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| 1 | Suppressor of RNA silencing encoded by Rice gall dwarf virus genome segment 11显示文摘Rice gall dwarf virus(RGDV)is an important rice pathogen in China and Southeast Asia.However,little is known about the molecular mechanisms of RGDV interactions with plant cells.Here,we have identi-fied an RGDV protein,Pns11,which acts as a suppressor of RNA silencing in coinfiltration assays with the reporter,green fluorescent protein(GFP)in transgenic Nicotiana benthamiana line 16c carrying GFP.Pns11 suppressed local and systemic silencing induced by sense RNA.The spread of mobile RNA si-lencing signals was blocked or inactivated by Pns11.Expression of Pns11 also enhanced Potato virus X pathogenicity in N.benthamiana.This suppressor could reduce,but not eliminate,siRNA in the local and systemic RNA silencing suppression assays,suggesting that Pns11 functions by interfering with initial stages of RNA silencing. | LIU FuXiu ZHAO Qin RUAN XiaoLei HE YunWei LI HuaPing | 2008 | Chinese Science Bulletin2008,53,3: | 8 |
| 2 | Analysis, design,and implementation of virtual impedance for power electronics interfaced distributed generation显示文摘 | HE Jinwei LI Yunwei | 2011 | IEEE Transactions on Industry Applications2011,45,6: | 1 |
| 3 | Hybrid voltage and current control ap- proach for DG-grid interfacing converters with LCL filters显示文摘 | HE Jinwei LI Yunwei | 2013 | IEEE Transactions on Industrial Electronics2013,60,5: | 1 |
| 4 | Analysis,design,and implementation of virtual impedance for power electronics interfaced distributed generation显示文摘 | He Jinwei Li Yunwei | 2011 | IEEE Transactions on Industry Applications2011,47,6: | 1 |
| 5 | Flexible microgrid power quality enhancement using adaptive hybrid voltage and current controller 显示文摘 | HE Jinwei LI Yunwei BLAABJERG B | 2014 | IEEE Transactions on Industrial Elec- tronics2014,61,6: | 1 |
| 6 | Analysis,investigation and active damping of multiple resonances in a parallel-inverterbased microgrid显示文摘 | He Jinwei Li Yunwei | 2013 | IEEE Transactions on Power Electronics2013,28,1: | 1 |
| 7 | Generalized closed-loop control schemes with embedded virtual impedances for voltage source converters with LC or LCL filters显示文摘 | He Jinwei Li Yunwei | 2012 | IEEE Transactions on Power Electronics2012,27,4: | 1 |
| 8 | Analysis,design,and implementation of virtual impedance for power electronics interfaced distributed generation显示文摘 | He Jinwei Li Yunwei | | 0,,06: | 1 |
| 9 | Hybrid voltage and current control approach for DG-Grid interfacing converters with LCL filters显示文摘 | He Jinwei Li Yunwei | 2013 | IEEE Transactions on Industrial Electronics2013,60,5: | 1 |
| 10 | A flexible harmonic control approach through voltage-controlled DG-Grid interfacing converters显示文摘 | He Jinwei Li Yunwei Md Shirajum | 2012 | IEEE Transactions on Industrial Electronics2012,59,1: | 1 |
| 11 | Generalized closed-loop control schemes with embedded virtual impedances for voltage source converters with LC or LCL filters显示文摘 | Jinwei He Yunwei Li | 2012 | IEEE Trans on Power Electronics2012,27,4: | 1 |
| 12 | Analysis, design, and imple- mentation of virtual impedance for power electronics interfaced distributed generation显示文摘 | HE Jinwei LI Yunwei | 2011 | IEEE Transac- tionson Industry Applications2011,47,6: | 1 |
| 13 | An enhanced microgrid load demand sharing strategy显示文摘 | Jinwei He Yunwei Li | 2012 | IEEE Transactions on Power Electronics2012,27,9: | 1 |
| 14 | Analysis, design, and implementation of virtual impedance for power electronics interfaced distributed generation显示文摘 | Jinwei He Yunwei Li | 2011 | IEEE Transactions on Industrial Applications2011,47,6: | 1 |
| 15 | An enhanced microgrid load demand sharing strategy 显示文摘 | He Jinwei Li Yunwei | 2012 | IEEE Transaction on Power Electronics2012,27,9: | 1 |
| 16 | A FlexibleHarmonic Control Approach ThroughVoltage-Controlled DG-Grid InterfacingConverters显示文摘 | He Jinwei Li Yunwei Munir M S | 2012 | IEEE Transactions on IndustrialElectronics2012,59,1: | 1 |
| 17 | Analysis,design,and implementation of virtual impedance for power electronics interfaced distributed generation显示文摘 | HE Jinwei LI Yunwei | 2011 | IEEE Transactions on Industrial Applications2011,47,6: | 1 |
| 18 | An enhanced microgrid load demand sharing strategy 显示文摘 | He Jinwei Li Yunwei | 2012 | IEEE Transaction on Power electronics2012,27,9: | 1 |
| 19 | An islanding microgrid power sharing approach using enhanced virtual impedance control scheme 显示文摘 | He Jinwei Li Yunwei Guerrero J M | 2013 | IEEE Transaction on Power electronics2013,28,11: | 1 |
| 20 | Self-assembled all-inclusive organic-inorganic nanoparticles enable cascade reaction for the detection of glucose显示文摘Traditional colorimetric glucose biosensor generally involves complex assay procedures.Free labile enzymes and peroxidase substrates are used separately for triggering a chromogenic reaction.These limits result in inferior enzyme stability and defective enzymatic catalytic efficiency,making it hard to routinely utilize them for the direct and fast test of glucose.In this work,we provide an all-inclusive substrates/enzymes nanoparticle employed 3,3’5,5’-tetramethylbenzidine(TMB) as chromogenic substrates and glucose oxidase(GOx)/horseradish peroxidase(HRP) as signal amplifier enzymes(TMB-GH NPs) by the molecule self-assembly technique.The 'all-inclusive' nanoparticles can realize the tandem colorimetric reactions,and the oxidation product of TMB(ox-TMB) exhibits a strong NIR laserdrive n photothermal effect,thus allowing qua ntitative photothermal detection of glucose.Owing to the restriction of the molecular motion of GOx,HRP,and TMB,the distance of mass transfer between substrates was s hortened largely,leading to improved catalytic activity for glucose.Overall,our strategy will simplify the analysis procedure,furthermore,these integrated nanoparticles not only display higher stability and activity than that of the free GOx/HRP system and possesses an excellent performance for colorimetric and photothermal bioassay of glucose simultaneously.We believe that this unique technique will give good inspirations to develop simple and precise methods for bioassay. | Ximei Sun Yan Li Qian Yang Yunwei Xiao Yuting Zeng Jindi Gong Ziyu Wang Xiaofeng Tan He Li | 2021 | Chinese Chemical Letters2021,32,5: | 1 |