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Spot the difference: Solving the puzzle of hidden pictures in the lizard genome for identification of regeneration factors

机译:找出差异:解决蜥蜴基因组中隐藏图片的难题以识别再生因子

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摘要

All living things share some common life processes, such as growth and reproduction, and have the ability to respond to their environment. However, each type of organism has its own specialized way of managing biological events. Genetic sequences determine phenotypic and physiological traits. Based on genetic information, comparative genomics has been used to delineate the differences and similarities between various genomes, and significant progress has been made in understanding regenerative biology by comparing the genomes of a variety of lower animal models of regeneration, such as planaria, zebra fish, and newts. However, the genome of lizards has been relatively ignored until recently, even though lizards have been studied as an excellent amniote model of tissue regeneration. Very recently, whole genome sequences of lizards have been uncovered, and several attempts have been made to find regeneration factors based on genetic information. In this article, recent advances in comparative analysis of the lizard genome are introduced, and their biological implications and putative applications for regenerative medicine and stem cell biology are discussed. [BMB Reports 2016; 49(5): 249-254]
机译:所有生物都有一些共同的生命过程,例如生长和繁殖,并具有对环境做出反应的能力。但是,每种类型的生物都有其自己的专门方法来处理生物事件。遗传序列决定表型和生理性状。根据遗传信息,比较基因组学已被用于描述各种基因组之间的差异和相似性,并且通过比较各种低等再生动物模型(如涡虫,斑马鱼)的基因组,在了解再生生物学方面取得了重大进展。和new。然而,直到最近,蜥蜴的基因组还是被相对忽略了,即使已经将蜥蜴作为组织再生的优秀羊膜动物模型进行了研究。最近,已经发现了蜥蜴的全基因组序列,并且已经进行了几次尝试以基于遗传信息来寻找再生因子。在本文中,介绍了蜥蜴基因组比较分析的最新进展,并讨论了其在再生医学和干细胞生物学中的生物学意义和假定的应用。 [BMB报告2016; 49(5):249-254]

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