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8篇 您的检索式:作者名="HU Dagang"
    题名 作者 年代 出处 被引量
1Molecular Cloning and Expression Analysis of a Hexokinase Gene,MdHXK1 in Apple显示文摘A hexokinase gene named MdHXK1(MDP0000309677) was cloned from ‘Gala' apple(Malus × domestica Borkh.). Sequence analysis showed that the MdHXK1 gene was 1 497 bp long and encoded 499 amino acids. The predicted molecular mass of this protein was 54.05 kD, and the pI was 5.76. A phylogenetic tree indicated apple MdHXK1 exhibited the highest sequence similarity to Pyrus bretschneideri PbHXK1. Analysis of the functional domain showed that the MdHXK1 protein included two conserved kinase domains. The prediction of subcellular localization suggested that the MdHXK1 protein was mainly localized in the cytoplasm. There was an indication that MdHXK1 existed as one copy in the apple genome by Southern blotting. Silico analysis suggested that the promoter sequence contained several typical cis-acting elements, including defense, sugar signaling and phytohormone responsive elements. Quantitative real-time PCR analysis demonstrated that the MdHXK1 gene was mainly expressed in stem and flower tissues. During the development of apple fruits, the expression of the MdHXK1 gene initially increased and then decreased. The changes on Glc phosphorylation relative activity and glucose concentration showed the same trend. In addition, the expression of this gene was induced by salt stress, low temperature, and abscisic acid(ABA). Finally, we obtained and purified the fused MdHXK1 protein by recombinant prokaryotic expression. Studies have demonstrated that MdHXK1 may participate in sugar metabolism in apple fruits. Enzyme encoded by MdHXK1 is a key factor in the mediation of sugar accumulation. Recently,researchers on hexokinase at home and abroad mainly focused on model plants, such as Arabidopsis, tobacco and rice, but orchard fruit like apple were underresearched. Our research established the foundation for the further study of the functions of MdHXK1.ZHAO Jin SUN Meihong HU Dagang HAO Yujin 2016Horticultural Plant Journal2016,2,2:4
2Viscoelasticity of Asphalt Modified With Packaging Waste Expended Polystyrene显示文摘In view of environmental and economic aspect,asphalt was modified with recycled packaging waste expended polystyrene(WEPS)instead of common polymer.The differential scanning calorimetry(DSC),rotational viscometer and dynamic shear rheology(DSR)were used to analyze and evaluate the viscoelasticity of modified asphalt.Results indicate that the sensitivity of modified asphalt to temperature is decreased while the rut resistance of asphalt is increased.In addition,the viscoelasticity of asphalt is improved after the modification with WEPS.Besides,the modified asphalt has high viscosity at low temperature and low viscosity at high temperature,which is favorable for construction.Changqing Fang Linna Jiao Jingbo Hu Qian Yu Dagang Guo Xing Zhou Ruien Yu 2014Journal of Materials Science & Technology2014,30,9:3
3Genome-Wide Identification, Characterization, and Expression Analysis of Calmodulin-Like Proteins(CMLs) in Apple显示文摘Calcium(Ca^(2+)), a crucial second messenger in plants, is involved in diverse signaling pathways including biotic and abiotic stress responses. However, the functions of most calcium sensors including calcium-dependent protein kinases(CDPKs), calmodulins(Ca Ms), calmodulinlike proteins(CMLs), and calcineurin B-like proteins(CBLs) remain limited in plants, particularly in woody plants. Currently, a total of 83 CMLs and seven Ca Ms were discovered in the apple genome in this study. Functional domain analysis showed that these CMLs and Ca Ms contain a highly conserved EF-hand motif. q RT-PCR assays indicated that these CMLs were expressed ubiquitously in apple, including in the roots, stems,leaves, flowers, and fruits, and also possessed spatial specificity. Finally, most of these CMLs were induced by hormonal and abiotic stress, suggesting their potential roles in the regulation of growth, development, and the stress response in apple. In summary, our findings provide potential evidence that apple CMLs may be involved in abiotic stress and the regulation of plant growth and development.ZHANG Quanyan LIU Xiaojuan LIU Xin WANG Jiahui YU Jianqiang HU Dagang HAO Yujin 2017Horticultural Plant Journal2017,3,6:3
4Basic helix-loop-helix(bHLH)transcription factor MdbHLH3 negatively affects the storage performance of postharvest apple fruit显示文摘The storage period of fleshy fruits greatly affects their quality and selection,and is largely controlled by genetic factors.Therefore,it is imperative to elucidate how genetic factors affect fruit ripening and its storage.Here,we evaluated the postharvest storage properties of the basic helix-loop-helix(bHLH)transcription factor MdbHLH3-overexpressing transgenic Royal gala apple fruits.During storage,the contents of starch,malic acid,fructose,glucose,and sucrose in fruits of three MdbHLH3 transgenic lines were always higher than those of the wild-type(WT)control.Interestingly,the sugar-acid ratio also showed the same trend during fruit storage.Additionally,the fruit firmness decreased with increasing storage time,and the contents of cell wall components such as water-soluble pectin and cellulose in transgenic fruits were higher than those in control fruits,while the firmness of transgenic fruits was lower than that in WT control fruits.Though the ethylene release rate in both showed the same trend(firstly increasing,then decreasing,and finally peaking)in 90-day stored fruits,transgenic apples had higher ethylene levels than the WT control throughout storage.Furthermore,the activities of membrane peroxidase,antioxidant enzymes,and fruit ripening enzymes in all transgenic fruits were significantly higher than those in the WT control.Thus,our findings show how MdbHLH3 negatively regulates and reduces apple storage time.This may prove useful for not only developing biotechnological strategies,but also support traditional breeding programs,to help improve the storage time of fleshy fruits.Wenyan Wang Jianqiang Yu Mengchi Du Jiahui Wang Dagang Hu 2022Horticultural Plant Journal2022,8,6:2
5Molecular cloning and expression analysis of the Rf-m candidate genes encoding pentatricopeptide repeat proteins in soybean显示文摘Cytoplasmic male sterility(CMS)-restorer system is a useful tool to exploit heterosis in soybean.The major restorer gene for the M-type CMS is known as Rf-m,located in the 162.4-kb region on chromosome 16.Sequence analysis has revealed that the Rf-m locus in Glycine max consists of seven penta tricopeptide repeat(GmPPR)genes.The deduced amino acid sequences contain 8 to 14 PPR motifs,and a phylogenetic analysis grouped these GmPPR proteins into two PPR subfamilies:Glyma.16G161800 belongs to the PLS subfamily,and the P subfamily consists.of Glyma.16G161900,Glyma 16G162000,Glyma.16G162100,Glyma.16G162700,Glyma.16G162800,and Gly-ma 16G163100.The phylogenetic analysis of seven GmPPR proteins and 27 other plant PPR proteins also showed that proteins in the same subfamilies cluster together.Comparative sequence analysis was conducted using the seven Rf-m candidate GmPPR genes from the sterile line W931A,the maintainer line W931B,and the restorer line WR016,the result showed that Glyma 16G161900 had higher polymorphism than the other candidate genes.Based on real-time quantitative RT-PCR data,all seven GmPPR genes were differentially expressed but showed constitutive expression in roots,stems,leaves,and pollen grains.Additionally,the expression level of Gly-ma 16G161900 in the sterile line W931 A was significantly higher in all tissues than in the restorer line WR016.Taken together,these results suggest that Glyma 16G161900 is the most likely candidate for the restorer gene Rf-m.This study is the first report and analysis of candidate fertility restorer(Rf)genes encoding PPR proteins in soybean.Dagang Wang Shengnan Chen Jiekun Li Qian Wu Guoyu Hu Zhiping Huang 2021Oil Crop Science2021,6,3:1
6Genome-wide identification and expression analyses of homeodomain-leucine zipper family genes reveal their involvement in stress response in apple(Malus×domestica)显示文摘The homeodomain-leucine zipper(HD-Zip)family has been shown to perform amultitude of functions during plant development and stress responses;however,the familymembers and functions have not been identified in apple(Malus×domestica).In this study,83 HD-Zips(MdHDZs)were identified in the apple genome.They were assembled into four subgroups according to the classification in Arabidopsis,where MdHDZs in the same subgroup had similar gene structures and conserved protein motifs.Putative cis-element analysis of MdHDZs promoter regions uncovered numerous elements related to the response of stress and plant hormones.In addition,twelve transcripts of the MdHDZs showed different expression patterns under salt,drought,low temperature and ABA stresses by quantitative reverse transcription-PCR(qRT-PCR)assay.To further explore the function of MdHDZs in apple,MdHDZ3 was selected to verify its function under salt,low temperature and ABA stresses;and genetic transformation was used to obtain MdHDZ3 transgenic apple calli.The results demonstrated that MdHDZ3 increased sensitivity to salt,low temperature and abscisic acid in apple calli,suggesting that MdHDZ3 plays an important role in response to stresses.Subcellular localization and three-dimensional structural analysis revealed that MdHDZ3 was a nuclear-localized protein.Taken together,these findings provide potential information for further identification of HD-Zip proteins in apple.Quanyan Zhang Tao Chen Xun Wang Jiahui Wang Kaidi Gu Jianqiang Yu Dagang Hu Yujin Hao 2022Horticultural Plant Journal2022,8,3:1
7Guest Editorial:Special Issue on Fruit Quality and Healthy Nutrition显示文摘Fleshy fruit is the most important type of horticultural product,playing an irreplaceable role in the improvement of dietary structure,the balance of nutrition,and the intake of physiological active substances such as vitamins in daily life.Fruit quality is the core of the current and future horticultural industry's healthy development and market competitiveness.Yuanyuan Li Dagang Hu 2022Food Quality and Safety2022,6,1:0
8A chronological review of photochemical reactions of ferrioxalate at the molecular level:New insights into an old story显示文摘Owing to its outstanding photoactivity,ferrioxalate is originally used as an actinometer and subsequent work has discovered that photochemistry of ferrioxalate is also fundamentally or technically important in atmospheric chemistry and water treatment.While the overall products generated from photolysis of ferrioxalate are known to include Fe(Ⅱ),a series of oxidizing(e.g.,·OH,O_(2)^(·-)/HO_(2)^(·-))or reducing(C_(2)O_(4)^(·-)/CO_(2)^(·-))radicals and H_(2)O_(2),however,at the molecular level,the primary step of the photoreaction of ferrioxalate remains as an unsolved mystery due to the difficulty in examining such ultrafast processes.Benefiting from the development of time-resolved spectroscopy,this old question has been studied with increasing vigor recently,by means of such ever-more-sophisticated techniques(e.g.,flash photolysis,time-resolved X-ray absorption spectroscopy(XAS),femtosecond infrared(IR)absorption spectroscopy,ultrafast photoelectron spectroscopy(PES)).There are two contrary views on the primary reaction mechanism:(1)Intramolecular electron transfer(ET)precedes the cleavage of the metal-ligand bond;(2)The dissociation of C-C or Fe-O bond occurs before intramolecular ET.Thus,this review presents a comprehensive summary about the overall reaction mechanism and molecular level mechanism of ferrioxalates.In chronological order,we have elaborated two predominant but controversial views from the perspectives of different experimental approaches.Some challenges and research opportunities in this active field are also briefly discussed.Xiaodie Li Meiru Hou Yu Fu Lingli Wang Yifan Wang Dagang Lin Qingchao Li Dongdong Hu Zhaohui Wang 2023Chinese Chemical Letters2023,34,5:0
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