对米氏凯伦藻、中肋骨条藻和塔玛亚历山大藻的生长抑制率分别为43.4%、44.9%和54.3%。组分Ⅱ经硅胶柱层析法分离,获得5种组分,组分Ⅱ-A、Ⅱ-B、Ⅱ-C、Ⅱ-D和Ⅱ-E。其中,组分Ⅱ-B和组分Ⅱ-C具有明显抑藻活性,并致使3种赤潮微藻的藻细胞出现空洞、细胞破碎和色素减褪等。进一步采用波长扫描和化合物检测方法,分析出此2种组分中含有内酯、香豆素类化合物,并确定了此2种组分硅胶GF254薄层层析分离的适宜展开剂,为后续纯化奠定了良好的实验基础。展开更多
[Objective] The aim was to study the antialgal activities of allelochemical extracts from three terrestrial plant species.[Method] The allelochemicals were extracted from the leaves of Magnolia grandiflora,Sophora jap...[Objective] The aim was to study the antialgal activities of allelochemical extracts from three terrestrial plant species.[Method] The allelochemicals were extracted from the leaves of Magnolia grandiflora,Sophora japonica f.pendula and Buxus sinica (Rehd.et Wils.) Cheng by alcohol extraction,n-hexane,ethyl acetate and n-utanol phase.Furthermore antialgal activities of all components were determined.[Result] The active substances of M.grandiflora mainly existed in n-hexane and n-butanol phases.The active substances of S.japonica mainly existed in n-hexane phase,while the active substances of B.sinica mainly existed in ethyl acetate and aqueous phase.All the active substances showed significant antialgal activity (50% inhibition) after culture for 1 d except aqueous phase of B.sinica.In addition,inhibition rates of the tested phases increased with the increasing of culture duration and testing concentrations.The inhibition rates were over 90% against the growth of M.aeruginosa after culture for 7 d.The n-hexane and n-butanol phases of M.grandiflora exhibited the best antialgal activity,over 96% inhibition rate at the concentration of 25 μg/ml,which was significantly higher than those of the other components,furthermore it could cause shrinkage and obvious surface inanition of Microcystis aeruginosa.[Conclusion] The n-hexane and n-butanol phases of M.grandiflora have the best inhibition activities on the growth of Microcystis aeruginosa,so they are worthy of further study.展开更多
基金Supported by National Natural Science Foundation of China(30671240, 30871588)~~
文摘[Objective] The aim was to study the antialgal activities of allelochemical extracts from three terrestrial plant species.[Method] The allelochemicals were extracted from the leaves of Magnolia grandiflora,Sophora japonica f.pendula and Buxus sinica (Rehd.et Wils.) Cheng by alcohol extraction,n-hexane,ethyl acetate and n-utanol phase.Furthermore antialgal activities of all components were determined.[Result] The active substances of M.grandiflora mainly existed in n-hexane and n-butanol phases.The active substances of S.japonica mainly existed in n-hexane phase,while the active substances of B.sinica mainly existed in ethyl acetate and aqueous phase.All the active substances showed significant antialgal activity (50% inhibition) after culture for 1 d except aqueous phase of B.sinica.In addition,inhibition rates of the tested phases increased with the increasing of culture duration and testing concentrations.The inhibition rates were over 90% against the growth of M.aeruginosa after culture for 7 d.The n-hexane and n-butanol phases of M.grandiflora exhibited the best antialgal activity,over 96% inhibition rate at the concentration of 25 μg/ml,which was significantly higher than those of the other components,furthermore it could cause shrinkage and obvious surface inanition of Microcystis aeruginosa.[Conclusion] The n-hexane and n-butanol phases of M.grandiflora have the best inhibition activities on the growth of Microcystis aeruginosa,so they are worthy of further study.