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2篇 您的检索式:作者名="Yong EZhang"
    题名 作者 年代 出处 被引量
1Evolutionary transition between invertebrates and vertebrates via methylation reprogramming in embryogenesis显示文摘Major evolutionary transitions are enigmas,and the most notable enigma is between invertebrates and vertebrates,with numerous spectacular innovations.To search for the molecular connections involved,we asked whether global epigenetic changes may offer a clue by surveying the inheritance and reprogramming of parental DNA methylation across metazoans.We focused on gametes and early embryos,where the methylomes are known to evolve divergently between fish and mammals.Here,we find that methylome reprogramming during embryogenesis occurs neither in pre-bilaterians such as cnidarians nor in protostomes such as insects,but clearly presents in deuterostomes such as echinoderms and invertebrate chordates,and then becomes more evident in vertebrates.Functional association analysis suggests that DNA methylation reprogramming is associated with development,reproduction and adaptive immunity for vertebrates,but not for invertebrates.Interestingly,the single HOX cluster of invertebrates maintains unmethylated status in all stages examined.In contrast,the multiple HOX clusters show dramatic dynamics of DNA methylation during vertebrate embryogenesis.Notably,the methylation dynamics of HOX clusters are associated with their spatiotemporal expression in mammals.Our study reveals that DNA methylation reprogramming has evolved dramatically during animal evolution,especially after the evolutionary transitions from invertebrates to vertebrates,and then to mammals.Xiaocui Xu Guoqiang Li Congru Li Jing Zhang Qiang Wang David KSimmons Xuepeng Chen Naveen Wijesena Wei Zhu Zhanyang Wang Zhenhua Wang Bao Ju Weimin Ci Xuemei Lu Daqi Yu Qian-fei Wang Neelakanteswar Aluru Paola Oliveri Yong EZhang Mark QMartindale Jiang Liu 2019National Science Review2019,6,5:2
2Integrative analyses of RNA editing,alternative splicing,and expression of young genes in human brain transcriptome by deep RNA sequencing显示文摘Next-generation RNA sequencing has been successfully used for identification of transcript assembly,evaluation of gene expression levels,and detection of post-transcriptional modifications.Despite these large-scale studies,additional comprehensive RNA-seq data from different subregions of the human brain are required to fully evaluate the evolutionary patterns experienced by the human brain transcriptome.Here,we provide a total of 6.5 billion RNA-seq reads fromdifferent subregions of the human brain.A significant correlation was observed between the levels of alternative splicing and RNA editing,which might be explained by a competition between the molecularmachineries responsible for the splicing and editing of RNA.Younghuman protein-coding genesdemonstrate biased expression to the neocortical and non-neocortical regions during evolution on the lineage leading to humans.Wealso found that a significantly greater number of young human protein-coding genes are expressed in the putamen,a tissue that was also observed to have the highest level of RNA-editing activity.The putamen,which previously received little attention,plays an important role in cognitive ability,and our data suggest a potential contribution of the putamen to human evolution.Dong-Dong Wu Ling-Qun Ye Yan Li Yan-Bo Sun Yi Shao Chunyan Chen Zhu Zhu Li Zhong Lu Wang David MIrwin Yong EZhang Ya-Ping Zhang 2015Journal of Molecular Cell Biology2015,7,4:1
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