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绞股蓝总皂苷保肝作用实验研究 被引量:23
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作者 陈几香 张建国 +1 位作者 张莉 刘京渤 《中国药业》 CAS 2007年第13期7-8,共2页
目的对绞股蓝总皂苷保肝作用进行研究。方法采用四氯化碳致急性肝损伤及绞股蓝总皂苷对肝细胞再生作用模型,检测降酶率、再生度等指标。结果绞股蓝总皂苷对大白鼠急性肝损伤具有降酶作用,能促进肝细胞再生。结论绞股蓝总皂苷对四氯化碳... 目的对绞股蓝总皂苷保肝作用进行研究。方法采用四氯化碳致急性肝损伤及绞股蓝总皂苷对肝细胞再生作用模型,检测降酶率、再生度等指标。结果绞股蓝总皂苷对大白鼠急性肝损伤具有降酶作用,能促进肝细胞再生。结论绞股蓝总皂苷对四氯化碳引起的大白鼠急性肝损伤具有明显的改善作用。 展开更多
关键词 绞股蓝总皂苷 肝损伤 降酶率 肝再生
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Cumulative cellulolytic enzyme activities and initial litter quality in prediction of cellulose degradation in an alpine meadow of the eastern Tibetan Plateau 被引量:1
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作者 Yamei Chen Yang Liu +3 位作者 Jian Zhang Wanqin Yang Changchun Deng Runlian He 《Journal of Plant Ecology》 SCIE CSCD 2020年第1期51-58,共8页
Aims Plant litter decomposition is a key ecosystem process that determines carbon and nutrient cycling in terrestrial ecosystems.As a main component of litter,cellulose is a vital energy source for the microbes associ... Aims Plant litter decomposition is a key ecosystem process that determines carbon and nutrient cycling in terrestrial ecosystems.As a main component of litter,cellulose is a vital energy source for the microbes associated with litter decomposition.The important role of cellulolytic enzymes in litter cellulose degradation is well understood,but seasonal patterns of cellulose degradation and whether cumulative enzyme activities and litter quality forecast cellulose degradation in an alpine meadow remain elusive,which limits our understanding of cellulose degradation in herbaceous plant litter.Methods A two-year field litterbag experiment involving three dominant species(Ajuga ovalifolia,Festuca wallichanica,and Pedicularis roylei)was conducted in an alpine meadow of the eastern Tibetan Plateau to explore the seasonal patterns of cellulose degradation and how cumulative cellulolytic enzyme activities and initial litter quality impact cellulose degradation.Important findings Our study demonstrates that cellulose degraded rapidly and exceeded 50%during the first year,which mainly occurred in the first growing season(31.9%–43.3%).At two years of decomposition,cellulose degradation was driven by cumulative endoglucanase(R^(2)=0.70),cumulative cellobiohydrolase(R^(2)=0.59)and cumulative 1,4-β-glucosidase(R^(2)=0.57).In addition,the concentrations of cellulose,dissolved organic carbon,total phenol,lignin and lignin/N accounted for 52%–78%of the variation in cellulose degradation during the two years of decomposition.The best model for predicting cellulose degradation was the initial cellulose concentration(R^(2)=0.78).The enzymatic efficiencies and the allocation of cellulolytic enzyme activities were different among species.The cellulolytic enzyme efficiencies were higher in the litter of F.wallichanica with relatively lower quality.For the complete cellulose degradation of the leaf litter,A.ovalifolia and F.wallichanica required 4-fold and 6.7-fold more endoglucanase activity,3-fold and 4.5-fold more cellobiohydrolase activity and 1.2-fold and 1.4-fold more 1,4-β-glucosidase activity,respectively,than those required by P.roylei.Our results demonstrated that although microbial activity and litter quality both have significant impacts on cellulose degradation in an alpine meadow,using cellulose concentration to predict cellulose degradation is a good way to simplify the model of cellulose degradation and C cycling during litter decomposition. 展开更多
关键词 cumulative cellulolytic enzyme cellulose degradation enzyme efficiency initial litter quality
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