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Evolution of Marsupial Genomes
Annual Review of Animal Biosciences ( IF 8.7 ) Pub Date : 2020-02-18 , DOI: 10.1146/annurev-animal-021419-083555
Janine E Deakin 1 , Rachel J O'Neill 2
Affiliation  

Marsupial genomes, which are packaged into large chromosomes, provide a powerful resource for studying the mechanisms of genome evolution. The extensive and valuable body of work on marsupial cytogenetics, combined more recently with genome sequence data, has enabled prediction of the 2n = 14 karyotype ancestral to all marsupial families. The application of both chromosome biology and genome sequencing, or chromosomics, has been a necessary approach for various aspects of mammalian genome evolution, such as understanding sex chromosome evolution and the origin and evolution of transmissible tumors in Tasmanian devils. The next phase of marsupial genome evolution research will employ chromosomics approaches to begin addressing fundamental questions in marsupial genome evolution and chromosome evolution more generally. The answers to these complex questions will impact our understanding across a broad range of fields, including the genetics of speciation, genome adaptation to environmental stressors, and species management.

中文翻译:


有袋动物基因组的演变

包装成大染色体的有袋动物基因组,为研究基因组进化的机制提供了强大的资源。关于有袋动物细胞遗传学的广泛而有价值的工作,最近与基因组序列数据相结合,已经能够预测2 n=所有有袋动物家庭的祖先为14个核型。对于哺乳动物基因组进化的各个方面,例如了解性染色体进化以及塔斯马尼亚魔鬼中可传播肿瘤的起源和进化,染色体生物学和基因组测序或染色体学的应用一直是一种必不可少的方法。有袋动物基因组进化研究的下一阶段将采用染色体学方法,开始更普遍地解决有袋动物基因组进化和染色体进化中的基本问题。这些复杂问题的答案将影响我们对广泛领域的理解,包括物种遗传学,适应环境胁迫的基因组适应和物种管理。

更新日期:2020-02-18
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