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| 1 | Interaction of cromolyn sodium with human serum albumin : a fluorescence quenching study 显示文摘 | Hu Yanjun Liu Yi Pi Zhenbang | 2005 | Bioorg Med Chem2005,13,24: | 1 |
| 2 | Fate of DDT-related compounds in Bohai Bay and its adjacent Haihe Basin, North China显示文摘 | Yi Wan Jianying Hu Jinling Liu Wei An Su Tao Zhenbang Jia | 2004 | Marine Pollution Bulletin2004,,4: | 1 |
| 3 | GmGPDH12,a mitochondrial FAD-GPDH from soybean, increases salt and osmotic stress resistance by modulating redox state and respiration显示文摘In plants,glycerol-3-phosphate dehydrogenase(GPDH)catalyzes the interconversion of glycerol-3-phosphate(G3P)and dihydroxyacetone phosphate(DHAP)coupled to the reduction/oxidation of the nicotinamide adenine dinucleotide(NADH)pool,and plays a central role in glycerolipid metabolism and stress response.Previous studies have focused mainly on the NAD+-dependent GPDH isoforms,neglecting the role of flavin adenine dinucleotide(FAD)-dependent GPDHs.We isolated and characterized three mitochondrialtargeted FAD-GPDHs in soybean,of which one isoform(GmGPDH12)showed a significant transcriptional response to NaCl and mannitol treatments,suggesting the existence of a major FAD-GPDH isoform acting in soybean responses to salt and osmotic stress.An enzyme kinetic assay showed that the purified GmGPDH12 protein possessed the capacity to oxidize G3P to DHAP in the presence of FAD.Overexpression and RNA interference of GmGPDH12 in soybean hairy roots resulted in elevated tolerance and sensitivity to salt and osmotic stress,respectively.G3P contents were significantly lower in GmGPDH12-overexpressing hair roots and higher in knockdown hair roots,indicating that GmGPDH12 was essential for G3P catabolism.A significant perturbation in redox status of NADH,ascorbic acid(ASA)and glutathione(GSH)pools was observed in GmGPDH12-knockdown plants under stress conditions.The impaired redox balance was manifested by higher reactive oxygen species generation and consequent cell damage or death;however,overexpressing plants showed the opposite results for these traits.GmGPDH12 overexpression contributed to maintaining constant respiration rates under salt or osmotic stress by regulating mRNA levels of key mitochondrial respiratory enzymes.This study provides new evidence for the roles of mitochondria-localized GmGPDH12 in conferring resistance to salt or osmotic stress by maintaining cellular redox homeostasis,protecting cells and respiration from oxidative injury. | Ying Zhao Xin Li Zexin Zhang Wenjing Pan Sinan Li Yun Xing Wanying Xin Zhanguo Zhang Zhenbang Hu Chunyan Liu Xiaoxia Wu Zhaoming Qi Dawei Xin Qingshan Chen | 2021 | The Crop Journal2021,9,1: | 1 |
| 4 | Research on Application of Enhanced Neural Networks in Software Risk Analysis显示文摘This paper puts forward a risk analysis model for software projects using enranced neural networks.The data for analysis are acquired through questionnaires from real software projects. To solve the multicollinearity in software risks, the method of principal components analysis is adopted in the model to enhance network stability.To solve uncertainty of the neural networks structure and the uncertainty of the initial weights, genetic algorithms is employed.The experimental result reveals that the precision of software risk analysis can be improved by using the erhanced neural networks model. | Zhenbang Rong Juhua Chen Mei Liu Yong Hu | 2006 | 南昌工程学院学报2006,25,2: | 0 |
| 5 | Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning显示文摘A knowledge of the adsorption and desorption behavior of sorbates on surface adsorptive site(SAS)is the key to optimizing the chemical reactivity of catalysts.However,direct identification of the chemical reactivity of SASs is still a challenge due to the limitations of characterization techniques.Here,we present a new pathway to determine the kinetics of adsorption/desorption on SASs of graphene oxide(GO)based on total internal reflectance fluorescence microscopy.The switching on and off of the fluorescent signal of SAS lit by carbon dots(CDs)was used to trace the adsorption process and desorption process.We find that sodium pyrophosphate(PPi)could increase the adsorption equilibrium of CDs thermodynamically and promote the substrate-assisted desorption pathway kinetically.At the single turnover level,it was disclosed that the species that can promote desorption may also be an adsorption promoter.Such discovery provides significant guidance for improving the chemical reactivity of the heterogeneous catalyst. | Xiaodan Qu Qiong Hu Zhongqian Song Zhonghui Sun Baohua Zhang Jialing Zhong Xuyou Cao Yuanjin Liu Bolin Zhao Zhenbang Liu Yujie Shen Yu Bao Zhenxin Wang Yuwei Zhang Li Niu | 2021 | The Innovation2021,2,3: | 0 |
| 6 | Isolation, Identification and Pathogenicity Evaluation of Pathogens of Soybean Bacterial Diseases显示文摘In order to research soybean bacterial diseases in Heilongjiang Province,a bacterial strain was isolated from diseased leaves of Suinong 14 collected from Harbin Yanjiagang farm. The pathogen had been carried out antibiotic resistance identification,molecular identification,re-inoculation identification and pathogenicity identification respectively. By Gram staining,pathogen inoculation test,16 S r DNA molecular identification,the pathogen was determined as Pseudomonas syringae and named Psgneau 2. The isolated strain presented resistance to 25,50 and 100 μg/m L ampicillin and carbenicillin,but susceptible to spectinomycin,rifampicin,kanamycin,gentamicin,tetracycline and chloramphenicol. Ten soybean varieties were inoculated with Psgneau 2,in which Suinong 14 was more susceptible than other varieties and Hefeng 35 presented higher resistance to Psgneau 2. | Zhang Hui Yu Renjing Zou Jianan Xin Dawei Hu Zhenbang Zhang Yong Liu Chunyan Chen Qingshan | 2016 | Plant Diseases and Pests2016,7,5: | 0 |
| 7 | A soybean NAC homolog contributes to resistance to Phytophthora sojae mediated by dirigent proteins显示文摘Phytophthora sojae infection severely impairs soybean production. We previously identified a dirigent protein, Gm DRR1(Glycine max Disease Resistant Response 1), that increases soybean resistance to P.sojae. However, the molecular basis of Gm DRR1 function remained largely uncharacterized. In the present study, analysis of Gm DRR1-RNAi, Gm DRR1-overexpressing, and CRISPR/Cas9-derived Gmdrr1 mutant lines revealed that Gm DRR1 expression significantly restricted P. sojae growth. Combining coimmunoprecipitation with liquid chromatography–tandem mass spectrometry revealed a Gm DRR1-interacting protein, Gm DRR2, which is homologous to Gm DRR1. An E-coniferyl alcohol coupling assay indicated that Gm DRR1 promotes the synthesis of(+)-pinoresinol, which helps to protect plants from P. sojae. The Gm NAC1(Glyma.05 G025500) transcription factor bound to the Gm DRR1 promoter both in vitro and in vivo to upregulate Gm DRR1 expression. Soybean resistance to P. sojae was increased by overexpression of Gm NAC1. Our findings suggest a novel signaling pathway involving a NAC transcription factor that mediates soybean resistance to P. sojae. Specifically, Gm NAC1 directly induces Gm DRR1 expression to increase resistance of soybean plants to P. sojae. | Guolong Yu Jianan Zou Jinhui Wang Rongsheng Zhu Zhaoming Qi Hongwei Jiang Zhenbang Hu Mingliang Yang Ying Zhao Xiaoxia Wu Chunyan Liu Candong Li Xue Yang Zhendong Zhu Qingshan Chen Yongfu Fu Dawei Xin | 2022 | The Crop Journal2022,10,2: | 0 |
| 8 | Effective Therapy to Treat Prolapse of Lumbar Intravertibral Disc显示文摘EffectiveTherapytoTreatProlapseofLumbarIntravertibralDisc¥HuZhenbang(JinhuHospital,ShundeCity,GuangdongProvince)Theauthersamm... | Hu Zhenbang(Jinhu Hospital,Shunde City,Guangdong Province) | 1995 | 中国针灸1995,15,S2: | 0 |
| 9 | Genome-wide analysis of soybean DnaJA-family genes and functional characterization of GmDnaJA6 responses to saline and alkaline stress显示文摘Plant Dna JA proteins act as molecular chaperones in response to environmental stressors.The purpose of this study was to characterize the function and regulatory mechanisms of Dna JA genes in soybean.Gene expression profiles in various soybean tissues at various stages of development indicated that Gm Dna JAs function in the coordination of stress and plant hormone responses.Gm Dna JA6 was identified as a candidate regulator of saline and alkaline stress resistance and Gm Dna JA6 overexpression lines showed increased soybean saline and alkaline tolerance.Dna J interacted with Hsp70,and Gm Hsp70 increased the saline and alkaline tolerance of plants with chimeric soybean hairy roots. | Binshuo Zhang Zhen Liu Runnan Zhou Peng Cheng Haibo Li Zhiyang Wang Ying Liu Mingyang Li Zhenqing Zhao Zhenbang Hu Qingshan Chen Xiaoxia Wu Ying Zhao | 2023 | The Crop Journal2023,11,4: | 0 |