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5篇 您的检索式:作者名="Yu Qijin"
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1Rice SPL10 positively regulates trichome development through expression of HL6 and auxin-related genes显示文摘Trichomes function in plant defenses against biotic and abiotic stresses;examination of glabrous lines,which lack trichomes,has revealed key aspects of trichome development and function.Tests of allelism in 51 glabrous rice(Oryza sativa)accessions collected worldwide identified OsSPL10 and OsWOX3B as regulators of trichome development in rice.Here,we report that OsSPL10 acts as a transcriptional regulator controlling trichome development.Haplotype and transient expression analyses revealed that variation in the approximately 700-bp OsSPL10 promoter region is the primary cause of the glabrous phenotype in the indica cultivar WD-17993.Disruption of OsSPL10 by genome editing decreased leaf trichome density and length in the NIL-HL6 background.Plants with genotype OsSPL10^(WD-17993)/HL6 generated by crossing WD-17993 with NIL-HL6 also had fewer trichomes in the glumes.HAIRY LEAF6(HL6)encodes another transcription factor that regulates trichome initiation and elongation,and OsSPL10 directly binds to the HL6 promoter to regulate its expression.Moreover,the transcript levels of auxin-related genes,such as OsYUCCA5 and OsPIN-FORMED1b,were altered in OsSPL10 overexpression and RNAi transgenic lines.Feeding tests using locusts(Locusta migratoria)demonstrated that non-glandular trichomes affect feeding by this herbivore.Our findings provide a molecular framework for trichome development and an ecological perspective on trichome functions.Jinjie Li Bo Tang Yingxiu Li Chenguang Li Minjie Guo Haiyang Chen Shichen Han Jin Li Qijin Lou Wenqiang Sun Peng Wang Haifeng Guo Wei Ye Zhanying Zhang Hongliang Zhang Sibin Yu Long Zhang Zichao Li 2021Journal of Integrative Plant Biology2021,63,8:2
2Ultra high temperature superfluidity in ultracold atomic Fermi gases with mixed dimensionality显示文摘It has been an important goal to achieve higher or even room temperature superconductivity,since the discovery of high Tc superconductors in 1986,with a typical maximum transition temperature Tc of around 95 K at ambien pressure[1]or up to 164 K for the Hg-based cuprates under high pressure[2].The typical Tc/TF is only around 0.05 or less,where TF denotes the Fermi temperature.There have been a few other families of superconductors,including the iron-based[3],heavy fermion[4]and organic superconductors[5].Their maximum attainable Tc/TF has not been able to exceed that of the cuprates.Other notable superconductors include the recently discovered H2S with a record high Tc=203 K under an enormous high pressure of 90 GPa[6],and the monolayer FeSe/SrTiO3 superconductors with a gap opening temperature up to 100 K[7].Leifeng Zhang Jibiao Wang Yi Yu Qijin Chen 2020Science China(Physics,Mechanics & Astronomy)2020,63,2:1
3Conversion of bromine during thermal decomposition of printed circuit boards at high temperature显示文摘YU Qijin LIN Tao YONG Chi 2011Journal of Hazardous Materials2011,186,1:1
4Bucky-gel coated glassycarbon electrodes, for voltammetric detection of femtomolarleveled lead ions 显示文摘Qijin Wan Fen Yu Lina Zhu 2010Taianta2010,82,:1
5Design of High-Efficiency broadband power amplifier using low-pass bias network显示文摘A novel design of high-efficiency broadband power amplifier(BPA) with the low-pass bias networkto enhance the efficiency and output power is presented in this paper. Compared with other bias networks, the proposed low-pass bias network shows a smaller baseband impedance, which can reduce the electrical memory effect. While it provides a larger radio frequency(RF) impedance, which can prevent the leakage of the output power from bias network. A BPA with the proposed bias network is designed using commercial Ga N device Cree40025 F. The designed BPA shows a fractional bandwidth of 40%, from 1.8 GHz to 2.7 GHz. The measured results exhibit 73.9 % drain efficiency(DE) value with output power of 43.5 d Bm at 2.7 GHz, which appears an enhancement of 9.5% and 2.5 d Bm comparing with that adopts LC bias network.Yu Qijin Yu Cuiping Tang Bihua Liu Yuan'an 2016The Journal of China Universities of Posts and Telecommunications2016,23,1:1
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