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| 1 | Effects of surfactants on graphene oxide nanoparticles transport in saturated porous media显示文摘Transport behaviors of graphene oxide nanoparticles(GONPs) in saturated porous media were examined as a function of the presence and concentration of anionic surfactant(SDBS)and non-ionic surfactant(Triton X-100) under different ionic strength(IS). The results showed that the GONPs were retained obviously in the sand columns at both IS of 50 and200 mmol/L, and they were more mobile at lower IS. The presence and concentration of surfactants could enhance the GONP transport, particularly as observed at higher IS. It was interesting to see that the GONP transport was surfactant type dependent, and SDBS was more effective to facilitate GONP transport than Triton X-100 in our experimental conditions. The advection–dispersion–retention numerical modeling followed this trend and depicted the difference quantitatively. Derjaguin–Landau–Verwey–Overbeek(DLVO)interaction calculations also were performed to interpret these effects, indicating that secondary minimum deposition was critical in this study. | Wei Fan Xuehui Jiang Ying Lu Mingxin Huo Shanshan Lin Zhi Geng | 2015 | Journal of Environmental Sciences2015,27,9: | 6 |
| 2 | Development and utilization of a new chemically-induced soybean library with a high mutation density显示文摘Mutagenized populations have provided important materials for introducing variation and identifying gene function in plants. In this study, an ethyl methanesulfonate(EMS)-induced soybean(Glycine max) population,consisting of 21,600 independent M_2 lines, was developed.Over 1,000 M_(4(5))families, with diverse abnormal phenotypes for seed composition, seed shape, plant morphology and maturity that are stably expressed across different environments and generations were identified. Phenotypic analysis of the population led to the identification of a yellow pigmentation mutant, gyl, that displayed significantly decreased chlorophyll(Chl) content and abnormal chloroplast development. Sequence analysis showed that gyl is allelic to Minn Gold, where a different single nucleotide polymorphism variation in the Mg-chelatase subunit gene(ChlI1a) results in golden yellow leaves. A cleaved amplified polymorphic sequence marker was developed and may be applied to marker-assisted selection for the golden yellow phenotype in soybean breeding. We show that the newly developed soybean EMS mutant population has potential for functional genomics research and genetic improvement in soybean. | Zhongfeng Li Lingxue Jiang Yansong Ma Zhongyan Wei Huilong Hong Zhangxiong Liu Jinhui Lei Ying Liu Rongxia Guan Yong Guo Longguo Jin Lijuan Zhang Yinghui Li Yulong Ren Wei He Ming Liu Nang Myint Phyu Sin Htwe Lin Liu Bingfu Guo Jian Song Bing Tan Guifeng Liu Maiquan Li Xianli Zhang Bo Liu Xuehui Shi Sining Han Sunan Hua Fulai Zhou Lili Yu Yanfei Li Shuang Wang Jun Wang Ruzhen Chang Lijuan Qiu | 2017 | Journal of Integrative Plant Biology2017,59,1: | 6 |
| 3 | Gankyrin promotes tumor growth and metastasis through activation of IL‐6/STAT3 signaling in human cholangiocarcinoma显示文摘 | Tongsen Zheng Xuehui Hong Jiabei Wang Tiemin Pei Yingjian Liang Dalong Yin Ruipeng Song Xuan Song Zhaoyang Lu Shuyi Qi Jiaren Liu Boshi Sun Changming Xie Shangha Pan Yuejin Li Xiaohe Luo Shuai Li Xiang Fang Nishant Bhatta Hongchi Jiang Lianxin Liu | 2014 | Hepatology2014,,: | 2 |
| 4 | 显示文摘 | Sun Yongjiang Wang Li Jiang Xuehui | 2013 | Journal of In- organic Materials2013,28,2: | 1 |
| 5 | Composite electrolytes based on poly(ethylene oxide) and binary ionic liquids for dye-sensitized solar cells显示文摘The sunlight is the largest single available source of clean and renewable energy to ensure human society's sustainable development. Owing to their low production cost and high energy conversion efficiency, dye-sensitized solar cells (DSSCs) have been regarded as good alternatives to conventional photovoltaic devices. Herein, a series of composite electrolytes based on poly(ethylene oxide) (PEO) and the binary ionic liquids 1-propyl-3-methy-imidazolium iodide ([PMIm]I) and 1-ethyl-3-methylimidazolium thiocyanate ([EMIm][SCN]) were prepared and then applied to fabricate six DSSCs. The composite electrolytes were characterized by fourier transform infrared spectroscopy (FTIS), X-ray diffraction (XRD), and electrochemical impedance spectra (EIS). It was shown that the addition of binary ionic liquids would reduce the degree of crystallinity of PEO, thus improving the ionic conductivities of the electrolytes by about 2 orders of magnitude. Investigation on the photovoltaic performances of these DSSCs showed that the fill factor (FF) could reach up to 0.67 and energy conversion efficiency (η) could reach up to 4.04% under AM 1.5 full sunlight (100 mW/cm2). | YU YingHao JIANG Peng WANG FuRong WANG LeFu LI XueHui | 2012 | Science China Chemistry2012,55,8: | 1 |
| 6 | Factors Controlling the Distribution of Transitional Metal Elements in Marine Hydrogenic Ferromanganese Crusts显示文摘A series of selective dissolution experiments were conducted on the hydrogenic ferromanganese crusts collected near Line Island to study the geochemistry of Mn, Fe, Cu, Co, Ni and Ti. Despite of the fact that the very close intergrowth between amorphous ferric oxyhydroxides and δ-MnO2 exists in the hydrogenic ferromanganese crusts, there is no isomorphous substitution between iron and manganese. This is because the two elements in oxides have different crystal chemistry and geochemistry, such assertion being in agreement with the results of selective dissolution experiments. Transitional metal elements such as Cu, Co, Ni and Ti are enriched in different phases, i.e. Ni and Co are incorporated into δ-MnO2 while Cu and Ti are incorporated into ferric oxyhydroxides. The distributions of the elements in amorphous ferric oxyhydroxides and δ-MnO2 are controlled by the existing states of the elements in the seawater and the crystal chemistry and geochemistry of these elements/ions in oxides. | JIANG Xuejun YAO De LN Xuehui ZHAI Shikui | 2009 | Journal of Ocean University of China2009,8,1: | 1 |
| 7 | Toughening of nylon with epoxidised ethylene propylene diene rubber 显示文摘 | Wang Xuehui Zhang Huixuan Jiang Wei | 1998 | Polymer1998,39,12: | 1 |
| 8 | Facile synthesis of zinc ferrite nanoparticles as non-lanthanide T1MRI contrast agents显示文摘 | Wan Jiaqi Jiang Xuehui Li Hui | 2012 | Journal of Materials Chemistry2012,22,13: | 1 |
| 9 | High-level expression and immunogenicity of a porcine circovirus type 2 capsid protein through codon optimization in Pichia pastoris显示文摘 | Yabin Tu Yanqun Wang Gang Wang Jianan Wu Yonggang Liu Shujie Wang Chenggang Jiang Xuehui Cai | 2013 | Applied Microbiology and Biotechnology2013,,7: | 1 |
| 10 | Logic devices based on nucleic acid self-assembly显示文摘Nucleic acids are natural macromolecules with the ability to store and transmit information based on the strict base-pairing principle.Beyond the natural nucleic acid double helixes,various DNA/RNA nanostructures with customized geometries and functionalities have been fabricated.Featured with programmability and sequence-dependent responsiveness,DNA/RNA nanostructures have been employed for the rational design and construction of logic devices.When stimulated by internal molecular triggers and/or external stimuli,these logic gate devices can operate at nanoscale level in complex biological environments,performing logic operations and producing corresponding outputs.In this minireview,we summarize the recent advances of nucleic acid logic devices,which are responsive to various stimuli,including DNA/RNA strands,metal ions,small molecules,peptides,proteins,photo-irradiation,pH changes,and so forth.The applications of these devices in biosensing and biofunction regulation are also included.In the last part of the present study,we discuss the remaining challenges and perspectives of nucleic acid logic devices. | Xuehui Xu Yingxu Shang Fengsong Liu Qiao Jiang Baoquan Ding | 2021 | InfoMat2021,3,10: | 0 |
| 11 | Responses of plant diversity and soil microorganism diversity to nitrogen addition in the desert steppe,China显示文摘Nitrogen(N)deposition is a significant aspect of global change and poses a threat to terrestrial biodiversity.The impact of plant-soil microbe relationships to N deposition has recently attracted considerable attention.Soil microorganisms have been proven to provide nutrients for specific plant growth,especially in nutrient-poor desert steppe ecosystems.However,the effects of N deposition on plant-soil microbial community interactions in such ecosystems remain poorly understood.To investigate these effects,we conducted a 6-year N-addition field experiment in a Stipa breviflora Griseb.desert steppe in Inner Mongolia Autonomous Region,China.Four N treatment levels(N0,N30,N50,and N100,corresponding to 0,30,50,and 100 kg N/(hm2•a),respectively)were applied to simulate atmospheric N deposition.The results showed that N deposition did not significantly affect the aboveground biomass of desert steppe plants.N deposition did not significantly reduce the alfa-diversity of plant and microbial communities in the desert steppe,and low and mediate N additions(N30 and N50)had a promoting effect on them.The variation pattern of plant Shannon index was consistent with that of the soil bacterial Chao1 index.N deposition significantly affected the beta-diversity of plants and soil bacteria,but did not significantly affect fungal communities.In conclusion,N deposition led to co-evolution between desert steppe plants and soil bacterial communities,while fungal communities exhibited strong stability and did not undergo significant changes.These findings help clarify atmospheric N deposition effects on the ecological health and function of the desert steppe. | YE He HONG Mei XU Xuehui LIANG Zhiwei JIANG Na TU Nare WU Zhendan | 2024 | Journal of Arid Land2024,16,3: | 0 |
| 12 | Investigation of the first quasi-rectangular metro tunnel constructed by the 0-θ method显示文摘Quasi-rectangular shield tunneling is a cutting-edge trenchless method for constructing metro tunnels with double tubes,owing to its advantages in saving underground space and reducing ground disturbance.However,the conventional quasi-rectangular shield tunneling method is not applicable when constructing a tunnel without a center pillar,such as a scissor crossover section of a metro line.Therefore,the O-0 tunneling method,which combines the quasirectangular shield and pipe jacking methods,was investigated in this study to solve the aforementioned construction challenges.This study presents a case study of the Sijiqing Station of the Hangzhou Metro Line 9 in China,in which the O-0 method was first proposed and applied.Key techniques such as switching between two types of tunneling modes and the tunneling process control in complex construction environments were investigated.The results demonstrated that the O-0 method can address the technical challenges presented by the post-transition line with a high curvature and a scissors crossover line.In addition,the adoption of the 0-0 method ensured that the transformation between shield tunneling and pipe jacking was safe and efficient.The ground settlement monitoring results demonstrated that the disturbance to the surrounding environment can be limited to a safe level.This case study contributes to the construction technology for a metro tunnel containing both post-transition lines with a small turning radius and a scissors crossover line.A practical construction experience and theoretical guidance were provided in this study,which are of significance for both the industry and academia. | Peinan LI Xue LIU Xi JIANG Xuehui ZHANG Jun WU Peixin CHEN | 2023 | Frontiers of Structural and Civil Engineering2023,17,11: | 0 |
| 13 | A geraniol synthase regulates plant defense via alternative splicing in tea plants显示文摘Geraniol is an important contributor to the pleasant floral scent of tea products and one of the most abundant aroma compounds in tea plants;however,its biosynthesis and physiological function in response to stress in tea plants remain unclear.The proteins encoded by the full-length terpene synthase(CsTPS1)and its alternative splicing isoform(CsTPS1-AS)could catalyze the formation of geraniol when GPP was used as a substrate in vitro,whereas the expression of CsTPS1-AS was only significantly induced by Colletotrichum gloeosporioides and Neopestalotiopsis sp.infection.Silencing of CsTPS1 and CsTPS1-AS resulted in a significant decrease of geraniol content in tea plants.The geraniol content and disease resistance of tea plants were compared when CsTPS1 and CsTPS1-AS were silenced.Down-regulation of the expression of CsTPS1-AS reduced the accumulation of geraniol,and the silenced tea plants exhibited greater susceptibility to pathogen infection than control plants.However,there was no significant difference observed in the geraniol content and pathogen resistance between CsTPS1-silenced plants and control plants in the tea plants infected with two pathogens.Further analysis showed that silencing of CsTPS1-AS led to a decrease in the expression of the defense-related genes PR1 and PR2 and SA pathway-related genes in tea plants,which increased the susceptibility of tea plants to pathogens infections.Both in vitro and in vivo results indicated that CsTPS1 is involved in the regulation of geraniol formation and plant defense via alternative splicing in tea plants.The results of this study provide new insights into geraniol biosynthesis and highlight the role of monoterpene synthases in modulating plant disease resistance via alternative splicing. | Hao Jiang Mengting Zhang Feng Yu Xuehui Li Jieyang Jin Youjia Zhou Qiang Wang Tingting Jing Xiaochun Wan Wilfried Schwab Chuankui Song | 2023 | Horticulture Research2023,10,10: | 0 |
| 14 | Causal Association of Cardiac Function by Magnetic Resonance Imaging with Frailty Index:A Mendelian Randomization Study显示文摘Owing to the susceptibility of conventional observational studies to confounding factors and reverse causation,the causal association between cardiac function and frailty is unclear.We aimed to investigate whether cardiac function has causal effects on frailty.In this study,a two-sample Mendelian randomization(MR)study was conducted using genetic variants associated with cardiac function assessed by magnetic resonance imaging phenotypes as instrumental variables.Genetic variants asso-ciated with cardiac function by magnetic resonance imaging(including seven cardiac function phenotypes)and the frailty index(FI)were obtained from two large genome-wide association studies.MR estimates from each genetic instrument were combined using inverse variance weighted(IVW),weighted median,and MR‒Egger regression methods.We found that the increase in genetically determined stroke volume(beta-0.13,95%CI-0.16 to-0.10,p=1.39E-6),rather than other cardiac phenotypes,was associated with lower FI in MR analysis of IVW after Bonferroni correction.Sensitivity analyses examining potential bias caused by pleiotropy or reverse causality revealed similar findings(e.g.,intercept[SE],-0.008[0.011],p=0.47 by MR‒Egger intercept test).The leave-one-out analysis indicated that the association was not driven by single nucleotide polymorphisms.No evidence of heterogeneity was found among the genetic variants(e.g.,MR‒Egger:Q statistic=14.4,p=0.156).In conclusion,we provided evidence that improved cardiac function could contribute to reducing FI.These findings support the hypothesis that enhancing cardiac function could be an effective prevention strategy for frailty. | Hui Zhang Meng Hao Zixin Hu Yi Li Xiaoxi Hu Xiaoyan Jiang Zuyun Liu Xuehui Sun Xiaofeng Wang | 2022 | Phenomics2022,2,6: | 0 |
| 15 | First report of Muyocopron laterale causing a new leaf disease of Camellia sinensis in China显示文摘Tea plant(Camellia sinensis)diseases are one of the factors that reduce tea production yield and quality.Herein,a new leaf disease of tea plants was observed in tea plantations.A representative isolate was obtained from diseased leaf by the traditional fungus separation method.The isolate identified was confirmed as Muyocopron laterale based on morphological and molecular results and phylogenetic tree analysis.Pathogenicity tests were conducted on tea plant seedlings,and which is fulfilling Koch’s postulates.The disease was first identified in C.sinensis leaves caused by M.laterale in China.In the future,the results of this studies will enrich our knowledge and help control tea leaf disease. | Hao Jiang Mengting Zhang Youjia Zhou Xuehui Li Jiaxun Li Chuankui Song | 2022 | Beverage Plant Research2022,2,1: | 0 |
| 16 | Advances in gas sensors of tetrapyrrolato-rare earth sandwich-type complexes——Commemorating the 100th anniversary of the birth of Academician Guangxian Xu显示文摘In recent years,sandwich-type rare earth tetrapyrrole derivatives,have attracted more and more attention as material for conductimetric sensors.They have not only great chemical stability and processability,but also flexible molecular structure,which is a key to adjustable semiconductor properties.In this mini review,we focus mainly on the development of tetrapyrrolato-rare earth sandwich-type complexes as the semiconducting active layer in the gas sensors published in the last ten years(2010-2020).The main part includes two sections.In the single component gas sensing of sandwich rare earth tetrapyrrole complexes,we describe the influence factors of the single-component semiconducting active layer on the sensing performance of tetrapyrrolato-rare earth sandwich-type complexes,including substituents,central metals and π-conjugate systems.In the multi-component gas sensors,the synergistic effect between tetrapyrrolato-rare earth sandwich-type complex and other materials on improving sensitivity and conductivity has been discussed briefly. | Xiangjie Tang Qi Liu Chuangyu Wei Xuehui Lv Zhicheng Jin Yanli Chen Jianzhuang Jiang | 2021 | Journal of Rare Earths2021,39,2: | 0 |
| 17 | A subpopulation of CD146^(+) macrophages enhances antitumor immunity by activating the NLRP3 inflammasome显示文摘As one of the main tumor-infiltrating immune cell types, tumor-associated macrophages (TAMs) determine the efficacy of immunotherapy. However, limited knowledge about their phenotypically and functionally heterogeneous nature restricts their application in tumor immunotherapy. In this study, we identified a subpopulation of CD146+ TAMs that exerted antitumor activity in both human samples and animal models. CD146 expression in TAMs was negatively controlled by STAT3 signaling. Reducing this population of TAMs promoted tumor development by facilitating myeloid-derived suppressor cell recruitment via activation of JNK signaling. Interestingly, CD146 was involved in the NLRP3 inflammasome-mediated activation of macrophages in the tumor microenvironment, partially by inhibiting transmembrane protein 176B (TMEM176B), an immunoregulatory cation channel. Treatment with a TMEM176B inhibitor enhanced the antitumor activity of CD146+ TAMs. These data reveal a crucial antitumor role of CD146+ TAMs and highlight the promising immunotherapeutic approach of inhibiting CD146 and TMEM176B. | Lin Jing Yunhe An Tanxi Cai Jianquan Xiang Baoming Li Jiang Guo Xinran Ma Ling Wei Yanjie Tian Xiaoyan Cheng Xuehui Chen Zheng Liu Jing Feng Fuquan Yang Xiyun Yan Hongxia Duan | 2023 | Cellular & Molecular Immunology2023,20,8: | 0 |