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| 1 | Effect of cadmium on photosynthetic pigments,lipid peroxidation,antioxidants,and artemisinin in hydroponically grown Artemisia annua显示文摘The effects of different cadmium(Cd) concentrations(0,20,60,and 100 μmol/L) on hydroponically grown Artemisia annua L.were investigated.Cd treatments applied for 0,4,12,24,72,144,216,and 336 hr were assessed by measuring the changes in photosynthetic pigments,electrolyte leakage,malondialdehyde(MDA) and antioxidants(ascorbic acid and glutathione),while the artemisinin content was tested after 0,12,144,216,and 336 hr.A significant decrease was observed in photosynthetic pigment levels over time with increasing Cd concentration.Chlorophyll b levels were more affected by Cd than were chlorophyll a or carotenoid levels.The cell membrane was sensitive to Cd stress,as MDA content in all treatment groups showed insignificant differences from the control group,except at 12 hr treatment time.Ascorbic acid(AsA) content changed slightly over time,while glutathione(GSH) content took less time to reach a maximum as Cd concentration increased.Cd was found to promote synthesis and accumulation of artemisinin,especially at concentrations of 20 and 100 μmol/L.In conclusion,Cd stress can damage to photosynthetic pigments,and vigorously growing A.annua showed a strong tolerance for Cd stress.Appropriate amounts of added Cd aided synthesis and accumulation of artemisinin. | Xuan Li Manxi Zhao Lanping Guo Luqi Huang | 2012 | Journal of Environmental Sciences2012,24,8: | 9 |
| 2 | Effects of ecological factors on secondary metabolites and inorganic elements of Scutellaria baicalensis and analysis of geoherblism显示文摘This study analyzed the effects of ecological factors on secondary metabolites of Scutellaria baicalensis using two sources:92individual roots of S.baicalensis from all over China,and secondary metabolites,medicinal materials and inorganic element contents obtained from the testing of 92 S.baicalensis rhizosphere soil samples.The study used environmental data from the Genuine Medicinal Material Spatial Analysis Database.Most of the chemical constituents of S.baicalensis were negatively correlated to latitude and positively correlated to temperature;generally,the contents of 21 chemical constituents were higher at low latitudes than that at high latitudes.By gradual regression analysis,it was found that the content of baicalin in S.baicalensis was negatively correlated to latitude and generally the content of inorganic elements in soil was excessively high(excluding Mg and Ca),which has a negative effect on the accumulation of chemical constituents in S.baicalensis.Based on the cluster analysis of 21 constituents,S.baicalensis from different places of origin was divided into two groups,and S.baicalensis was not genuine only in a specific small region.Within the zone from Chifeng,Inner Mongolia to Taibai,Shaanxi is suitable for accumulation of secondary metabolites of S.baicalensis and such a zone represents a suitable distribution and potential genuine producing area. | GUO LanPing WANG Sheng ZHANG Ji YANG Guang ZHAO ManXi MA WeiFeng ZHANG XiaoBo LI Xuan HAN BangXing CHEN NaiFu HUANG LuQi | 2013 | Science China(Life Sciences)2013,56,11: | 7 |
| 3 | Electrospun advanced nanomaterials for in situ transmission electron microscopy:Progress and perspectives显示文摘Electrospun nanofibers(NFs)have shown excellent properties including high porosity,abundant active sites,controllable diameter,uniform and designable structure,high mechanical strength,and superior resistance to external destruction,which are ideal nanoreactors for in situ characterizations.Among various techniques,in situ transmission electron microscopy(TEM)has enabled operando observation at the atomic level due to its high temporal and spatial resolution combined with excellent sensitivity,which is of great importance for rational materials design and performance improvement.In this review,the basic knowledge of in situ TEM techniques and the advantages of electrospun nanoreactors for in situ TEM characterization are first introduced.The recent development in electrospun nanoreactors for studying the physical properties,structural evolution,phase transition,and formation mechanisms of materials using in situ TEM is then summarized.The electrochemical behaviors of carbon nanofibers(CNFs),metal/metal oxide NFs,and solidelectrolyte interphase for different rechargeable batteries are highlighted.Finally,challenges faced by electrospun nanoreactors for in situ TEM characterization are discussed and potential solutions are proposed to advance this field. | Jingyue Zhao Zulin Li Shiwen Lv Manxi Wang Chuanping Li Xuan Li Hongyang Chen Manxian Li Xiaochuan Chen Feifeng Wang Weiwei Fan Junxiong Wu Ziqiang Wang Xiaoyan Li Yuming Chen | 2023 | InfoMat2023,5,12: | 0 |