目的:探讨猕猴桃皮多酚(kiwifruit peel polyphenols,KPP)对脂多糖(lipopolysaccharide,LPS)应激Caco-2细胞抗氧化能力的影响。方法:采用CCK-8法测定不同处理组Caco-2的细胞活力,荧光分光光度计测定活性氧和线粒体膜电位,分光光度计测...目的:探讨猕猴桃皮多酚(kiwifruit peel polyphenols,KPP)对脂多糖(lipopolysaccharide,LPS)应激Caco-2细胞抗氧化能力的影响。方法:采用CCK-8法测定不同处理组Caco-2的细胞活力,荧光分光光度计测定活性氧和线粒体膜电位,分光光度计测定超氧化物歧化酶(superoxide dismutase,SOD)活力和谷胱甘肽(glutathione,GSH)、丙二醛(malonaldehyde,MDA)含量,实时荧光定量聚合酶链式反应测定核红细胞2相关因子2(nuclear factor erythroid 2-related factor 2,Nrf2)、Kelch样ECH相关蛋白1(Kelch-like ECH-associated protein 1,Keap1)、NAD(P)H:醌氧化还原酶1(NAD(P)H:quinone oxidoreductase 1,NQO1)、超氧化物歧化酶1(superoxide dismutase 1,SOD 1)、SOD 2基因的表达;蛋白印迹测定N r f 2、Ke a p 1及N Q O 1蛋白表达水平。结果:与L P S组相比,经50μg/mL KPP干预后细胞活力显著升高(P<0.05);活性氧水平和MDA含量分别显著下降至1.82±0.28、5.08 nmol/mg(P<0.05),线粒体膜电位显著升高至1.84±0.10(P<0.05),SOD活力和GSH含量分别显著升高至52.57 U/mg和69.46μmol/g(P<0.05);同时KPP干预能显著提高Nrf2、NQO1基因和蛋白表达(P<0.05),显著降低Keap1基因和蛋白表达(P<0.05)。结论:KPP能够通过Keap1/Nrf2/NQO1信号通路提高Caco-2的抗氧化水平,缓解LPS应激造成的细胞损伤。展开更多
The Loess Plateau in China is one of the most eroded areas in the world. Accordingly, vegetation restoration has been implemented in this area over the past two decades to remedy the soil degradation problem. Understa...The Loess Plateau in China is one of the most eroded areas in the world. Accordingly, vegetation restoration has been implemented in this area over the past two decades to remedy the soil degradation problem. Understanding the microbial community structure is essential for the sustainability of ecosystems and for the reclamation of degraded arable land. This study aimed to determine the effect of different vegetation types on microbial processes and community structure in rhizosphere soils in the Loess Plateau. The six vegetation types were as follows:two natural grassland (Artemisia capillaries and Heteropappus altaicus), two artificial grassland (Astragalus adsurgens and Panicum virgatum), and two artificial shrubland (Caragana korshinskii and Hippophae rhamnoides) species. The microbial community structure and functional diversity were examined by analyzing the phospholipid fatty acids (PLFAs) and community-level physiological profiles. The results showed that rhizosphere soil sampled from the H. altaicus and A. capillaries plots had the highest values of microbial biomass C, average well color development of carbon resources, Gram-negative (G-) bacterial PLFA, bacterial PLFA, total PLFA, Shannon richness, and Shannon evenness, as well as the lowest metabolic quotient. Soil sampled from the H. rhamnoides plots had the highest metabolic quotient and Gram-positive (G+) bacterial PLFA, and soil sampled from the A. adsurgens and A. capillaries plots had the highest fungal PLFA and fungal:bacterial PLFA ratio. Correlation analysis indicated a signiifcant positive relationship among the microbial biomass C, G- bacterial PLFA, bacterial PLFA, and total PLFA. In conclusion, plant species under arid climatic conditions signiifcantly affected the microbial community structure in rhizosphere soil. Among the studied plants, natural grassland species generated the most favorable microbial conditions.展开更多
文摘目的:探讨猕猴桃皮多酚(kiwifruit peel polyphenols,KPP)对脂多糖(lipopolysaccharide,LPS)应激Caco-2细胞抗氧化能力的影响。方法:采用CCK-8法测定不同处理组Caco-2的细胞活力,荧光分光光度计测定活性氧和线粒体膜电位,分光光度计测定超氧化物歧化酶(superoxide dismutase,SOD)活力和谷胱甘肽(glutathione,GSH)、丙二醛(malonaldehyde,MDA)含量,实时荧光定量聚合酶链式反应测定核红细胞2相关因子2(nuclear factor erythroid 2-related factor 2,Nrf2)、Kelch样ECH相关蛋白1(Kelch-like ECH-associated protein 1,Keap1)、NAD(P)H:醌氧化还原酶1(NAD(P)H:quinone oxidoreductase 1,NQO1)、超氧化物歧化酶1(superoxide dismutase 1,SOD 1)、SOD 2基因的表达;蛋白印迹测定N r f 2、Ke a p 1及N Q O 1蛋白表达水平。结果:与L P S组相比,经50μg/mL KPP干预后细胞活力显著升高(P<0.05);活性氧水平和MDA含量分别显著下降至1.82±0.28、5.08 nmol/mg(P<0.05),线粒体膜电位显著升高至1.84±0.10(P<0.05),SOD活力和GSH含量分别显著升高至52.57 U/mg和69.46μmol/g(P<0.05);同时KPP干预能显著提高Nrf2、NQO1基因和蛋白表达(P<0.05),显著降低Keap1基因和蛋白表达(P<0.05)。结论:KPP能够通过Keap1/Nrf2/NQO1信号通路提高Caco-2的抗氧化水平,缓解LPS应激造成的细胞损伤。
基金supported by the Strategic Technology Project of Chinese Academy of Sciences(XDA05060300)the Science and Technology Research and Development Program of Shaanxi ProvinceChina(2011KJXX63)
文摘The Loess Plateau in China is one of the most eroded areas in the world. Accordingly, vegetation restoration has been implemented in this area over the past two decades to remedy the soil degradation problem. Understanding the microbial community structure is essential for the sustainability of ecosystems and for the reclamation of degraded arable land. This study aimed to determine the effect of different vegetation types on microbial processes and community structure in rhizosphere soils in the Loess Plateau. The six vegetation types were as follows:two natural grassland (Artemisia capillaries and Heteropappus altaicus), two artificial grassland (Astragalus adsurgens and Panicum virgatum), and two artificial shrubland (Caragana korshinskii and Hippophae rhamnoides) species. The microbial community structure and functional diversity were examined by analyzing the phospholipid fatty acids (PLFAs) and community-level physiological profiles. The results showed that rhizosphere soil sampled from the H. altaicus and A. capillaries plots had the highest values of microbial biomass C, average well color development of carbon resources, Gram-negative (G-) bacterial PLFA, bacterial PLFA, total PLFA, Shannon richness, and Shannon evenness, as well as the lowest metabolic quotient. Soil sampled from the H. rhamnoides plots had the highest metabolic quotient and Gram-positive (G+) bacterial PLFA, and soil sampled from the A. adsurgens and A. capillaries plots had the highest fungal PLFA and fungal:bacterial PLFA ratio. Correlation analysis indicated a signiifcant positive relationship among the microbial biomass C, G- bacterial PLFA, bacterial PLFA, and total PLFA. In conclusion, plant species under arid climatic conditions signiifcantly affected the microbial community structure in rhizosphere soil. Among the studied plants, natural grassland species generated the most favorable microbial conditions.