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E8,E 10-12∶OH对梨小食心虫性诱剂的增效作用及其与信息素结合蛋白和普通气味结合蛋白的结合机制 被引量:1
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作者 李春沁 刘彦飞 +4 位作者 胡梓寒 陈秀琳 李伯辽 罗坤 李广伟 《昆虫学报》 CAS CSCD 北大核心 2024年第7期909-922,共14页
【目的】(反,反)-8,10-十二碳二烯-1-醇[(8 E,10E)-dodecadien-1-ol,E8,E 10-12∶OH]是苹果蠹蛾Cydia pomonella的主要性信息素成分,对梨小食心虫Grapholita molesta性诱剂具有引诱增效作用。本研究旨在测定E8,E 10-12∶OH对梨小食心虫... 【目的】(反,反)-8,10-十二碳二烯-1-醇[(8 E,10E)-dodecadien-1-ol,E8,E 10-12∶OH]是苹果蠹蛾Cydia pomonella的主要性信息素成分,对梨小食心虫Grapholita molesta性诱剂具有引诱增效作用。本研究旨在测定E8,E 10-12∶OH对梨小食心虫性诱剂的增效能力,确定主要结合E8,E 10-12∶OH的信息素结合蛋白(pheromone binding proteins,PBPs)和普通气味结合蛋白(general odorant binding proteins,GOBPs)。【方法】利用触角电位(electroantennogram,EAG)仪测定梨小食心虫雄成虫对0.002,0.02,0.2,2,20,200和2000μg E8,E 10-12∶OH激发的EAG反应;利用田间诱集试验测定E8,E 10-12∶OH对梨小食心虫性诱剂的增效能力;利用荧光竞争结合实验测定梨小食心虫信息素结合蛋白GmolPBP1,GmolPBP2和GmolPBP3及普通气味结合蛋白GmolGOBP1,GmolGOBP2和GmolGOBP3与E8,E 10-12∶OH的抑制常数K i;利用分子动力学模拟的方法预测GmolGOBP2结合E8,E 10-12∶OH的关键氨基酸;利用定点突变和荧光竞争结合实验验证GmolGOBP2结合E8,E 10-12∶OH的关键氨基酸残基及弱相互作用力。【结果】梨小食心虫雄成虫对E8,E 10-12∶OH表现出EAG反应,雄成虫对2000μg E8,E 10-12∶OH的EAG反应值最高[(0.57±0.14)mV]。在梨小食心虫性诱剂中添加200μg E8,E 10-12∶OH时,增效效果最佳,增效倍数达2.46倍。GmolGOBP2结合E8,E 10-12∶OH的能力最强[K i=(1.92±0.05)μmol/L],是结合E8,E 10-12∶OH的主要OBP。分子动力学模拟表明GmolGOBP2的Phe18,Ile100,Glu104,Val117和Phe124结合E8,E 10-12∶OH的自由能最低,分别为-1.18,-1.33,-3.34,-1.19和-1.58 kj/kg,预测是GmolGOBP2结合E8,E 10-12∶OH的重要位点,将以上5个残基定点突变为丙氨酸Ala后,突变体蛋白E104A和F124A失去了结合E8,E 10-12∶OH的能力,表明Glu104和Phe124是GmolGOBP2结合E8,E 10-12∶OH的关键氨基酸。【结论】E8,E 10-12∶OH是开发梨小食心虫高效性诱剂的理想增效剂,GmolGOBP2在梨小食心虫识别种间性信息素E8,E 10-12∶OH的过程中发挥着重要作用,Glu104和Phe124是GmolGOBP2结合E8,E 10-12∶OH的关键氨基酸残基。 展开更多
关键词 梨小食心虫 苹果蠹蛾 性信息素 协同增效 嗅觉
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Metal-organic framework-derived porous carbon for the advanced aqueous zinc-ion hybrid capacitor
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作者 LIU Wei-fang hu zi-han ZHANG Qi 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2268-2279,共12页
Aqueous zinc ion hybrid capacitors(ZIHCs)are considered one of the most promising electrochemical energy storage systems due to their high safety,environmental friendliness,low cost,and high power density.However,the ... Aqueous zinc ion hybrid capacitors(ZIHCs)are considered one of the most promising electrochemical energy storage systems due to their high safety,environmental friendliness,low cost,and high power density.However,the low energy density and the lack of sustainable design strategies for the cathodes hinder the practical application of ZIHCs.Herein,we design the N and O co-doped porous carbon cathode by annealing metal-organic framework(ZIF-8).ZIF-8 retains the original dodecahedral structure with a high specific surface(2814.67 m^(2)/g)and I_(G)/I_(D) ratio of 1.0 during carbonization and achieves self-doping of N and O heteroatoms.Abundant defect sites are introduced into the porous carbon to provide additional active sites for ion adsorption after the activation of carbonized ZIF-8 by KOH treatment.The ZIHCs assembled with modified ZIF-8 as the cathode and commercial zinc foil as the anode show an energy density of 125 W∙h/kg and a power density of 79 W/kg.In addition,this ZIHCs device achieves capacity retention of 77.8%after 9000 electrochemical cycles,which is attributed to the diverse pore structure and plentiful defect sites of ZIF-8-800(KOH).The proposed strategy may be useful in developing high-performance metal-ion hybrid capacitors for large-scale energy storage. 展开更多
关键词 zinc ion hybrid capacitor CATHODE metal-organic framework(ZIF-8) KOH activation
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