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国家自然科学基金(30900786)

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丹参内生真菌的分离鉴定及抗血小板凝集活性菌株的筛选
2013年
目的:分离鉴定丹参内生真菌,考察其代谢产物粗提物的体外抗二磷酸腺苷(ADP)诱导的血小板凝集活性。方法:对丹参的叶、茎和根中的内生真菌进行分离,采用ADP诱导血小板凝集实验测试丹参内生真菌粗提物的抗血小板凝集活性,并用分子生物学方法对筛选出的活性内生真菌进行鉴定。结果:共分离得到80株内生真菌,发现5株内生真菌的粗提物具有良好的抗血小板凝集的作用。结论:丹参中分离的多种活性内生真菌具有潜在的抗血小板凝集活性,值得进一步研究和开发。
苏春燕韩婷陈军峰李铁军明乾良陈素红秦路平
关键词:丹参内生真菌抗血小板凝集
Increased Vitamin C Content Accompanied by an Enhanced Recycling Pathway Confers Oxidative Stress Tolerance in Arabidopsis被引量:17
2010年
Vitamin C(L-ascorbic acid,AsA) has important antioxidant and metabolic functions in both plants and animals.Once used,ascorbic acid can be regenerated from its oxidized form in a reaction catalyzed by dehydroascorbate reductase(DHAR,EC 1.8.5.1).To analyze the physiological role of DHAR catalyzing the reduction of DHA to ascorbate in environmental stress adaptation,we examined whether increasing the level of AsA through enhanced AsA recycling would limit the deleterious effects of oxidative stress.A chimeric construct consisting of the double CaMV35S promoter fused to the Myc-dhar gene was introduced into Arabidopsis thaliana.Transgenic plants were biochemically characterized and tested for responses to oxidative stress.Western blot indicated that the dhar-transgene was successfully expressed.In homozygous T4 transgenic seedlings,DHAR overexpression was increased up to 1.5 to 5.4 fold,which enhanced foliar ascorbic acid levels 2-to 4.25-fold and ratio of AsA/DHA about 3-to 16-fold relative to wild type.In addition,the level of glutathione,the reductant used by DHAR,also increased as did its redox state.When whole plants were treated with high light and high temperature stress or in vitro leaf discs were subjected to 10 μM paraquat,transgenic plants showed a larger AsA pool size,lower membrane damage,and a higher level of chlorophyll compared with controls.These data suggested that increasing the plant vitamin C content through enhanced ascorbate recycling could limit the deleterious effects of environmental oxidative stress.
zinan wangYing XiaoWansheng ChenKexuan TangLei Zhang
关键词:氧化胁迫拟南芥耐性
A Novel Cinnamyl Alcohol Dehydrogenase Gene from Isatis Indigotica Fort.
<正>A novel Cinnamyl alcohol dehydrogenase gene,designated as liCAD(GenBank Accession No.GU937874)was cloned by...
Xiao YingYing-Bo YangWan-Sheng ChenZheng-Tao Wang
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