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Structural feature and tectonic evolution of Awati-Bachu area in Tarim Basin
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作者 Zhihong LIU Defeng ZHU +3 位作者 Junyi GAO xiangmei wu Dongcheng LIN Liguo ZHANG 《Global Geology》 2008年第1期19-24,共6页
The research area is situated in the western part of Tarim basin,which includes Awati depression and Bachu uplifted block. It underwent three times processes of compression in a large scale and a near term extension s... The research area is situated in the western part of Tarim basin,which includes Awati depression and Bachu uplifted block. It underwent three times processes of compression in a large scale and a near term extension since Cambrian. The first compression occurred during Middle Cambrian to Devonian, which formed fault band folds in NW axial direction. They were "under-water uplift"and distributed all over the research area. The second compression occurred in Late Permian and formed fault band folds and a few fault propagation folds in NS axial direction. They are developed near Tumuxiuke fault belt and the northern research area. The western anticline is bigger than the eastern one in extent and size. The third compression occurred during Palaeogene to Quaternary and formed tumuxiuke fault belt and fault propagation folds in NW direction. They are distributed over the south part of the research area. Tumuxiuke fault belt is a big scale dextral reversed strike-slip fault belt; it transformed or destroyed the fold structure of the research area. A short-term extension occurred during Early Permian. Tarim Basin is in the rift forming stage of craton, and there exist widespread basic volcanic rocks, basic intrusive bodies and dikes. 展开更多
关键词 fault band fold fault propagation fold strike-slip fault growth strata Awati-Bachu Tarim Basin
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Chronic cerebrovascular hypoperfusion affects global DNA methylation and histone acetylation in rat brain 被引量:2
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作者 xiangmei wu Jing Sun Liang Li 《Neuroscience Bulletin》 SCIE CAS CSCD 2013年第6期685-692,共8页
DNA methylation and histone acetylation can be modified by various pathological or physiological factors such as hypoxia,thus influencing gene expression.In this study,we investigated the changes of global DNA methyla... DNA methylation and histone acetylation can be modified by various pathological or physiological factors such as hypoxia,thus influencing gene expression.In this study,we investigated the changes of global DNA methylation and histone acetylation and the related enzymes in rat brain after chronic cerebrovascular hypoperfusion by bilateral common carotid occlusion(2-VO) surgery.Colorimetric and immunohistochemistry staining were used to evaluate the global DNA methylation and histone acetylation levels,respectively.The expressions of DNA methyltransferase 1/3a(DNMT1/3a),methyl-CpG binding domain protein 2(MBD2),histone deacetylase 3(HDAC3) and acetyltransferase(HAT) were assessed by Western blot.We found that the level of global DNA methylation was decreased to 31.7%(P &lt;0.01) of the sham-operated group at 10 days and increased by 30%(P &lt;0.01) compared with the sham group at 90 days after 2-VO surgery.DNMT3a expression was down-regulated to 75.7% of the sham group,while MBD2 expression was up-regulated by 95% compared with sham group at 90 days after 2-VO.The histone H3 acetylation level was markedly decreased to 75.3% of the sham group at 10 days and 73.5% at 90 days after 2-VO,while no significant change was found for histone H4 acetylation.HDAC3 expression was markedly down-regulated to 36% of the sham group,whereas cAMP-response element binding protein expression was up-regulated by 33.6% compared with the sham group at 90 days after 2-VO.These results suggest that chronic cerebrovascular hypoperfusion influences global DNA methylation and histone acetylation levels through the related enzymes,and therefore might contribute to several neurodegenerative diseases. 展开更多
关键词 cerebrovascular hypoperfusion global DNA methylation histone acetylation rat
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