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| 1 | A Hierarchically Porous Metal-Organic Framework from Semirigid Ligand for Gas Adsorption显示文摘层次地多孔的材料在便于集体运输和吸附和分离过程的改善效率起一个重要作用。在这份报纸,新策略被建议认识到一个层次地多孔的金属器官的框架([Cu 2(OH)(L)]·(DMF)0.8(FJU-11, H 3L=3,5-(4-carboxybenzyloxy ) 安息香的酸, DMF=N, N-dimethylformamide ) 经由使用半硬的多羧基的酸。有趣地, FJU-11 向公司 2 拥有大吸附能力和小 isosteric 热。为 FJU-11 的列突破实验在烟道气体的分离加亮它的潜在的申请。 | Lizhen Liu Yingxiang Ye Zizhu Yao Liuqin Zhang Ziyin Li Lihua Wang Xiuling Ma Qian-Huo Chen Zhangjing Zhang Shengchang Xiang | 2016 | Chinese Journal of Chemistry2016,34,2: | 4 |
| 2 | Modulation of evening complex activity enables north-to-south adaptation of soybean显示文摘Soybean,a typical short-day crop,is sensitive to photoperiod,which is a major limiting factor defining its north-to-south cultivation range.The long-juvenile(LJ)trait is controlled primarily by the J locus which has been used for decades by soybean breeders to delay flowering and improve grain yield in tropical regions.The J gene encodes an ortholog of the Arabidopsis Evening Complex(EC)component EARLY FLOWERING 3(ELF3).To identify modifiers of J,we conducted a forward genetic screen and isolated a mutant(eoj57)that in combination with j has longer flowering delay compared with j single mutant plants.Map-based cloning and genome re-sequencing identified eoj57(designated as GmLUX2)as an ortholog of the Arabidopsis EC component LUX ARRHYTHMO(LUX).To validate that GmLUX2 is a modifier of J,we used trans-complementation and identified a natural variant allele with a similar phenotype.We also show that GmLUX2 physically interacts with GmELF3a/b and binds DNA,whereas the mutant and natural variant are attenuated in both activities.Transcriptome analysis shows that the GmLUX2-GmELF3a complex co-regulates the expression of several circadian clock-associated genes and directly represses E1 expression.These results provide mechanistic insight into how GmLUX2-GmELF3 controls flowering time via synergistic regulation of gene expression.These novel insights expand our understanding of the regulation of the EC complex,and facilitate the development of soybean varieties adapted for growth at lower latitudes. | Xiaolong Fang Yapeng Han Mengshi Liu Jiacan Jiang Xiang Li Qichao Lian Xianrong Xie Yian Huang Qibin Ma Hai Nian Ji Qi Cunyi Yang Yingxiang Wang | 2021 | Science China(Life Sciences)2021,64,2: | 3 |
| 3 | Identification of Oblate Band in Odd-odd ^(184)Au显示文摘The high-spin states in 184Au were populated by using the 159Tb( 29Si, 4ng) 184Au reaction at a bombarding energy of 140 MeV. The 29Si beam of 8 pnA was provided by the accelerator complex of the Tandem-XTU and ALPI at the Laroratori Nazionale di Legnero, Italy, and focussed onto a natural metallic 159Tb foil | Zhang Yuhu Wang Hualei G. de Angelis N. Maiginean A. Gadea D. R. Napoli M. Axiotis C. R.usu T. Martinez Zhou Xiaohong Fang Yongde Guo Wentao Liu Minliang Lei Xiangguo Guo Yingxiang | 2004 | 近代物理研究所和兰州重离子加速器实验室年报:英文版2004,,1: | 2 |
| 4 | High proton conductivity in metalloring-cluster based metalorganic nanotubes显示文摘Two novel anionic single-walled metal-organic nanotubes(MONTs),[(CH_(3))_(2)NH_(2)][ln(cdc)(thb)].2DMF.9.5H_(2)O(FJU-105)and[(CH_(3))_(2)NH_(2)][ln(cdc)(H-btc)]-2DMA·11H_(2)O(FJU-106)(H_(2)cdc=9H-carbazole-3,6-dicarboxylic acid,H_(2)thb=2,5-thiophene dicarboxylic acid,H3btc=1,3,5-benzene tricarboxylic acid),are achieved by employing[ln_(6)(cdc)_(6)]^(6+)metalloring cluster with largest diameter as the secondary building blocks(SBUs).The inner surface of FJU-106 is functionalized by uncoordinated-COOH groups of the H-btc linkers,leading to a higher proton conduction than FJU-105.At 70℃,FJU-106 displays the proton conduction performances among MONTs,up to 1.80×10^(-2)S·cm(^-1).And FJU-105 and FJU-106 are the first examples of MONT proton conductors operating at subzero temperature. | Quanjie Lin Yingxiang Ye Lizhen Liu Zizhu Yao Ziyin Li Lihua Wang Chulong Liu Zhangjing Zhang Shengchang Xiang | 2021 | Nano Research2021,14,2: | 2 |
| 5 | bZIP71 delays flowering by suppressing Ehd1 expression in rice显示文摘Flowering time is a fundamental factor determining the global distribution and final yield of rice(Oryza sativa).Although diverse flowering time genes have been reported in this crop,the transcriptional regulation of its key flowering genes are poorly understood.Here,we report that a basic leucine zipper transcription factor,bZIP71,functions as a flowering repressor.The overexpression of bZIP71 delays flowering,while the bzip71 mutant flowers early in both long-day and short-day conditions.A genetic analysis showed that the regulation of flowering by bZIP71 might be independent of Heading date 2(Hd2),Hd4,and Hd5.Importantly,bZIP71 directly associates with the Early heading date 1(Ehd1)promoter and represses its transcription,and genetically the function of bZIP71 is impaired in the ehd1 mutant.Moreover,bZIP71 interacts with major components of polycomb repressive complex 2(PRC2),SET domain group protein 711(SDG711),and Fertilization independent endosperm 2(FIE2),through which bZIP71 regulates the H3K27me3 level of Ehd1.Taken together,we present a transcriptional regulatory mechanism in which bZIP71 enhances the H3K27me3 level of Ehd1 and transcriptionally represses its expression,which not only offers a novel insight into a flowering pathway,but also provides a valuable putative target for the genetic engineering and breeding of elite rice cultivars. | Xiufeng Li Xiaojie Tian Mingliang He Xinxin Liu Zhiyong Li Jiaqi Tang Enyang Mei Min Xu Yingxiang Liu Zhenyu Wang Qingjie Guan Wei Meng Jun Fang Jian Zhang Qingyun Bu | 2022 | Journal of Integrative Plant Biology2022,64,7: | 2 |
| 6 | Acylindrical standing wave ultrasonic motor using bendingvibration transducer显示文摘 | Liu Yingxiang Chen Weishan Liu Junkao | 2011 | Ultrasonics2011,51,5: | 1 |
| 7 | Acylindrical traveling wave ultrasonic motor usinglongitudinal and bending composite transducer显示文摘 | Yingxiang Liu Weishan Chen Junkao Liu | 2010 | Sensorsand Actuators A2010,,161: | 1 |
| 8 | Asquare-type rotary ultrasonic motor with four drivingfeet显示文摘 | Liu Yingxiang Chen Weishan Feng Peilian | 2012 | Sensors and Actuators A2012,,180: | 1 |
| 9 | QNE1 is a key flowering regulator determining the length of the vegetative period in soybean cultivars显示文摘The soybean E1 gene is a major regulator that plays an important role in flowering time and maturity.However,it remains unclear how cultivars carrying the dominant E1 allele adapt to the higher latitudinal areas of northern China.We mapped the novel quantitative trait locus QNE1(QTL near E1) for flowering time to the region proximal to E1 on chromosome 6 in two mapping populations.Positional cloning revealed Glyma.06G204300,encoding a TCP-type transcription factor,as a strong candidate gene for QNE1.Association analysis further confirmed that functional single nucleotide polymorphisms(SNPs) at nucleotides 686 and 1,063 in the coding region of Glyma.06G204300 were significantly associated with flowering time.The protein encoded by the candidate gene is localized primarily to the nucleus.Furthermore,soybean and Brassica napus plants overexpressing Glyma.06G204300 exhibited early flowering.We conclude that despite their similar effects on flowering time,QNE1 and E4 may control flowering time through different regulatory mechanisms,based on expression studies and weighted gene co-expression network analysis of flowering time-related genes.Deciphering the molecular basis of QNE1 control of flowering time enriches our knowledge of flowering gene networks in soybean and will facilitate breeding soybean cultivars with broader latitudinal adaptation. | Zhengjun Xia Hong Zhai Yanfeng Zhang Yaying Wang Lu Wang Kun Xu Hongyan Wu Jinglong Zhu Shuang Jiao Zhao Wan Xiaobin Zhu Yi Gao Yingxiang Liu Rong Fan Shihao Wu Xin Chen Jinyu Liu Jiayin Yang Qijian Song Zhixi Tian | 2022 | Science China(Life Sciences)2022,65,12: | 1 |
| 10 | A cylindrical traveling wave ultrasonic motor using longitudinal and bending composite transducer 显示文摘 | LIU Yingxiang CHEN Weishan LIU Junkao | 2010 | Sensors and Actuators: A Physical2010,161,12: | 1 |
| 11 | Dynamics analysis and chaos control of a two-dimensional hyperchaotic discrete system显示文摘 | Liu Xiaojun Li Xianfeng Chang Yingxiang | 2008 | Journal of Sichuan University: Natural Science Edition2008,45,3: | 1 |
| 12 | A rotary ultrasonic motor using bending vibration trans- ducers显示文摘 | LIU Yingxiang CHEN Weishan LIU Junkao | 2010 | IEEE Transactions on Ultrasonics Ferroe- lectrics and Frequency Control2010,57,10: | 1 |
| 13 | A cylindrical traveling wave ultrasonic motor using longi- tudinal and bending composite transducer显示文摘 | LIU Yingxiang CHEN Weishan LIU Junkao | 2010 | Sensors and Actuators: A Physical2010,161,12: | 1 |
| 14 | A square- type rotary ultrasonic motor with four driving feet 显示文摘 | LIU Yingxiang CHEN Weishan FENG Peilian | 2012 | Sensors and Actuators A :Physical2012,180,: | 1 |
| 15 | A new traveling wave ultrasonic motor using thickring stator with nested PZT excitation显示文摘 | Weishan Chen Shengjun Shi Yingxiang Liu | 2010 | IEEETransactions on Ultrasonics Ferroelectrics andFrequency Control2010,57,5: | 1 |
| 16 | Ahigh-power linear ultrasonic motor using longitudinalvibration transducers with single foot显示文摘 | Yingxiang Liu Weishan Chen Junkao Liu | 2010 | IEEETransactions on Ultrasonics Ferroelectrics andFrequency Control2010,57,8: | 1 |
| 17 | Arotary ultrasonic motor using bending vibrationtransducers显示文摘 | Yingxiang Liu Weishan Chen Junkao Liu | 2010 | IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control2010,57,10: | 1 |
| 18 | Acylindrical standing wave ultrasonic motor usingbending vibration transducer显示文摘 | Yingxiang Liu Weishan Chen Junkao Liu | 2011 | Ultrasonics2011,51,5: | 1 |
| 19 | Alinear ultrasonic motor using bending vibrationtransducer with double driving feet显示文摘 | Weishan Chen Yingxiang Liu Junkao Liu | 2010 | Ferroelectrics2010,400,: | 1 |
| 20 | Carbon dots confined in 3D polymer network: Producing robust room temperature phosphorescence with tunable lifetimes显示文摘Room temperature phosphorescence(RTP) is important in both organic electronics and encryption. Despite rapid advances, a universal approach to robust and tunable RTP materials based on amorphous polymers remains a formidable challenge. Here, we present a strategy that uses three-dimensional(3 D)confinement of carbon dots in a polymer network to achieve ultra-long lifetime phosphorescence. The RTP of the as-obtained materials was not quenched in different polar organic solvents and the lifetime of the RTP was easily tuned by adjusting the amount of crosslinking or varying the drying temperature of the 3 D molecular network. As a demonstration of potential application, as-obtained RTP materials were successfully used to prepare RTP fibres for flexible textiles. As well as bringing to light a fundamental principle for the construction of polymer materials with RTP, we have endowed traditional carbon dots and polymers with fresh features that will expand potential applications. | Yingxiang Zhai Ping Wang Xinyue Zhang Shouxin Liu Jian Li Zhijun Chen Shujun Li | 2022 | Chinese Chemical Letters2022,33,2: | 1 |