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《马关条约》与近代中日关系
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作者 臧运祜 《湖南师范大学社会科学学报》 CSSCI 北大核心 2018年第1期125-133,共9页
中日1871年签订《修好条规》,开启了平等国家关系的建构。《马关条约》结束了此前的平等竞争关系,开启了一系列不平等条约的签订和不平等关系的构筑,并在民国初年为北京政府所继承。第一次世界大战爆发后,日本乘机提出独霸中国的"... 中日1871年签订《修好条规》,开启了平等国家关系的建构。《马关条约》结束了此前的平等竞争关系,开启了一系列不平等条约的签订和不平等关系的构筑,并在民国初年为北京政府所继承。第一次世界大战爆发后,日本乘机提出独霸中国的"二十一条",并逼签了"民四条约"。战后虽然被迫归还山东,可不但不废除其"二十一条",反而继续通过不同形式予以扩展。十五年战争期间(1931-1945年),则通过一系列"事变"实施其侵华要求,并通过日汪条约实现了大陆政策。"二十一条"成为民国时期日本对华不平等条约之渊薮。中国政府在对日宣战后废除所有中日条约,伴随着世界反法西斯战争胜利和日本投降,结束了甲午以来近半个世纪的不平等关系。《马关条约》50年的立与废,见证和演化了近代中日关系沧桑巨变的历史过程与现场。 展开更多
关键词 《修好规》 《马关约》 “二十-条” 近代中曰关系
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A robust,integrated platform for comprehensive analyses of acylcoenzyme As and acyl-carnitines revealed chain length-dependent disparity in fatty acyl metabolic fates across Drosophila development 被引量:4
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作者 Sin Man Lam Tianxing Zhou +4 位作者 Jie Li Shaohua Zhang Gek Huey Chua Bowen Li Guanghou Shui 《Science Bulletin》 SCIE EI CAS CSCD 2020年第21期1840-1848,M0004,共10页
Acyl-coenzyme A thioesters(acyl-CoAs)denote a key class of intermediary metabolites that lies at the hub of major metabolic pathways.The great diversity in polarity between short-and long-chain acylCoAs makes it techn... Acyl-coenzyme A thioesters(acyl-CoAs)denote a key class of intermediary metabolites that lies at the hub of major metabolic pathways.The great diversity in polarity between short-and long-chain acylCoAs makes it technically challenging to cover an inclusive range of acyl-CoAs within a single method.Levels of acyl-carnitines,which function to convey fatty acyls into mitochondria matrix forβ-oxidation,indicate the efficiency of mitochondrial import and utilization of corresponding acyl-CoAs.Herein,we report a robust,integrated platform to allow simultaneous quantitation of endogenous acyl-CoAs and acyl-carnitines.Using this method,we monitored changes in intermediary lipid profiles across Drosophila development under control(ND)and high-fat diet(HFD).We observed specific accumulations of medium-chain(C8-C12)and long-chain(≥C16)acyl-carnitines distinct to L3 larval and pupal stages,respectively.These observations suggested development-specific,chain length-dependent disparity in metabolic fates of acyl-CoAs across Drosophila development,which was validated by deploying the same platform to monitor isotope incorporation introduced from labelled 12:0 and 16:0 fatty acids into extra-and intra-mitochondrial acyl-CoA pools.We found that pupal mitochondria preferentially import and oxidise C12:0-CoAs(accumulated as C12:0-carnitines in L3 stage)over C16:0-CoAs.Preferential oxidation of medium-chain acyl-CoAs limits mitochondrial utilization of long-chain acyl-CoAs(C16-C18),leading to pupal-specific accumulation of long-chain acyl-carnitines mediated by enhanced CPT1-6 A activity.HFD skewed C16:0-CoAs towards catabolism over anabolism in pupa,thereby adversely affecting overall development.Our developed platform emphasizes the importance of integrating biological knowledge in the design of pathway-oriented platforms to derive maximal physiological insights from analysis of complex biological systems. 展开更多
关键词 Acyl-coenzyme As Acyl-carnitines Fatty acids Drosophila High-fat diet β-Oxidation
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