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| 1 | Genome-wide analysis and molecular dissection of the SPL gene family in Salvia miltiorrhiza显示文摘SQUAMOSA promoter binding protein-likes(SPLs) are plant-specific transcription factors playing vital regulatory roles in plant growth and development. There is no information about SPLs in Salvia miltiorrhiza(Danshen), a significant medicinal plant widely used in Traditional Chinese medicine(TCM) for >1,700 years and an emerging model plant for TCM studies. Through genome-wide identification and subsequent molecular cloning, we identified a total 15 SmSPLs with divergent sequence features, gene structures, and motifs. Comparative analysis showed sequence conservation between SmSPLs and their Arabidopsis counterparts. A phylogenetic tree clusters SmSPLs into six groups. Many of the motifs identified commonly exist in a group/subgroup, implying their functional redundancy. Eight SmSPLs were predicted and experimentally validated to be targets of miR156/157. SmSPLs were differentially expressed in various tissues of S. milltiorrhiza. The expression of miR156/157-targeted SmSPLs was increased withthe maturation of S. miltiorrhiza, whereas the expression of miR156/157 was decreased, confirming the regulatory roles of miR156/157 in SmSPLs and suggesting the functions of SmSPLs in S. miltiorrhiza development. The expression of miR156/157 was negatively correlated with miR172 during the maturation of S. miltiorrhiza. The results indicate the significance and complexity of SmSPL-, miR156-, and miR172-mediated regulation of developmental timing in S. miltiorrhiza. | Linsu Zhang Bin Wu Degang Zhao Caili Li Fenjuan Shao Shanfa Lu | 2014 | Journal of Integrative Plant Biology2014,56,1: | 13 |
| 2 | Study on formation of gels formed by polymer and zirconium acetate 显示文摘 | Zhao Guang Dai Caili You Qing | 2013 | J Sol-GelSci Technol2013,,65: | 1 |
| 3 | Study on formation of gels formed by polymer and zirconium acetate显示文摘 | Guang Zhao Caili Dai Qing You Mingwei Zhao Jianhui Zhao | 2013 | Journal of Sol-Gel Science and Technology2013,,3: | 1 |
| 4 | Electrodeposition of mesoporous manganese dioxide super-capacitor electrodes through self-assembled triblock copolymer templates显示文摘 | Xue Tong Xu Caili Zhao Dandan | 2007 | J Power Sources2007,164,2: | 1 |
| 5 | Protective Effects of Lycium barbarum Polysaccharides on Testis Spermatogenic Injury Induced by Bisphenol A in Mice显示文摘 | Caili Zhang Anzhong Wang Xiaona Sun Xiaocai Li Xinghua Zhao Shuang Li Aituan Ma Rainer W. Bussmann | 2013 | Evidence-Based Complementary and Alternative Medicine2013,,: | 1 |
| 6 | Polarization Oblique Projection Based Self-Interference Cancellation against PA Nonlinear Distortion in MIMO Full Duplex System显示文摘In MIMO full duplex system,power amplifier(PA) nonlinearity limits the self-interference(SI) cancellation seriously. Most existing methods need to model and estimate the PA nonlinearity in order to reconstruct the SI,however the estimation error caused by the mismatch between the estimated PA model and the actual PA property still impacts the cancellation ability,especially when the transmit power is high. In this paper we propose a polarization oblique projection based self-interference cancellation method which does not need to estimate the PA nonlinearity coefficients. It exploits the polarization state information of the signals which is immune to the PA nonlinearity,and establishes an oblique projection operator to cancel the SI. Numerical results and analysis demonstrate that it can cancel the nonlinear SI effectively. Moreover the signal to interfere plus noise ratio(SINR) and the achievable sum rate do not deteriorate when the transmit power is high. Further,the upper bound of the achievable sum rate can be more than twice that of the half duplex. | Wen Zhao Chunyan Feng Fangfang Liu Caili Guo | 2016 | China Communications2016,13,11: | 1 |
| 7 | Development, formation mechanism and performance evaluation of a reusable viscoelastic surfactant fracturing fluid显示文摘 | YAN Zhihu DAI Caili ZHAO Mingwei | 2016 | J Ind Eng Chem2016,37,: | 1 |
| 8 | Preparation of Dispersed Particle Gel (DPG) through a Simple High Speed Shearing Method 显示文摘 | Caili Dai Guang Zhao Mingwei Zhao | 2012 | Molecules2012,17,14: | 1 |
| 9 | Investiga- tion of the Profile Control Mechanisms of Dis- persed Particle Gel 显示文摘 | Guang Zhao Caili Dai Mingwei Zhao | 2014 | PLOS ONE2014,9,6: | 1 |
| 10 | Natural products:potential therapeutic agents for atherosclerosis显示文摘Atherosclerosis(AS)is an invisible killer among cardiovascular diseases(CVD),which has seriously threatened the life of quality.The complex pathogenesis of AS involves multiple interrelated events and cell types,such as macrophages,endothelial cells,vascular smooth muscle cells and immune cells.Currently,the efficacy of recommended statin treatment is not satisfactory.Natural products(NPs)have attracted increasing attention with regard to their broad structural diversity and biodiversity,which makes them a promising library in the demand for lead compounds with cardiovascular protective bio-activity.NPs can preclude the development of AS by regulating lipid metabolism,ameliorating inflammation,stabilizing plaques,and remodeling the gut microbiota,which lays a foundation for the application of NPs in clinical therapeutics. | CHENG Xiaobei ZHAO Caili JIN Zhiwei HU Jianping ZHANG Zhenzhen ZHANG Chao | 2022 | Chinese Journal of Natural Medicines2022,20,11: | 1 |
| 11 | Characteristics and displacement mechanisms of the dispersed particle gel soft heterogeneous compound flooding system显示文摘Considering high temperature and high salinity in the reservoirs, a dispersed particle gel soft heterogeneous compound(SHC) flooding system was prepared to improve the micro-profile control and displacement efficiency. The characteristics and displacement mechanisms of the system were investigated via core flow tests and visual simulation experiments. The SHC flooding system composed of DPG particles and surfactants was suitable for the reservoirs with the temperature of 80-110 °C and the salinity of 1×10~4-10×10~4 mg/L. The system presented good characteristics: low viscosity, weak negatively charged, temperature and salinity resistance, particles aggregation capacity, wettability alteration on oil wet surface, wettability weaken on water wet surface, and interfacial tension(IFT) still less than 1×10^(-1) mN/m after aging at high temperature. The SHC flooding system achieved the micro-profile control by entering formations deeply and the better performance was found in the formation with the higher permeability difference existing between the layers, which suggested that the flooding system was superior to the surfactants, DPG particles, and polymer/surfactant compound flooding systems. The system could effectively enhance the micro-profile control in porous media through four behaviors, including direct plugging, bridging, adsorption, and retention. Moreover, the surfactant in the system magnified the deep migration capability and oil displacement capacity of the SHC flooding system, and the impact was strengthened through the mechanisms of improved displacement capacity, synergistic emulsification, enhanced wettability alteration ability and coalescence of oil belts. The synergistic effect of the two components of SHC flooding system improved oil displacement efficiency and subsequently enhanced oil recovery. | ZHAO Guang DAI Caili YOU Qing | 2018 | Petroleum Exploration and Development2018,45,3: | 0 |
| 12 | Facile and controllable synthesis of amino-modified carbon dots for efficient oil displacement显示文摘Zero-dimensional(0D)carbon dots exhibit excellent potential as a new oil-displacing agent for unconventional reservoir development.However,the difficulty in size/surface properties control and unclear mechanism hinder their further applications.In this study,amino-modified carbon dots(am-CDs)for oil displacement were facilely synthesized through the rapid polymerization of D-glucose(D-Glc)and 3-aminopropyltriethoxysilane(APTES).The size of am-CDs could be precisely controlled by the reaction condition and quenching achieved by adjusting the pH value to neutral.The surface amine groups endow am-CDs with excellent hydrophilicity and dispersion stability.The 0.30 wt.%nanofluid based on am-CDs with an average size of 2.6±0.040 nm showed remarkable oil recovery efficiency(54.09%)without the addition of surfactant.The oil recovery efficiency of am-CDs is much higher than those of water flooding(30.25%),nano-SiO_(2) flooding(36.45%),and amino-free carbon dots(af-CDs)flooding(37.80%).Experimental and theoretical results reveal that am-CDs can be favorably adsorbed on the core surface to modulate the micro-scale wettability,changing the surface from oil-wet to relatively uniform water-wet.Meanwhile,am-CDs can effectively reduce the adhesion force between alkanes and sandstone surfaces,contributing to oil droplets peeling off and oil displacement.This study provides a new strategy for developing efficient carbon dots-based nanofluids for enhanced oil recovery. | Yining Wu Lisha Tang Mengjiao Cao Li Li Kai Liu Demin Kong Qingshan Zhao Xu Jin He Liu Caili Dai | 2023 | Nano Research2023,16,5: | 0 |