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| 1 | Roles of a sustained activation of NCED3 and the synergistic regulation of ABA biosynthesis and catabolism in ABA signal production in Arabidopsis显示文摘ABA, acting as a stress signal, plays crucial roles in plant resistance to water stress. Because ABA signal production is based on ABA biosynthesis, the regulation of NCED, a key enzyme in the ABA biosynthesis pathway, is normally thought of as the sole factor controlling ABA signal production. Here we demonstrate that ABA catabolism in combination with a synergistic regulation of ABA biosynthesis plays a crucial role in governing ABA signal production. Water stress induced a significant accumulation of ABA, which exhibited different patterns in detached and attached leaves. ABA catabolism followed a temporal trend of exponential decay for both basic and stress ABA, and there was little difference in the catabolic half-lives of basic ABA and stress ABA. Thus, the absolute rate of ABA catabolism, i.e. the amount of ABA catabolized per unit time, increases with increased ABA accumulation. From the dynamic processes of ABA biosynthesis and catabolism, it can be inferred that stress ABA accumulation may be governed by a synergistic regulation of all the steps in the ABA biosynthesis pathway. Moreover, to maintain an elevated level of stress ABA sustained activation of NCED3 should be required. This inference was supported by further findings that the genes encoding major enzymes in the ABA biosynthesis pathway, e.g. NCED3, AAO3 and ABA3 were all activated by water stress, and with ABA accumulation progressing, the expressions of NCED3, AAO3 and ABA3 remained activated. Data on ABA catabolism and gene expression jointly indicate that ABA signal production is controlled by a sustained activation of NCED3 and the synergistic regulation of ABA biosynthesis and catabolism. | REN HuiBo FAN YiJian GAO ZhiHui WEI KaiFa LI GuiFen LIU Jing CHEN Lin LI BingBing HU JianFang JIA WenSuo | 2007 | Chinese Science Bulletin2007,52,4: | 12 |
| 2 | Chemical characteristics and source apportionment of PM_(2.5) in a petrochemical city: Implications for primary and secondary carbonaceous component显示文摘To study the pollution features and underlying mechanism of PM_(2.5) in Luoyang, a typical developing urban site in the central plain of China, 303 PM_(2.5) samples were collected from April 16 to December 29, 2015 to analyze the elements, water soluble inorganic ions, organic carbon and elemental carbon. The annual mean concentration of PM_(2.5) was 142.3 μg/m^(3), and 75% of the daily PM_(2.5) concentrations exceeded the 75 μg/m^(3). The secondary inorganic ions, organic matter and mineral dust were the most abundant species, accounting for 39.6%, 19.2% and 9.3% of the total mass concentration, respectively. But the major chemical components showed clear seasonal dependence. SO_(4)^(2-) was most abundant specie in spring and summer, which related to intensive photochemical reaction under high O_3 concentration. In contrast, the secondary organic carbon and ammonium while primary organic carbon and ammonium significantly contributed to haze formation in autumn and winter, respectively. This indicated that the collaboration effect of secondary inorganic aerosols and carbonaceous matters result in heavy haze in autumn and winter. Six main sources were identified by positive matrix factorization model: industrial emission, combustion sources, traffic emission, mineral dust, oil combustion and secondary sulfate, with the annual contribution of 24%, 20%, 24%, 4%, 5% and 23%, respectively. The potential source contribution function analysis pointed that the contribution of the local and short-range regional transportation had significant impact. This result highlighted that local primary carbonaceous and precursor of secondary carbonaceous mitigation would be key to reduce PM_(2.5) and O_3 during heavy haze episodes in winter and autumn. | Guangxuan Yan Puzhen Zhang Jie Yang Jingwen Zhang Guifen Zhu Zhiguo Cao Jing Fan Zirui Liu Yuesi Wang | 2021 | Journal of Environmental Sciences2021,33,5: | 6 |
| 3 | Bioinformatics analysis for structure and function of CPR of Plasmodium falciparum显示文摘Objective:To analyse the structure and function of NADPH-cytochrome p450 reductase(CYPOR or CPR) from Plasmodium falciparum(Pf),and to predict its’ drug target and vaccine target. Methods:The structure,function,drug target and vaccine target of CPR from Plasmodium falciparum were analyzed and predicted by bioinformatics methods.Results:PfCPR,which was older CPR,had close relationship with the CPR from other Plasmodium species,but it was distant from its hosts,such as Homo sapiens and Anopheles.PfCPR was located in the cellular nucleus of Plasmodium falciparum.335aa-352aa and 591aa - 608aa were inserted the interior side of the nuclear membrane,while 151aa-265aa was located in the nucleolus organizer regions.PfCPR had 40 function sites and 44 protein-protein binding sites in amino acid sequence.The teriary structure of laa-700aa was forcep-shaped with wings.15 segments of PfCPR had no homology with Homo sapien CPR and most were exposed on the surface of the protein.These segments had 25 protein-protein binding sites.While 13 other segments all possessed function sites. Conclusions:The evolution or genesis of Plasmodium falciparum is earlier than those of Homo sapiens.PfCPR is a possible resistance site of antimalarial drug and may involve immune evasion, which is associated with parasite of sporozoite in hepatocytes.PfCPR is unsuitable as vaccine target,but it has at least 13 ideal drug targets. | Zhigang Fan Lingmin Zhang Guogang Yan Qiang Wu Xiufeng Gan Saifeng Zhong Guifen Lin | 2011 | Asian Pacific Journal of Tropical Medicine2011,4,2: | 3 |
| 4 | 为从变形体 berghei 的氮的氧化物 synthase 和类似的蛋白质的结构和功能的生物信息学分析和预言显示文摘 <正>Objective:To search and analyze nitric oxide synthase(NOS) and similar proteins from Plasmodium berghei(Pb).Methods:The structure and function of nitric oxide synthase and similar proteins from Plasmodium berghei were analyzed and predicted by bioinformatics. Results:P6NOS were not available,but nicotinamide adenine dinucleotide 2’-phosphate reduced tetrasodium(NADPH)-cytochrome p450 reductase(CPR) were gained.PiCPR was in the nucleus of Plasmodium berghei,while 134aa-229aa domain was localize in nucleolar organizer. The amino acids sequence of P6CPR had the closest genetic relationship with Plasmodium vivax showing a 73%homology.The tertiary structure of PbCPR displayed the forcep-shape with wings,but no wings existed in the tertiary structure of its’ host,Mus musculus(Mm).137aa-200aa, 201aa-218aa,220aa-230aa,232aa-248,269aa-323aa,478aa-501aa and 592aa-606aa domains of P6CPR showed no homology with MmCPRs’,and all domains were exposed on the surface of the protein.Conclusions:NOS can’t be found in Plasmodium berghei and other Plasmodium species.PbCPR may be a possible resistance site of antimalarial drug,and the targets of antimalarial drug and vaccine.It may be also one of the mechanisms of immune evasion.This study on Plasmodium berghei may be more suitable to Plasmodium vivax.And137aa-200aa, 201aa-218aa,220aa-230aa,232aa-248,269aa-323aa,478aa-501aa and 592aa-606aa domains of PbCPR are more ideal targets of antimalarial drug and vaccine. | Zhigang Fan Gang Lv Lingmin Zhang Xiufeng Gan Qiang Wu Saifeng Zhong Guogang Yan Guifen Lin | 2011 | Asian Pacific Journal of Tropical Medicine2011,4,1: | 2 |
| 5 | Phase transition behaviour and eleetromecbanical prop- erties of (Na1/2 Bi1/2 ) TiO3 KNbO3 lead-free piezoelectric ceramics显示文摘 | Fan Guifen Lu Wenzhong Wang Xiaohong | 2008 | Journal of Physics : D(Applied Physics)2008,41,03: | 1 |
| 6 | On-line solid-phase extraction using alizarin violet functionalized silica gel for determination of trace lead in environmental samples and wastewater by sequential injection spectrophotometry显示文摘Trace of Pb(Ⅱ) has been on-line separated and enriched from environmental samples and wastewater by using the self-made alizarin violet functionalized silica gel micro-column coupling with a sequential injection sampling technology. The determination is based on the color reaction of Pb(Ⅱ) with iodide and crystal violet to form an ionic association complex in the presence of polyvinyl alcohol and hydrochloric acid. The use of the microcolumn can prevent the interference of most familiar metal ions, and therefore improve the selectivity and sensitivity of this analytical technique. The proposed method was used for the determination of Pb(Ⅱ) in environmental samples and wastewater. No statistically significant difference was observed between the results determined by the present method and atomic absorption spectrometry. | FAN Jing, ZHU GuiFen, WANG HaiBo & WANG JianJi Henan Key Laboratory for Environmental Pollution Control Key Laboratory for Yellow and Huai River Water Environmental and Pollution Control, Ministry of Education School of Chemical and Environmental Sciences, Henan Normal University, Xinxiang 453007, China | 2011 | Science China Chemistry2011,54,6: | 0 |