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| 1 | Composites of small Ag clusters confined in the channels of well-ordered mesoporous anatase TiO2 and their excellent solar-light-driven photocatalytic performance显示文摘 | Wei Zhou Ting Li Jianqiang Wang Yang Qu Kai Pan Ying Xie Guohui Tian Lei Wang Zhiyu Ren Baojiang Jiang Honggang Fu | 2014 | Nano Research2014,7,5: | 17 |
| 2 | Comparative Transcriptome Analysis of Actinidia arguta Fruits Reveals the Involvement of Various Transcription Factors in Ripening显示文摘The fruit of Actinidia arguta is typically climacteric.During ripening,the fruits produce a large amount of ethylene.Although the molecular basis of climacteric fruit ripening has been extensively studied,some aspects such as its transcriptional regulation remain unclear.Here,we compared the transcriptomes of A.arguta fruits collected at commercial harvest(sample d0)and at 6 days after harvest(sample d6)using RNA-seq.A total of 3 659 differentially expressed genes(DEGs)between samples d0 and d6 were detected,of which 2 983 and 1 104 could be functionally annotated with Gene Ontology(GO)and Clusters of Orthologous Groups(COG)pathways.DEGs involved in ethylene biosynthesis and signal transduction were identified,including ACO(c79627),ERF061(c105131),and ERF6(c99193).Transcription factors such as ERF,b HLH,NAC,MADS,and MYB were also differentially expressed between samples d0 and d6.Selected DEGs were subjected to further analysis using quantitative reverse transcription-polymerase chain reaction(q RT-PCR),and the results coincided with those of RNA-seq.Our data revealed additional transcription factors that are involved in the regulation of fruit ripening.These results provide useful information for future research on the transcriptional regulation of fruit ripening. | HUANG Guohui QU Yi LI Tong YUAN Hui WANG Aide TAN Dongmei | 2018 | Horticultural Plant Journal2018,4,1: | 9 |
| 3 | Variation analyses of growth and wood properties of Larix olgensis clones in China显示文摘The growth traits(tree height, diameter at breast height, and stem straightness degree) and wood properties[wood density(WD), fiber length, fiber width, ash content(AC), lignin content, cellulose content, hemicellulose content(HEC), and holocellulose content] of 208 26-yearold Larix olgensis clones were analyzed. Except for WD and AC, there were significant differences(p \ 0.01) for all traits among clones. The phenotypic coefficient of variation and repeatability of all traits were 9.34–35.33%and 0.218–0.930, respectively. Tree height and diameter at breast height showed significant positive correlation;however, the correlation coefficients among growth characteristics and wood properties were mostly not significant.Ten clones(L70, L56, L82, L90, L59, L91, L61, L92, L86,and L64) were selected as excellent clones under a selection rate of 5%, using tree height, diameter at breast height,and stem straightness degree as evaluation indexes, providing genetic gains of 28.69, 17.96, and 0.67%, respectively. Ten clones(L88, L305, L59, L66, L253, L304,L277, L298, L248, and L293) were selected as excellent clones using wood properties as an evaluation index, with a selection rate of 5%, providing genetic gains in WD, fiber length, fiber width, cellulose content, and HEC of 4.14,3.64, 9.28, 6.77, and 9.61%, respectively. This study provides a theoretical basis for selecting excellent L. olgensis clones. | Shaopeng Yin Zhenhai Xiao Guohui Zhao Xin Zhao Xiaoyang Sun Ying Zhang Fuwei Wang Shuchun Li Xiyang Zhao Guan-Zheng Qu | 2017 | Journal of Forestry Research2017,28,4: | 6 |
| 4 | Simulation analysis for the walking mechanism of the underground exploration robot based on MATLAB and ADAMS 显示文摘 | QU Fang CHEN Guohui NING Shan | 2014 | Applied Mechanics and Materials2014,,12: | 1 |
| 5 | Fe-based micro- and nanocomposite coat- ings produced by amorphous alloy crystallization based on elctro- sparkdeposition显示文摘 | Zhou Xia Qu Guohui | 2010 | AdvancedMaterialsResearch2010,97,: | 1 |
| 6 | Research on development factors affecting oil recovery of polymer flooding显示文摘 | Guohui Qu Yikun Liu Shengdong Jiang | 2013 | Energy Education Science and Technology Part A2013,31,3: | 1 |
| 7 | New research progress of the demulsification of produced liquid by polymer flooding显示文摘 | Guohui Qu Xingguo Gong and Yikun Liu | 2014 | Journal of Chemical and Pharmaceutical Research2014,6,1: | 1 |
| 8 | Study on synthesis and properties of modified starch binder for foundry显示文摘 | Zhou Xia Yang Jinzong Qu Guohui | 2007 | Journal of Materials Processing Tech- nology2007,,183: | 1 |
| 9 | Simulation analysis for the walking mechanism of the underground exploration robot based on MATLAB and ADAMS 显示文摘 | QU Fang CHEN Guohui NING Shan | 2014 | Applied Mechanics and Materials2014,,12: | 1 |
| 10 | The high-temperature resistant mechanism of α-starch composite binder for foundry显示文摘 | Zhou Xia Yang Jinzong Qu Guohui | 2009 | Journal of Materials Processing Technology2009,209,: | 1 |
| 11 | Study on synthesis and properties of modified starch binder for foundry显示文摘 | Zhou Xia Yang Jinzong Qu Guohui | 2007 | Journal of Materials Processing Technology2007,183,23: | 1 |
| 12 | Hygroscopicity-resistant mechanism of an α-starch based composite binder for dry sand molds and cores显示文摘Hygroscopicity-resistance of an α-starch based composite binder for dry sand molds (cores) has been studiedexperimentally and theoretically. Focus is placed on the relationship between the hardening structure andhumidity-resistance of the composite binder. The results show that the α-starch composite binder has goodhumidity-resistance due to its special complex structure. SEM observations illustrate that the composite binder consists ofreticular matrix and a ball- or lump-shaped reinforcement phase, and the specific property of the binding membrane withheterogeneous structure is affected by humidity to a small extent. Based on the analyses on the interplays of differentingredients in the binder at hardening, the structure model and hygroscopicity-resistant mechanisms of the hardeningcomposite binder were further proposed. Moreover, the reasons for good humidity-resistance of the composite binderbonded sand are well explained by the humidity-resistant mechanisms. | XIA Zhou Jiyang ZHOU Guohui QU | 2005 | China Foundry2005,2,2: | 0 |