Corrigendum: Donkey genome and insight into the imprinting of fast karyotype evolution
نویسندگان
چکیده
Jinlong Huang, Yiping Zhao, Dongyi Bai, Wunierfu Shiraigol, Bei Li, Lihua Yang, Jing Wu, Wuyundalai Bao, Xiujuan Ren, Burenqiqige Jin, Qinan Zhao, Anaer Li, Sarula Bao, Wuyingga Bao, Zhencun Xing, Aoruga An, Yahan Gao, Ruiyuan Wei, Yirugeletu Bao, Taoketao Bao, Haige Han, Haitang Bai, Yanqing Bao, Yuhong Zhang, Dorjsuren Daidiikhuu, Wenjing Zhao, Shuyun Liu, Jinmei Ding, Weixing Ye, Fangmei Ding, Zikui Sun, Yixiang Shi, Yan Zhang, He Meng & Manglai Dugarjaviin
منابع مشابه
Donkey genome and insight into the imprinting of fast karyotype evolution
The donkey, like the horse, is a promising model for exploring karyotypic instability. We report the de novo whole-genome assemblies of the donkey and the Asiatic wild ass. Our results reflect the distinct characteristics of donkeys, including more effective energy metabolism and better immunity than horses. The donkey shows a steady demographic trajectory. We detected abundant satellite sequen...
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Marsupial and monotreme mammals fill an important gap in vertebrate phylogeny between reptile-mammal divergence 310 million years ago (mya) and the eutherian (placental) mammal radiation 105 mya. They possess many unique features including their distinctive chromosomes, which in marsupials are typically very large and well conserved between species. In contrast, monotreme genomes are divided in...
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Background Genomic imprinting is a heritable and developmentally essential phenomenon by which gene expression occurs in an allele-specific manner1. While the imprinted alleles are primarily silenced by DNA methylation, it remains largely unknown how methylation is targeted to imprinting control region (ICR), also called differentially methylated region (DMR), and maintained. Here we show that ...
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