蜡样芽胞杆菌族(Bacillus cereus sensu lato)包括几个具有密切系统发育关系的芽胞杆菌物种,产生的毒素种类繁多,备受人们关注。质粒在菌株中的水平转移,会改变其表型、致病性和毒力,同时也带来分类的问题。通过综述几种蜡样芽胞杆菌毒...蜡样芽胞杆菌族(Bacillus cereus sensu lato)包括几个具有密切系统发育关系的芽胞杆菌物种,产生的毒素种类繁多,备受人们关注。质粒在菌株中的水平转移,会改变其表型、致病性和毒力,同时也带来分类的问题。通过综述几种蜡样芽胞杆菌毒素的结构特性、作用机制及其危害或生物应用,从质粒水平转移的角度介绍蜡样芽胞杆菌族成员错综复杂的关系。展开更多
Au/GaAs/Au plasmonic cavities with a periodic hole array perforated in the top Au layer are studied.Propagating surface plasmons(PSPs)and localized surface plasmons(LSPs)associated with the rectangle hole shapes are f...Au/GaAs/Au plasmonic cavities with a periodic hole array perforated in the top Au layer are studied.Propagating surface plasmons(PSPs)and localized surface plasmons(LSPs)associated with the rectangle hole shapes are found to interact and highly hybridize in the cavity structure,which eventually determines the resonance properties of the cavities.An anticrossing of resonance frequencies in the reflection spectra is observed when the frequency of PSPs approaches that of LSPs,demonstrating the strong coupling between SPPs and LSPs in the tri-layer plasmonic cavities.This work may provide hints to the plasmonic cavity design for light-harvesting optoelectronic applications.展开更多
文摘蜡样芽胞杆菌族(Bacillus cereus sensu lato)包括几个具有密切系统发育关系的芽胞杆菌物种,产生的毒素种类繁多,备受人们关注。质粒在菌株中的水平转移,会改变其表型、致病性和毒力,同时也带来分类的问题。通过综述几种蜡样芽胞杆菌毒素的结构特性、作用机制及其危害或生物应用,从质粒水平转移的角度介绍蜡样芽胞杆菌族成员错综复杂的关系。
基金by the National Basic Research Program of China under Grant No 2009CB929300the National Natural Science Foundation of China under Grant Nos 60725417,10804019 and 60990321+1 种基金Shanghai Science and Technology Committee under Grant Nos 08dj1400302 and 09dj1400103Japan Science and Technology Corporation(JST)Project.
文摘Au/GaAs/Au plasmonic cavities with a periodic hole array perforated in the top Au layer are studied.Propagating surface plasmons(PSPs)and localized surface plasmons(LSPs)associated with the rectangle hole shapes are found to interact and highly hybridize in the cavity structure,which eventually determines the resonance properties of the cavities.An anticrossing of resonance frequencies in the reflection spectra is observed when the frequency of PSPs approaches that of LSPs,demonstrating the strong coupling between SPPs and LSPs in the tri-layer plasmonic cavities.This work may provide hints to the plasmonic cavity design for light-harvesting optoelectronic applications.