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8篇 您的检索式:作者名="Aigen Zhao"
    题名 作者 年代 出处 被引量
1Inner Envelope CHLOROPLAST MANGANESE TRANSPORTER 1 Supports Manganese Homeostasis and Phototrophic Growth in Arabidopsis显示文摘Bin Zhang Chi Zhang Congge Liu Yanping Jing Yuan Wang Ling Jin Lei Yang Aigen Fu Jisen Shi Fugeng Zhao Wenzhi Lan Sheng Luan 2018Molecular Plant2018,11,7:6
2The formula for the secondary electron yield at high incident electron energy from silver andcopper显示文摘Xie Aigen Zhao Haofeng Song Biao 2009Nucl Instrum Meth in Phys Res Sect B2009,267,5:1
3The Formula forthe Secondary Electron Yield at High Incident Electron Ener-gy from Silver and Copper显示文摘Xie Aigen Zhao Haofeng Song Biao 2009Nucl InstrumMethods in PhysRes Sect2009,267,5:1
4Upper bound estimate of scaled reinforced soil retaining walls显示文摘Ali Porbaha Aigen Zhao 2000Geotextiles and Geomembranes2000,,18:1
5The formula for the secondary electron yield at high incident electron energy from silver and copper显示文摘Xie Aigen Zhao Haofeng Song Biao 2009Nucl Inst and Meth in Phys Res B2009,267,10:1
6Microstructure, Photoluminescent Properties and Application of ZnO Films Grown on Al Foils显示文摘To obtain safety working before long-term early warning, we proposed a process for the preparation of luminescent films on metal substrate to detect the wear life. ZnO films were prepared on aluminum(Al) foils by the magnetron sputtering technique. The microstructure, tribological properties and photoluminescence(PL) spectra of ZnO films before and after the friction test were investigated. The microstructure of ZnO films grown on Al foils exhibited a closely packed hexagonal cone shape. ZnO films were grown along the orientation perpendicular to the substrate. The tribometric tests revealed that the average friction coefficient of ZnO films was lower and more stable than that of the substrate. The results of PL spectra indicated that the effect of Al element on ZnO films led to shifts of the defect related visible band. The luminescent center of ZnO films shifted from the emission peak at 510 nm before the friction to 647 nm after the friction, indicating that the green light shifted into the red light as the friction occurred. The visible light was helpful to understanding the failure characteristics during the friction and wear, and provide an early indicator of the impending failure.吴红艳 ZHAO Jiayu XIE Aigen XU Linhua ZHONG Kun SHEN Tongtong 2015Journal of Wuhan University of Technology(Materials Science)2015,30,2:0
7A Thylakoid Membrane Protein Functions Synergistically with GUN5 in Chlorophyll Biosynthesis显示文摘Chlorophyll(Chl)is essential for photosynthetic reactions and chloroplast development.While the enzymatic pathway for Chl biosynthesis is well established,the regulatory mechanism underlying the homeostasis of Chl levels remains largely unknown.In this study,we identified CBD1(Chlorophyll Biosynthetic Defect1),which functions in the regulation of chlorophyll biosynthesis.The CBD1 gene was expressed specifically in green tissues and its protein product was embedded in the thylakoid membrane.Furthermore,CBD1 was precisely co-expressed and functionally correlated with GUN5(Genome Uncoupled 5).Analysis of chlorophyll metabolic intermediates indicated that cbd1 and cbd1gun5 mutants over-accumulatedmagnesium protoporphyrin Ⅸ(Mg-Proto Ⅸ).In addition,the cbd1 mutant thylakoid contained less Mg than the wild type not only as a result of lower Chl content,but also implicating CBD1 in Mg transport.This was supported by the finding that CBD1 complemented a Mg^(2+)uptake-deficient Salmonella strain under low Mg conditions.Taken together,these results indicate that CBD1 functions synergistically with CHLH/GUN5 in Mg-Proto IX processing,and may serve as a Mg-transport protein to maintain Mg homeostasis in the chloroplast.Chi Zhang Bin Zhang Baicong Mu Xiaojiang Zheng Fugeng Zhao Wenzhi Lan Aigen Fu Sheng Luan 2020Plant Communications2020,1,5:0
8A SPX domain vacuolar transporter links phosphate sensing to homeostasis in Arabidopsis显示文摘Excess phosphate(Pi)is stored into the vacuole through Pi transporters so that cytoplasmic Pi levels remain stable in plant cells.We hypothesized that the vacuolar Pi transporters may harbor a Pi-sensing mechanism so that they are activated to deliver Pi into the vacuole only when cytosolic Pi reaches a threshold high level.We tested this hypothesis using Vacuolar Phosphate Transporter 1(VPT1),a SPX domain-containing vacuolar Pi transporter,as a model.Recent studies have defined SPX as a Pi-sensing module that binds inositol polyphosphate signaling molecules(InsPs)produced at high cellular Pi status.We showed here that Pi-deficient conditions or mutation of the SPX domain severely impaired the transport activity of VPT1.We further identified an auto-inhibitory domain in VPT1 that suppresses its transport activity.Taking together the results from detailed structure-function analyses,our study suggests that VPT1 is in the auto-inhibitory state when Pi status is low,whereas at high cellular Pi status InsPs are produced and bind SPX domain to switch on VPT1 activity to deliver Pi into the vacuole.This thus provides an auto-regulatory mechanism for VPT1-mediated Pi sensing and homeostasis in plant cells.Mingda Luan Fugeng Zhao Guangfang Sun Min Xu Aigen Fu Wenzhi Lan Sheng Luan 2022Molecular Plant2022,15,10:0
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