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桑白皮根中的活性提取部位可抑制肝素酶活性和癌转移 被引量:2
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《国外医药(植物药分册)》 2004年第6期268-268,共1页
以桑白皮根分离所得的一个活性部位作为药物的有效成分,对癌细胞侵入内皮、癌转移过程中小血管形成所必需的肝素酶的活性和癌转移活性均有抑制作用。将桑白皮根粉碎后用水醇溶液提取,提取物混悬于蒸馏水中,用乙酸乙酯提取,硅胶吸附... 以桑白皮根分离所得的一个活性部位作为药物的有效成分,对癌细胞侵入内皮、癌转移过程中小血管形成所必需的肝素酶的活性和癌转移活性均有抑制作用。将桑白皮根粉碎后用水醇溶液提取,提取物混悬于蒸馏水中,用乙酸乙酯提取,硅胶吸附,氯仿或甲醇洗脱分离活性部位, 展开更多
关键词 桑白皮根 活性提取部位 抑制作用 肝素酶 活性作用 肿瘤 癌转移
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Nutrient uptake by mulberry and Chinese prickly ash associated with arbuscular mycorrhizal fungi
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作者 Hechun Piao Siliang Li Shijie Wang 《Acta Geochimica》 EI CAS CSCD 2016年第2期120-129,共10页
Understanding how nutrient absorption processes in plants are related to arbuscular mycorrhizal(AM)association is critical for predicting the effects of AM symbiosis on elemental cycling for plants. Both mulberry(Moru... Understanding how nutrient absorption processes in plants are related to arbuscular mycorrhizal(AM)association is critical for predicting the effects of AM symbiosis on elemental cycling for plants. Both mulberry(Morus alba) and Chinese prickly ash(Zanthoxylum bungeanum) are AM-associated plants, widely distributed in southwest China. It was hypothesized that if the nutrient absorption processes were efficiently associated with AM symbiosis in both mulberry and Chinese prickly ash, foliar nutrient concentrations—especially calcium(Ca)—would be primarily determined by the soil conditions in different regions. To investigate this, AM colonization levels of soils, nutrient levels in soils and leaves, and δ^(13)C values of leaves were analyzed for mulberry and Chinese prickly ash.In this study, spore density in soils with low p H was higher than that in soils with high p H. The average concentrations of sugar delivered to roots in both mulberry and Chinese prickly ash in soil with relatively low p H and soil extractable cations were higher than those in other areas.The values of foliar δ^(13)C in both mulberry and Chinese prickly ash in low soil-pH and soil extractable cations were lower than those in contrast areas, indicating that water availability was impacted by soil characteristics. The efficiency in AM-mediated processes might play an important role in translocation between soil nutrients and plant tissue.The results suggest uptake and translocation of nutrients,especially Ca, in AM-associated plants may be affected by an efficiency of AM-mediated processes. Since Sr does not appear to be similarly affected, expressing Ca and other nutrient concentrations relative to Sr could be used to evaluate whether the uptake and translocation of Ca and other nutrients are affected by AM-mediated processes. 展开更多
关键词 Arbuscular mycorrhizal fungi - Elementalratio Carbon isotopes MULBERRY Chinese prickly ash
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