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汉代的人形铜镇 被引量:3
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作者 李尔吾 《文博》 2011年第4期44-47,共4页
汉代人形铜镇造型生动诙谐。本文将迄今公布的9例成组的人形铜镇按照形制的差异划分为四组,并探讨了其形制变化与时代、地域的关系,同时还对其使用功能以及表现内容进行了一些探讨研究。
关键词 人形铜 汉墓 博镇 俳优
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博白水鸣粤语有多少个声调?——汉语方言极限声调清单声学实验分析之一 被引量:3
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作者 冉启斌 张玉岩 《语言科学》 CSSCI 北大核心 2014年第6期641-654,共14页
文章是汉语方言极限声调清单的研究报告之一。对四名水鸣镇粤语(地佬话)发音人声调语音的声学分析表明,现水鸣镇粤语有13个声调,其中舒声8调,入声5调。研究发现,水鸣镇粤语存在系统的"送气分调"现象,在平、上、去、入四类声... 文章是汉语方言极限声调清单的研究报告之一。对四名水鸣镇粤语(地佬话)发音人声调语音的声学分析表明,现水鸣镇粤语有13个声调,其中舒声8调,入声5调。研究发现,水鸣镇粤语存在系统的"送气分调"现象,在平、上、去、入四类声调中各形成一个送气调,并有一定程度的"送气消失"发生;阳上则分化消失,主要派入送气上、阳去等调。水鸣镇粤语是目前见于报道证实的汉语方言最大单字调清单。汉语方言极限声调清单研究还有大量的工作需要做。 展开更多
关键词 白水鸣粤语(地佬话) 极限声调清单 声学分析 送气分调 阳上消
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Coordinated regulation of active and repressive histone methylations by a dual-specificity histone demethylase ceKDM7A from Caenorhabditis elegans 被引量:2
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作者 Hanqing Lin Yiqin Wang +11 位作者 Yanru Wang Feng Tian Pu Pu Yi Yu Hailei Mao Ying Yang Ping Wang Lulu Hu Yan Lin Yi Liu Yanhui Xu Charlie Degui Chen 《Cell Research》 SCIE CAS CSCD 2010年第8期899-907,共9页
H3K9me2 and H3K27me2 are important epigenetic marks associated with transcription repression, while H3K4me3 is associated with transcription activation. It has been shown that active and repressive histone methylation... H3K9me2 and H3K27me2 are important epigenetic marks associated with transcription repression, while H3K4me3 is associated with transcription activation. It has been shown that active and repressive histone methylations distribute in a mutually exclusive manner, but the underlying mechanism was poorly understood. Here we identified ceKDM7A, a PHD (plant homeodomain)- and JmjC domain-containing protein, as a histone demethylase specific for H3K9me2 and H3K27me2. We further demonstrated that the PHD domain of ceKDM7A bound H3K4me3 and H3K4me3 co-localized with ceKDM7A at the genome-wide level. Disruption of the PHD domain binding to H3K4me3 reduced the demethylase activity in vivo, and loss of ceKDM7A reduced the expression of its associated target genes. These results indicate that ceKDM7A is recruited to the promoter to demethylate H3K9me2 and H3K27me2 and activate gene expression through the binding of the PHD domain to H3K4me3. Thus, our study identifies a dual-specificity histone demethylase and provides novel insights into the regulation of histone methylation. 展开更多
关键词 KDM7A DEMETHYLASE H3K9me2 H3K27me2 PHD JMJC HISTONE methylation
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