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21篇 您的检索式:作者名="Huijuan Hou"
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1The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and Adaptation显示文摘Tea plant is an important economic crop,which is used to produce the world's oldest and most widely consumed tea beverages.Here,we present a high-quality reference genome assembly of the tea plant(Camellia sinensis var.sinensis)consisting of 15 pseudo-chromosomes.LTR retrotransposons(LTR-RTs)account for 70.38%of the genome,and we present evidence that LTR-RTS play critical roles in genome size expansion and the transcriptional diversification of tea plant genes through preferential insertion in promoter regions and introns.Genes,particularly those coding for terpene biosynthesis pro-teins,associated with tea aroma and stress resistance were significantly amplified through recent tandem duplications and exist as gene clusters in tea plant genome.Phylogenetic analysis of the sequences of 81 tea plant accessions with diverse origins revealed three well-differentiated tea plant populations,support-ing the proposition for the southwest origin of the Chinese cultivated tea plant and its later spread to western Asia through introduction.Domestication and modern breeding left significant signatures on hundreds of genes in the tea plant genome,particularly those associated with tea quality and stress resis-tance.The genomic sequences of the reported reference and resequenced tea plant accessions provide valuable resources for future functional genomics study and molecular breeding of improved cul-tivars of tea plants.Enhua Xia Wei Tong Yan Hou Yanlin An Linbo Chen Qiong Wu Yunlong Liu Jie Yu Fangdong Li Ruopei Li Penghui Li Huijuan Zhao Ruoheng Ge Jin Huang Ali Inayat Mallano Yanrui Zhang Shengrui Liu Weiwei Deng Chuankui Song Zhaoliang Zhang Jian Zhao Shu Wei Zhengzhu Zhang Tao Xia Chaoling Wei Xiaochun Wan 2020Molecular Plant2020,13,7:51
2Electrochemical incineration of dimethyl phthalate by anodic oxidation with boron-doped diamond electrode显示文摘The anodic oxidation of aqueous solutions containing dimethyl phthalate (DMP) up to 125 mg/L with sodium sulfate (Na2SO4) as supporting electrolyte within the pH range 2.0-10.0 was studied using a one-compartment batch reactor employing a boron-doped diamond (BDD) as anode. Electrolyses were carried out at constant current density (1.5-4.5 mA/cm2). Complete mineralization was always achieved owing to the great concentration of hydroxyl radical (.OH) generated at the BDD surface. The effects of pH, apparent current density and initial DMP concentration on the degradation rate of DMP, the specific charge required for its total mineralization and mineralization current efficiency were investigated systematically. The mineralization rate of DMP was found to be pH-independent and to increase with increasing applied current density. Results indicated that this electrochemical process was subjected, at least partially, to the mass transfer of organics onto the BDD surface. Kinetic analysis of the temporal change of DMP concentration during electrolysis determined by High Performance Liquid Chromatography (HPLC) revealed that DMP decay under all tested conditions followed a pseudo first-order reaction. Aromatic intermediates and generated carboxylic acids were identified by Gas Chromatography-Mass Spectrometry (GC-MS) and a general pathway for the electrochemical incineration of DMP on BDD was proposed.HOU Yining QU Jiuhui ZHAO Xu LIU Huijuan 2009Journal of Environmental Sciences2009,21,10:5
3Folding of Tubular Waterbomb显示文摘Origami has recently emerged as a promising building block of mechanical metamaterials because it offers a purely geometric design approach independent of scale and constituent material.The folding mechanics of origami-inspired metamaterials,i.e.,whether the deformation involves only rotation of crease lines(rigid origami)or both crease rotation and facet distortion(nonrigid origami),is critical for fine-tuning their mechanical properties yet very difficult to determine for origami patterns with complex behaviors.Here,we characterize the folding of tubular waterbomb using a combined kinematic and structural analysis.We for the first time uncover that a waterbomb tube can undergo a mixed mode involving both rigid origami motion and nonrigid structural deformation,and the transition between them can lead to a substantial change in the stiffness.Furthermore,we derive theoretically the range of geometric parameters for the transition to occur,which paves the road to program the mechanical properties of the waterbomb pattern.We expect that such analysis and design approach will be applicable to more general origami patterns to create innovative programmable metamaterials,serving for a wide range of applications including aerospace systems,soft robotics,morphing structures,and medical devices.Jiayao Ma Huijuan Feng Yan Chen Degao Hou Zhong You 2020Research2020,,1:4
4Species transformation and structure variation of fulvic acid during ozonation显示文摘The species transformation and structure variation of fulvic acid (FA) during ozonation were investi- gated in this study. The molecular weight (MW) distribution, the species of intermediate products and the variation of polar functional groups were studied by ultrafiltration, gas chromatography/mass spectrometry (GC/MS) and titration analyses respectively. The average MW of FA decreased signifi- cantly during ozonation. The amount of polar functional groups (carboxylic and phenolic (ph-OH) groups) per unit DOC (mol/kg C) increased with increasing ozonation time. Furthermore, GC/MS ex- periments demonstrated the formation of polar species (e.g., hexadecanoic acid, benzoic acid and oc- tadecanoic alcohol) and less-polar species (e.g., aliphatic hydrocarbons and butanedioic acid, bis(2-methylpropyl) ester). Electron spin resonance (ESR) measurements proved the presence of ·OH radicals in the ozonation system. Based on our experimental results, it appears that the oxidations by ozone molecule and ·OH radicals were responsible for the transformation of organics (FA and its oxi- dation products) during ozonation. These two oxidants showed significant influence on organics transformation and exhibited different mechanisms contributing to these processes.LI Jing QU JiuHui LIU HuiJuan LIU RuiPing ZHAO Xu HOU YiNing 2008Science China Chemistry2008,51,4:4
5Fabrication and performance of PET mesh enhanced cellulose acetate membranes for forward osmosis显示文摘Polyethylene terephthalate mesh(PET) enhanced cellulose acetate membranes were fabricated via a phase inversion process. The membrane fabrication parameters that may affect the membrane performance were systematically evaluated including the concentration and temperature of the casting polymer solution and the temperature and time of the evaporation, coagulation and annealing processes. The water permeability and reverse salt flux were measured in forward osmosis(FO) mode for determination of the optimal membrane fabrication conditions. The optimal FO membrane shows a typical asymmetric sandwich structure with a mean thickness of about 148.2 μm. The performance of the optimal FO membrane was tested using 0.2 mol/L Na Cl as the feed solution and 1.5 mol/L glucose as the draw solution. The membrane displayed a water flux of 3.47 L/(m2·hr) and salt rejection of95.48% in FO mode. While in pressure retarded osmosis(PRO) mode, the water flux was4.74 L/(m2·hr) and salt rejection 96.03%. The high ratio of water flux in FO mode to that in PRO mode indicates that the fabricated membrane has a lower degree of internal concentration polarization than comparable membranes.Guoliang Li Jun Wang Deyin Hou Yu Bai Huijuan Liu 2016Journal of Environmental Sciences2016,28,7:2
6On the deformation behavior of heterogeneous microstructure and its effect on the mechanical properties of die cast AZ91D magnesium alloy显示文摘Both a conventional flow distributer and an improved one with a flow buffer were applied respectively during the high pressure die casting(HPDC)process,and samples of AZ91D magnesium alloy with different microstructure mainly consisting ofα-Mg grains,β-phase and porosities were obtained.According to the grain orientation analysis,the predominant deformation behavior inα-Mg grains was dislocation slip,supplemented by deformation twinning.Dislocation slip was more difficult to occur in the samples with the improved flow distributer on account of the fact that the size ofα-Mg grains in the microstructure was finer and more uniform.During the in situ tensile deformation test,cracks were observed to initiate from gas-shrinkage pore and island-shrinkage,and two main crack propagation mechanisms,porosity growth and coalescence were found accordingly.When the crack was in contact with theβ-phase,it would pass through and fracture the networkβ-phase,whereas bypass the islandβ-phase by detaching it from the surroundingα-Mg grains.Mechanical property tests showed that the samples with relatively more homogeneous microstructure would perform higher mechanical properties,which was the combined effect of matrixα-Mg grains,β-phase,and porosities.Mengwu Wu Yingying Hou Lin Hua Huijuan Ma Xiaobo Li Shoumei Xiong 2022Journal of Magnesium and Alloys2022,10,7:1
7Application of Kalman filter algorithm in gravity-aided navigation system显示文摘LIU Fanming LI Yan HOU Huijuan 2010Proceedings of the 2011IEEE International Conference on Mechatronics and Automation2010,8,:1
8Oral nano-formulation improves pancreatic islets dysfunction via lymphatic transport for antidiabetic treatment显示文摘Type 2 diabetes mellitus(T2DM)therapy is facing the challenges of long-term medication and gradual destruction of pancreatic isletβ-cells.Therefore,it is timely to develop oral prolonged action formulations to improve compliance,while restoringβ-cells survival and function.Herein,we designed a simple nanoparticle with enhanced oral absorption and pancreas accumulation property,which combined apical sodiumdependent bile acid transporter-mediated intestinal uptake and lymphatic transportation.In this system,taurocholic acid(TCA)modified poly(lactic-co-glycolic acid)(PLGA)was employed to achieve pancreas location,hydroxychloroquine(HCQ)was loaded to execute therapeutic efficacy,and 1,2-dilauroyl-sn-glycero-3-phosphocholine(DLPC)was introduced as stabilizer together with synergist(PLGA-TCA/DLPC/HCQ).In vitro and in vivo results have proven that PLGA-TCA/DLPC/HCQ reversed the pancreatic islets damage and dysfunction,thus impeding hyperglycemia progression and restoring systemic glucose homeostasis via only once administration every day.In terms of mechanism PLGA-TCA/DLPC/HCQ ameliorated oxidative stress,remodeled the inflammatory pancreas microenvironment,and activated PI3K/AKT signaling pathway without obvious toxicity.This strategy not only provides an oral delivery platform for increasing absorption and pancreas targetability but also opens a new avenue for thorough T2DM treatment.Lin Hou Xueyuan Peng Ruiting Wang Yifei Wang Hong Li Huijuan Zhang Yun Zhang Zhenzhong Zhang 2023Acta Pharmaceutica Sinica B2023,13,7:1
9Relationship of energy charge and toxin content of Microcystis aeruginosa in nitrogen-limited or phosphorous-limited cultures显示文摘Ruihua Dai Huijuan Liu Jiuhui Qu Xu Zhao Jia Ru Yining Hou 2007Toxicon2007,,4:1
10Controllable synthesized step-scheme heterojunction of WO_(3)/CuBi_(2)O_(4) decorated WO_(3) plates for visible-light-driven CO_(2) reduction显示文摘Rational design and construction of step-scheme(S-scheme)photocatalyst has received much attention in the field of CO_(2) reduction because of its great potential to solve the current energy and environmental crises.In this study,a series of plate-like WO_(3)/CuBi_(2)O_(4)(WO/CBO)photocatalysts were synthesized.The CO and CH4 yields over optimal composite reached 1,115.8 and 67.2μmol/m2 after 9 h visible light illumination(λ>400 nm),which was higher than those of two pure catalysts in CO_(2) photoreduction.The product yields slightly decreased in the 7th cycling.Besides,the staggered band structure of heterojunction was characterized by diffuse reflectance spectroscopy(DRS)and valence band-X-ray photoelectron spectroscopy(VB-XPS),and a S-scheme charge transfer mechanism was verified by detecting electron spin resonance(ESR)and XPS result about surface composition of WO/CBO catalyst in dark or light.This work may be useful for rational designing of S-scheme photocatalyst and provides some illuminating insights into the S-scheme transfer mechanism.Weina Shi Ji-Chao Wang Xiaowei Guo Xiu Qiao Fang Liu Renlong Li Wanqing Zhang Yuxia Hou Huijuan Han 2022Nano Research2022,15,7:1
11Effects of amino acids on microcystin production of the Microcystis aeruginosa显示文摘Ruihua Dai Huijuan Liu Jiuhui Qu Xu Zhao Yining Hou 2008Journal of Hazardous Materials2008,,2:1
12Removal of Congo red dye from aqueous solution with hydroxyapatite/chitosan composite显示文摘Hou Huijuan Zhou Ronghui Wu Peng 2012Chem Eng J2012,,12:1
13Apo e 4 allele is associated with endothelium-dependent arterial dilation in women with type 2 diabetes显示文摘Xiang Guangda Zhao Linshuang Hou Jie Yue Ling Xiang Huijuan 2005Diabetes Research and Clinical Practice2005,,2:1
14Electro-oxidation of diclofenac at boron doped diamond: kinetics and mechanism 显示文摘ZHAO Xu HOU Yining LIU Huijuan 2009Electrochimica Acta2009,54,17:1
15China's progress in radionuclide migration study over the past decade(2010–2021):Sorption,transport and radioactive colloid显示文摘The radionuclide(RN)migration study is not only helpful to understand environmental behavior of RNs,but also can establish the basis for the safety assessment of geological disposal of high-level radioactive waste(HLW).In the context of China’s HLW disposal,this review briefly summaries the progress of China’s RN migration studies over the past decade regarding three aspects,RN sorption,RN transport and radioactive colloid.Domestic studies from other disciplines(such as geology and environmental science)are also included in this review because they can provide references for the RN migration study.Overall,China has achieved clear progress in RN migration study over the past decade,although large-scaled field experiments are lacked and a gap still exists comparing with the international advanced level.Finally,several suggestions are proposed for future RN migration research in China.Zongyuan Chen Siyuan Wang Huijuan Hou Kang Chen Pengyuan Gao Zhen Zhang Qiang Jin Duoqiang Pan Zhijun Guo Wangsuo Wu 2022Chinese Chemical Letters2022,33,7:1
16Etoposide,dexamethasone,and pegaspargase with sandwiched radiotherapy in early-stage natural killer/T-cell lymphoma:A randomized phase III study显示文摘Methotrexate,etoposide,dexamethasone,and pegaspargase(MESA)with sandwiched radiotherapy is known to be effective for early-stage extranodal natural killer/T-cell lymphoma,nasal type(NKTCL).We explored the efficacy and safety of reduced-intensity,non-intravenous etoposide,dexamethasone,and pegaspargase(ESA)with sandwiched radiotherapy.This multicenter,randomized,phase III trial enrolled patients aged between 14 and 70 years with newly diagnosed early-stage nasal NKTCL from 27 centers in China.Patients were randomly assigned(1:1)to receive ESA(pegaspargase 2,500 IU/m^(2)intramuscularly on day 1,etoposide 200 mg orally,and dexamethasone 40 mg orally on days 2–4)or MESA(methotrexate 1 g/m^(2)intravenously on day 1,etoposide 200 mg orally,and dexamethasone 40 mg orally on days 2–4,and pegaspargase 2,500 IU/m^(2)intramuscularly on day 5)regimen(four cycles),combined with sandwiched radiotherapy.Huijuan Zhong Shu Cheng Xi Zhang Bing Xu Jiayi Chen Xufeng Jiang Jie Xiong Yu Hu Guohui Cui Juying Wei Wenbin Qian Xiaobing Huang Ming Hou Feng Yan Xin Wang Yongping Song Jianda Hu Yuanhua Liu Xuejun Ma Fei Li Chongyang Wu Junmin Chen Li Yu Ou Bai Jingyan Xu Zunmin Zhu Li Liu Xin Zhou Li Huang Yin Tong Ting Niu Depei Wu Hao Zhang Chaofu Wang Binshen Ouyang Hongmei Yi Qi Song Gang Cai Biao Li Jia Liu Zhifeng Li Rong Xiao Luqun Wang Yujie Jiang Yanyan Liu Xiaoyun Zheng Pengpeng Xu Hengye Huang Li Wang Saijuan Chen Weili Zhao 2023The Innovation2023,4,3:0
17Enhancing maize's nitrogen-fixing potential through ZmSBT3, a gene suppressing mucilage secretion∞显示文摘Maize(Zea mays)requires substantial amounts of nitrogen,posing a challenge for its cultivation.Recent work discovered that some ancient Mexican maize landraces harbored diazotrophic bacteria in mucilage secreted by their aerial roots.To see if this trait is retained in modern maize,we conducted a field study of aerial root mucilage(ARM)in 258 inbred lines.We observed that ARM secretion is common in modern maize,but the amount significantly varies,and only a few lines have retained the nitrogen‐fixing traits found in ancient landraces.The mucilage of the high‐ARM inbred line HN5‐724 had high nitrogen‐fixing enzyme activity and abundant diazotrophic bacteria.Our genome‐wide association study identified 17 candidate genes associated with ARM across three environments.Knockouts of one candidate gene,the subtilase family gene ZmSBT3,confirmed that it negatively regulates ARM secretion.Notably,the ZmSBT3 knockout lines had increased biomass and total nitrogen accumulation under nitrogen‐free culture conditions.High ARM was associated with three ZmSBT3 haplotypes that were gradually lost during maize domestication,being retained in only a few modern inbred lines such as HN5‐724.In summary,our results identify ZmSBT3 as a potential tool for enhancing ARM,and thus nitrogen fixation,in maize.Jingyang Gao Peijiang Feng Jingli Zhang Chaopei Dong Zhao Wang Mingxiang Chen Zhongliang Yu Bowen Zhao Xin Hou Huijuan Wang Zhaokun Wu Razia Sultana Jemim Haidong Yu Doudou Sun Pei Jing Jiafa Chen Weibin Song Xuecai Zhang Zijian Zhou Jianyu Wu 2023Journal of Integrative Plant Biology2023,65,12:0
18Optimization of group control strategy and analysis of energy saving in refrigeration plant显示文摘This study proposes a group control system optimization strategy coupled with a refrigeration plant model for a primary pump variable flow system,in order to improve the automation level of the refrigeration plant and maximize the energy saving potential.First,the control variables,optimization objectives,and operational con-straints of the entire system were analyzed.Then,by collecting the operational data for each component and combining these data with theoretical analysis,the sub models were designed and the input parameters,output parameters,and optimization variables of each sub-model were defined.Next,the sub-models were coupled and the control variables of the operational combination,leading to the lowest overall system energy consumption,were obtained using a particle swarm optimization algorithm.Finally,considering a medical building in North China as an example,the application effectiveness of the optimal control strategy of the refrigeration plant was analyzed.The results showed that the energy-savings of the group control system after the optimization of the re-frigerator,chilled water pump,cooling water pump,and cooling tower could reach 9.42,8.04,5.67,and 14.64%,respectively.This is a remarkable energy-savings benefit.The research described in this study also provides some reference for the design of group control systems in refrigeration plants.Tu Daixin Xia Hongwei Yin Huijuan Yu Hao Hou Wen 2022Energy and Built Environment2022,3,4:0
19The ecological adaptability of cloned sheep to free-grazing in the Tengger Desert of Inner Mongolia,China显示文摘Since the birth of the first cloned sheep,somatic cell nuclear transfer technology has been successfully used to clone a variety of mammals.Cloned livestock have no apparent health risks,and the quality and safety of the cloned animal products are similar to non-cloned animals.The social behavior and environmental adaptability of postnatal cloned animals,especially when used for grassland farm production purposes,is unknown.In the present study,the cloned Dorper sheep equipped with GPS location devices were free-grazed in a harsh natural environment similar to conditions commonly experienced by Mongolian sheep.The main findings of this research were as follows.(1)Under free-grazing conditions,the cloned sheep showed excellent climatic and ecological adaptability.In extreme temperature conditions ranging from–30 to 40°C,the cloned sheep maintained acceptable body condition and behaved as other sheep.(2)The cloned sheep quickly adapted from a herd feeding strategy to the harsh environment and quickly exhibited a grazing regimen as other free-grazing sheep.(3)The cloned sheep exhibited free-grazing patterns and social behavior as other sheep.(4)The cloned sheep in the harsh environment thrived and produced healthy lambs.Overall,the cloned Dorper sheep exhibited excellent ecological adaptation,which is an important consideration for breeding meat sheep by cloning.The Dorper sheep readily adapted to the free-grazing conditions on the Mongolian plateau grassland,which attests to their ability to withstand harsh environmental conditions.Xinxin LI Huijuan WANG Guanghua SU Zhuying WEI Chunling BAI Wuni-MENGHE Yanhui HOU Changqing YU Shorgan BOU Guangpeng LI 2014Frontiers of Agricultural Science and Engineering2014,1,3:0
20The“two-pronged”nanosystem to precisely improve lipid metabolism and inflammatory microenvironment for atherosclerotic plaque stabilization显示文摘The rupture of atherosclerosis(AS)vulnerable plaque is the major cause of fatal arterial thrombosis related diseases.The lipid dysbolism and pro-inflammatory microenvironment are considered two main driving factors for plaque rupture.Herein,a“two-pronged”nanosystem LCS-Se/Res was designed to efficiently stabilize AS plaques,by precisely regulating lipid metabolism and inflammatory microenvironment.LCS-Se/Res was constructed with the core of resveratrol(Res)loaded selenium(Se)nanoparticles(NPs),and the shell(LCS)of targeting peptide(LSIPPKA)modified chitosan(CS).This system was stable in blood circulation.When it arrived at the plaque site,LCS-Se/Res could actively recognize the highly expressed lectin-like oxidized low-density lipoprotein receptor 1(LOX-1)receptor and accumulate there.Thereafter,Res was released from LCS-Se nanocarriers in situ by responding to acidic plaque microenvironment.On the one hand,Res increased autophagy flux in damaged endothelial cells by activating cAMP-PKA-AMPK-SIRT1 signaling pathway to promote lipid degradation.Interestingly,LCS-Se also promoted cholesterol efflux to improve lipid metabolism.On the other hand,fixed-point separated Res and LCS-Se synergistically improved plaque inflammatory microenvironment by reversing macrophage phenotype(M1 to M2)and alleviating plaque oxidative stress.Pharmacodynamics result proved that the plaque vulnerability index(VI)decreased from 1.39±0.282 to 0.108±0.02 after LCS-Se/Res treatment.In short,this study provided a new therapeutic strategy for the atherosclerosis through the two-pronged approach.Huijuan Zhang Linyu Gao Mingli Sui Jingjing Wang Yaping Wang Xiangyang Xuan Zhenzhong Zhang Ling Zhu Lin Hou 2023Nano Research2023,16,2:0
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