The sap flow velocity and the micro-meteorological environment of Sophora japonica f.pendula were measured from Aug.to Oct.2006 with sap flow gauge based on heat balance principle and auto-weather station in Ludong Un...The sap flow velocity and the micro-meteorological environment of Sophora japonica f.pendula were measured from Aug.to Oct.2006 with sap flow gauge based on heat balance principle and auto-weather station in Ludong University.The time lag effect of sap flow compared to meteorological factors was analyzed,and the regressive analysis between comprehensive affecting factor put forward by principal component analysis and sap flow was conducted.The time lag effect analysis results showed that the sap flow lag effect existed compared to total solar radiation,wind speed and photosynthetically active radiation,and the lag time was 10 min,20 min and 10 min,respectively.The time lag effect was the reason of water storage adjustment of leaves,branches and trunks.The sap flow lag time to total solar radiation and photosynthetically active radiation was shorter than wind,because solar radiation affected tree transpiration directly,and the wind affected tree transpiration through affecting boundary resistance of leaves.In the case sap flow time lag considered or not,the determination coefficients between comprehensive meteorological affecting factor and sap flow were 0.830 and 0.944,respectively,and the determination coefficient ascending 13.735% because of lag effect considered.In conclusion,the fitted precision would be improved with the time lag effect of trunk sap flow compared to micro-meteorological factors considered.展开更多
[Objective] The research aimed to analyze the inhibitory mechanism of Sophora japonica n-hexane extract which significantly inhibited Microcystis aeruginosa in the prior research.[Method] S.japonica n-hexane extract w...[Objective] The research aimed to analyze the inhibitory mechanism of Sophora japonica n-hexane extract which significantly inhibited Microcystis aeruginosa in the prior research.[Method] S.japonica n-hexane extract was used to treat M.aeruginosa.By inspecting chlorophyll a content,protein content,cell membrane permeability and superoxide dismutase(SOD) activity,the inhibitory mechanism of S.japonica n-hexane extract on M.aeruginosa was analyzed initially.[Result] S.japonica n-hexane extract destroyed the cell membrane system of M.aeruginosa,and increased the cell membrane permeability.The contents of chlorophyll a and protein respectively declined to 10% and 50% of that in the control group after cultivated for 7 d,which indicated the photosynthetic reaction system of M.aeruginosa was destroyed.In addition,under the effect of S.japonica n-hexane extract,SOD activity of M.aeruginosa increased in the early period and decreased in the latter period.[Conclusion] The possible inhibitory mechanism of S.japonica n-hexane extract on M.aeruginosa was destroying the cell membrane to increase the membrane permeability;destroying the photosynthetic reaction system to decrease the contents of photosynthetic pigment and protein;making SOD activity showing the phased variation.展开更多
文摘The sap flow velocity and the micro-meteorological environment of Sophora japonica f.pendula were measured from Aug.to Oct.2006 with sap flow gauge based on heat balance principle and auto-weather station in Ludong University.The time lag effect of sap flow compared to meteorological factors was analyzed,and the regressive analysis between comprehensive affecting factor put forward by principal component analysis and sap flow was conducted.The time lag effect analysis results showed that the sap flow lag effect existed compared to total solar radiation,wind speed and photosynthetically active radiation,and the lag time was 10 min,20 min and 10 min,respectively.The time lag effect was the reason of water storage adjustment of leaves,branches and trunks.The sap flow lag time to total solar radiation and photosynthetically active radiation was shorter than wind,because solar radiation affected tree transpiration directly,and the wind affected tree transpiration through affecting boundary resistance of leaves.In the case sap flow time lag considered or not,the determination coefficients between comprehensive meteorological affecting factor and sap flow were 0.830 and 0.944,respectively,and the determination coefficient ascending 13.735% because of lag effect considered.In conclusion,the fitted precision would be improved with the time lag effect of trunk sap flow compared to micro-meteorological factors considered.
基金Supported by National Natural Science Foundation of China(41076097,41006097,41106113)Science and Technology Research Key Projectof Chinese Ministry of Education(211065)+2 种基金Natural Science Foundation of Jiangsu Province,China(BK2010322)Open Research of Jiangsu Key Laboratory of Environmental Material and Environmental Engineering(K090027,K090025,K090026,K090028)"New Century"Talent Project of Yangzhou University,China~~
文摘[Objective] The research aimed to analyze the inhibitory mechanism of Sophora japonica n-hexane extract which significantly inhibited Microcystis aeruginosa in the prior research.[Method] S.japonica n-hexane extract was used to treat M.aeruginosa.By inspecting chlorophyll a content,protein content,cell membrane permeability and superoxide dismutase(SOD) activity,the inhibitory mechanism of S.japonica n-hexane extract on M.aeruginosa was analyzed initially.[Result] S.japonica n-hexane extract destroyed the cell membrane system of M.aeruginosa,and increased the cell membrane permeability.The contents of chlorophyll a and protein respectively declined to 10% and 50% of that in the control group after cultivated for 7 d,which indicated the photosynthetic reaction system of M.aeruginosa was destroyed.In addition,under the effect of S.japonica n-hexane extract,SOD activity of M.aeruginosa increased in the early period and decreased in the latter period.[Conclusion] The possible inhibitory mechanism of S.japonica n-hexane extract on M.aeruginosa was destroying the cell membrane to increase the membrane permeability;destroying the photosynthetic reaction system to decrease the contents of photosynthetic pigment and protein;making SOD activity showing the phased variation.