|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Exceptional groups of Lie type and flag-transitive triplanes显示文摘A triplane is a ( v, k, 3)-symmetric design. Let G be a subgroup of the full automorphism group of a triplane D. In this paper we prove that if G is flag-transitive and point-primitive, then the socle of G cannot be a simple exceptional group of Lie type. | ZHOU ShengLin & DONG HuiLi Department of Mathematics, South China University of Technology, Guangzhou 510640, China | 2010 | Science China Mathematics2010,53,2: | 7 |
| 2 | Sporadic groups and flag-transitive triplanes显示文摘Let D be a triplane, i.e., a 2-(v,k,3) symmetric design, and G be a subgroup of the full automorphism group of D. In this paper we prove that if G is flag-transitive point-primitive, then the socle of G cannot be a sporadic simple group. | ZHOU ShengLin DONG HuiLi | 2009 | Science China Mathematics2009,52,2: | 7 |
| 3 | Sustainable and invisible anti-counterfeiting inks based on waterborne polyurethane and upconversion nanoparticles for leather products显示文摘Counterfeit leather products infringe the intellectual property rights of the business,cause enormous economic loss,and negatively influence the business enthusiasm for innovation.However,traditional anti-counterfeiting materials for leather products suffer from complicated fabrication procedures,photobleaching,and high volatile organic com-pound(VOC)emissions.Here,a sustainable and invisible anti-counterfeiting ink composed of waterborne polyure-thane and water-dispersible lanthanide-doped upconversion nanoparticles(UCNPs)featuring ease of preparation,high photostability,non-toxicity,low VOC emissions,and strong adhesion strength for leather products is designed and synthesized.After decorating on the surface of leather products,the obtained patterns are invisible under normal light conditions.Upon irradiation at 808 nm,the invisible patterns can be observed by naked eyes due to the visible light emitted by 808 nm excited UCNPs.Our approach described here opens a new pathway to realize the long-term,stable anti-counterfeiting function of leather products. | Jun Xiang Jianxun Lin Zhonghui Wang Shenglin Zhou Zhenya Wang Qiang Yan Yidong Liu Haojun Fan | 2021 | Journal of Leather Science and Engineering2021,3,1: | 4 |
| 4 | Frequent RNF43 mutation contributes to moderate activation of Wnt signaling in colorectal signet-ring cell carcinoma显示文摘Dear Editor,Signet-ring cell carcinoma(SRCC)is a rare subtype of colorectal cancer(CRC)characterized histologically by the accumulation of mucins in the cytoplasm and displacement of nuclei to the cellular periphery,accounting for about 1%CRC(Fig.S1A)(Borger et al.,2007).Compare to common subtypes of CRC,such as adenocarcinoma(AC)and mucinous adenocarcinoma(MAC),SRCC is associated with aggressive behaviors and younger age at presentation(Kang et al.,2005;Sung et al.,2008;Nitsche et al.,2013;Hugen et al.,2014;Inamura et al.,2015).A retrospective analysis of CRC patient's data at Fudan University Shanghai Cancer Center(FUSCC)also indicated a worse overall and disease-free survival of SRCC patients(Fig.S1B and S1C,Table S1). | Yaqi Li Jian Li Renjie Wang Long Zhang Guoxiang Fu Xueying Wang Yebin Wang Chuantao Fang Dandan Zhang Duo Du Xiaoji Ma Mengxue Pan Qiang Guo Xiaoya Xu Xiang Hu Yi Zhou Shaobo Mo Huijun Wang Jianjun Gao Shenglin Huang Yun Liu Sanjun Cai Guoqiang Hua Junjie Peng Fa-Xing Yu | 2020 | Protein & Cell2020,11,4: | 2 |
| 5 | Flag-Transitive Point-Primitive(v, k, 4)-Symmetric Designs with PSL_n(q) as Socle显示文摘Let D be a nontrivial symmetric(v, k, 4) design, and G ≤ Aut(D) be flag-transitive and point-primitive with PSL_n(q) as socle. Then D is a 2-(15, 8, 4) symmetric design and Soc(G) = PSL_2(9). | Yan ZHU Shenglin ZHOU | 2018 | Journal of Mathematical Research with Applications2018,38,1: | 1 |
| 6 | Study of piezoelectric ceramic materials for hightemperature and high-frequency applications显示文摘 | Jiang Shenglin Zhou Dongxiang Gong Shuping | 1998 | Sensor and Actuators1998,,69: | 1 |
| 7 | DNA methylation affects photoperiodic tuberization in potato (Solanum tuberosum L.) by mediating the expression of genes related to the photoperiod and GA pathways显示文摘Overcoming short-day-dependent tuberization to adapt to long-day conditions is critical for the widespread geographical success of potato.The genetic pathways of photoperiodic tuberization are similar to those of photoperiodic flowering.DNA methylation plays an important role in photoperiodic flowering.However,little is known about how DNA methylation affects photoperiodic tuberization in potato.Here,we verified the effect of a DNA methylation inhibitor on photoperiodic tuberization and compared the DNA methylation levels and differentially methylated genes(DMGs)in the photoperiodic tuberization process between photoperiod-sensitive and photoperiod-insensitive genotypes,aiming to dissect the role of DNA methylation in the photoperiodic tuberization of potato.We found that a DNA methylation inhibitor could promote tuber initiation in strict short-day genotypes.Whole-genome DNA methylation sequencing showed that the photoperiod-sensitive and photoperiod-insensitive genotypes had distinct DNA methylation modes in which few differentially methylated genes were shared.Transcriptome analysis confirmed that the DNA methylation inhibitor regulated the expression of the key genes involved in the photoperiod and GA pathways to promote tuber initiation in the photoperiod-sensitive genotype.Comparison of the DNA methylation levels and transcriptome levels identified 52 candidate genes regulated by DNA methylation that were predicted to be involved in photoperiodic tuberization.Our findings provide a new perspective for understanding the relationship between photoperiod-dependent and GA-regulated tuberization.Uncovering the epigenomic signatures of these pathways will greatly enhance potato breeding for adaptation to a wide range of environments. | Yanjun Ai Shenglin Jing Zhengnan Cheng Botao Song Conghua Xie Jun Liu Jun Zhou | 2021 | Horticulture Research2021,8,1: | 1 |
| 8 | Cable-Strengthened C2 Pedicle Screw Fixation in the Treatment of Congenital C2-3 Fusion, Atlas Occipitalization, and Atlantoaxial Dislocation显示文摘 | Shenglin Wang Chao Wang Huijie Leng Weidong Zhao Ming Yan Haitao Zhou | 2012 | Neurosurgery2012,,5: | 1 |
| 9 | Study of piezoelectric ceramic material for high-temperature and high-frequency applications显示文摘 | Jiang Shenglin Zhou Dongxlang Gong Shuping | 1998 | Sensors and Actuators A1998,,69: | 1 |
| 10 | Interobserver and intraobserver reliability of the cervicomedullary angle in a normal adult population显示文摘 | Shenglin Wang Chao Wang Peter G. Passias Gang Li Ming Yan Haitao Zhou | 2009 | European Spine Journal2009,,9: | 1 |
| 11 | Overexpression of IbSINA5 Increases Cold Tolerance through a CBF SINA-COR Mediated Module in Sweet Potato显示文摘Seven in absentia(SINA)family proteins play a central role in plant growth,development and resistance to abiotic stress.However,their biological function in plant response to cold stress is still largely unknown.In this work,a seven in absentia gene IbSINA5 was isolated from sweet potato.Quantitative real-time polymerase chain reaction(qRT-PCR)analyses demonstrated that IbSINA5 was ubiquitously expressed in various tissues and organs of sweet potato,with a predominant expression in fibrous roots,and was remarkably induced by cold,drought and salt stresses.Subcellular localization assays revealed that IbSINA5-GFP fusion protein was mainly localized in cytoplasm and nucleus.Overexpression of IbSINA5 in sweet potato led to dramatically improved resistance to cold stress in transgenic plants,which was associated with the up-regulated expression of IbCOR(cold-regulated)genes,increased proline production,and decreased malondialdehyde(MDA)and H2O2 accumulation in the leaves of transgenic plants.Furthermore,transient expression of IbCBF3,a C-repeat binding factor(CBF)gene,in the leaf protoplasts of wild type sweet potato plants up-regulated the expression of both IbSINA5 and IbCOR genes.Our results suggest that IbSINA5 could function as a positive regulator in the cold signaling pathway through a CBF-SINA-COR mediated module in sweet potato,and have a great potential to be used as a candidate gene for the future breeding of new plant species with improved cold resistance. | Shiyang Li Xue-Ao Liu Lizi Zhao Huiqing Huang Bei Li Zhizhong Song Meixia Liang Hongxia Zhang Limin Wang Shenglin Zhou | 2021 | Phyton-International Journal of Experimental Botany2021,90,3: | 1 |
| 12 | Interobserver and intraobserver reliability of the cervicomedullary angle in a normal adult population显示文摘 | Shenglin Wang Chao Wang Peter G. Passias Gang Li Ming Yan Haitao Zhou | 2009 | European Spine Journal2009,,9: | 1 |
| 13 | Classification of Flag-Transitive Primitive Symmetric(v, k, λ) Designs with PSL(2, q) as Socle显示文摘Let D be a nontrivial symmetric(v, k, λ) design, and G be a subgroup of the full automorphism group of D. In this paper we prove that if G acts flag-transitively, pointprimitively on D and Soc(G) = PSL(2, q), then D has parameters(7, 3, 1),(7, 4, 2),(11, 5, 2),(11, 6, 3) or(15, 8, 4). | Delu TIAN Shenglin ZHOU | 2016 | Journal of Mathematical Research with Applications2016,36,2: | 1 |
| 14 | Finite Line-transitive Linear Spaces:Theory and Search Strategies显示文摘纸总结存在理论和分类有限线及物的线性空格,进一步开发理论,并且以启用它的有效应用程序的一个方法组织它。起点是 Camina 和识别线性空格的三种线及物的自守组的第五个作者的一条定理。在二个这些盒子中,组可以是点上的 imprimitive,也就是说,这个组让点集合的一个重要分区不变。在第一个这些盒子,这个组与点及物的简单座石几乎简单,并且可以是点原语,当在第二个盒子中这个组有重要点不及物的正常亚群并且因此毫无疑问是 point-imprimitive 时。这里介绍的理论集中于 point-imprimitive 组。作为一个分类 point-imprimitive,线及物的组,和相应线性空格被给的一个重要应用程序,为它最大的普通除数 gcd (k, v −
1 )≤
8 在 v 是的地方,点的数字,和 k 是线尺寸。这个分类的动机在 1993 来自 Weidong 毒牙和李惠玲的结果,仅仅有有限地许多重要 point-imprimitive,为 gcd 的给定的价值的线及物的线性空格(k, v −1 ) 。分类在强壮得多的限制 k ≤
下面由 Camina 和 Mischke 加强分类8:没有另外的例子产生。纸为未来提供脊梁 point-imprimitive 的基于计算机的分类,有小参数的线及物的线性空格。为进一步的调查的几个建议被做。 | Anton BETTEN Anne DELANDTSHEER Maska LAW Alice C. NIEMEYER Cheryl E. PRAEGER Shenglin ZHOU | 2009 | Acta Mathematica Sinica,English Series2009,25,9: | 1 |
| 15 | Flag-transitive 2-(v, k, λ) symmetric designs with (k, λ) =1 and alternating socle显示文摘 | Yan ZHU Haiyan GUAN Shenglin ZHOU | 2015 | Frontiers of Mathematics in China2015,10,6: | 1 |
| 16 | Study on the Relationship of Seedling Density and Line Spacing to Leaf-stem Ratio, DW/FW Ratio and Grass Yield of Forage Sweet Sorghum显示文摘[Objectives] The aim was to optimize the configuration of seedling density and line spacing of forage sweet sorghum( Sorghum bicolor( L.) Moench)and explore its high-yield cultivation techniques. [Methods] Effects of such two influencing factors as line spacing and seedling density on the leaf-stem ratio,DW/FW ratio and grass yield of forage sweet sorghum were analyzed by using split-plot experiment design experiment method and LSD method of IBM. SPSS. Statistics. v22 statistics software. [Results]Seedling density and line spacing had no obvious effect on the leaf-stem ratio and DW/FW ratio of forage sweet sorghum but had obvious influences on the grass yield. Moreover,the optimal combination of seedling density and line spacing for high yield of forage sweet sorghum was A_2B_4,that is,seedling density was 225 000 plants/hm^2,and line spacing was 40 cm. [Conclusions]The results provided a theoretical basis and technical support for high-yield cultivation techniques of forage sweet sorghum. | Hanzhang ZHOU Huan LIU Haiyan JIA Zhimin WEI Shuhong YUAN Shunguo LI Shenglin HOU | 2017 | Agricultural Biotechnology2017,6,6: | 0 |
| 17 | Potato tonoplast sugar transporter 1 controls tuber sugar accumulation during postharvest cold storage显示文摘Cold-induced sweetening(CIS),the undesirable sugar accumulation in cold-stored potato(Solanum tuberosum L.)tubers,is a severe postharvest issue in the potato processing industry.Although the process of sucrose hydrolysis by vacuolar invertase during potato CIS is well understood,there is limited knowledge about the transportation of sucrose from the cytosol to the vacuole during postharvest cold storage.Here,we report that among the three potato tonoplast sugar transporters(TSTs),StTST1 exhibits the highest expression in tubers during postharvest cold storage.Subcellular localization analysis demonstrates that StTST1 is a tonoplast-localized protein.StTST1 knockdown decreases reducing sugar accumulation in tubers during low-temperature storage.Compared to wild-type,potato chips produced from StTST1-silenced tubers displayed significantly lower acrylamide levels and lighter color after cold storage.Transcriptome analysis manifests that suppression of StTST1 promotes starch synthesis and inhibits starch degradation in cold-stored tubers.We further establish that the increased sucrose content in the StTST1-silenced tubers might cause a decrease in the ABA content,thereby inhibiting the ABA-signaling pathway.We demonstrate that the down-regulation ofβ-amylase StBAM1 in StTST1-silenced tubers might be directly controlled by ABA-responsive element-binding proteins(AREBs).Altogether,we have shown that StTST1 plays a critical role in sugar accumulation and starchmetabolism regulation during postharvest cold storage.Thus,our findings provide a newstrategy to improve the frying quality of cold-stored tubers and reduce the acrylamide content in potato chips. | Tengfei Liu Md Abu Kawochar Shahnewaz Begum Enshuang Wang Tingting Zhou Shenglin Jing Tiantian Liu Liu Yu Bihua Nie Botao Song | 2023 | Horticulture Research2023,10,4: | 0 |
| 18 | Realizing simultaneously excellent energy storage and discharge properties in AgNbO_(3)based antiferroelectric ceramics via La^(3t)and Ta^(5+)co-substitution strategy显示文摘AgNbO_(3)based antiferroelectric(AFE)ceramics have large maximum polarization and low remanent polarization,and thus are important candidates for fabricating dielectric capacitors.However,their energy storage performances have been still large difference with those of lead-based AFEs because of their room-temperature ferrielectric(FIE)behavior.In this study,novel La^(3+)and Ta^(5+)co-substituted AgNbO_(3)ceramics are designed and developed.The introduction of La^(3+)and Ta^(5+)decreases the tolerance factor,reduces the polarizability of B-site cations and increases local structure heterogeneity of AgNbO_(3),which enhance AFE phase stability and refine polarization-electric field(PeE)loops.Besides,adding La^(3+)and Ta^(5+)into AgNbO_(3)ceramics causes the decrease of the grain sizes and the increase of the band gap,which contribute to increased Eb.As a consequence,a high recoverable energy density of 6.79 J/cm3 and large efficiency of 82.1%,which exceed those of many recently reported AgNbO_(3)based ceramics in terms of overall energy storage properties,are obtained in(Ag0.88La0.04)(Nb0.96Ta0.04)O_(3)ceramics.Furthermore,the discharge properties of the ceramic with discharge time of 16 ns and power density of 145.03 MW/cm3 outperform those of many lead-free dielectric ceramics. | Yuqi Zhou Shuaibing Gao Jie Huang Meng Shen Shenglin Jiang Yunbin He Qingfeng Zhang | 2023 | Journal of Materiomics2023,9,2: | 0 |
| 19 | Effects of Planting Density and Row Spacing on Plant Productivity of Autumn Forage Sweet Sorghum in Hebei Province显示文摘[Objective]This study was conducted to investigate the relationship between each of planting density and row spacing and plant productivity of forage sweet sorghum planted in autumn idle land. [Methods]Using split-plot experiment design experiment method and LSD method of IBM. SPSS. Statistics. v22 statistics software,the effects of planting density and row spacing on plant productivity of forage sweet sorghum planted in autumn idle land were compared. [Result]The results showed that the planting density and row spacing had important influences on plant productivity of forage sweet sorghum planted in autumn idle land. Moreover,the optimal combination of plant productivity for A_1B_4,i. e.,under the combination of the planting density of 7. 5 × 104 plants/hm^2 and the row spacing of40 cm,the fresh weight and dry weight per plant were 654. 37 and 147. 11 g/plant,respectively.[Conclusion]The results provided a theoretical basis for the production of forage sweet sorghum in autumn idle land. | Hanzhang ZHOU Huan LIU Haiyan JIA Zhimin WEI Shuhong YUAN Shenglin HOU Shunguo LI | 2018 | Agricultural Biotechnology2018,7,1: | 0 |
| 20 | Spreading fully at the ice-water interface is required for high ice recrystallization inhibition activity显示文摘Although materials for ice recrystallization inhibition(IRI) are essential for the cryopreservation of cells and tissues, there exists no guiding mechanism for the design of such materials. Therefore, the construction of materials for IRI relies on the try-and-error strategy. Herein, through changing the tacticity of hydroxyl groups on poly(vinyl alcohol)(PVA) backbones with the affinities of PVAs to ice unchanged, we experimentally find IRI activity decreases significantly for isotactic PVA in comparison to that of atactic PVA. Molecular dynamics simulation shows atactic PVA spreads fully at the ice-water interface due to its much stronger interaction with water. This indicates atactic PVA can cover more ice surface and possess a higher IRI activity when the same amount of PVAs are used, which is consistent with the results that PVA can cover the same amount of ice surface more efficiently through experimentally measuring the adsorption of PVAs on the ice surface. A guiding mechanism of high active IRI materials can be obtained: only having affinity to ice is not enough to obtain high IRI activity(i.e., only small amount of materials is required to reduce the size of ice crystals to ca.(35±10)μm), IRI agents must also have high affinity to water, i.e., low interfacial energies, to both ice and water. The former is to guarantee the adsorption of the IRI agent on the ice surface, and the latter is required for the IRI agent to spread sufficiently at the ice-water interface. Therefore, each IRI molecule can effectively block the diffusion of water onto the ice surface, and consequently inhibits the growth of ice. A spreading coefficient of IRI agents is therefore introduced to quantitatively assess the capability of IRI agents to spread at the ice-water interface. | Shenglin Jin Lingkang Yin Bin Kong Shuwang Wu Zhiyuan He Han Xue Zhang Liu Qi Cheng Xin Zhou Jianjun Wang | 2019 | Science China Chemistry2019,62,7: | 0 |