Valente Guilherme, Kocher Thomas, Eickbush Thomas, Simões Rafael P, Martins Cesar
Department of Bioprocess and Biotechnology, Faculty of Agronomic Sciences, UNESP, Sao Paulo State University, Botucatu, SP, 18610-307, Brazil.
University of Maryland, Bioscience Research Building, 20742, College Park, MD, USA.
Mol Genet Genomics. 2016 Jun;291(3):1219-25. doi: 10.1007/s00438-016-1176-1. Epub 2016 Feb 9.
Integration of cytogenetics and genomics has become essential to a better view of architecture and function of genomes. Although the advances on genomic sequencing have contributed to study genes and genomes, the repetitive DNA fraction of the genome is still enigmatic and poorly understood. Among repeated DNAs, transposable elements (TEs) are major components of eukaryotic chromatin and their investigation has been hindered even after the availability of whole sequenced genomes. The cytogenetic mapping of TEs in chromosomes has proved to be of high value to integrate information from the micro level of nucleotide sequence to a cytological view of chromosomes. Different TEs have been cytogenetically mapped in cichlids; however, neither details about their genomic arrangement nor appropriated copy number are well defined by these approaches. The current study integrates TEs distribution in Nile tilapia Oreochromis niloticus genome based on cytogenetic and genomics/bioinformatics approach. The results showed that some elements are not randomly distributed and that some are genomic dependent on each other. Moreover, we found extensive overlap between genomics and cytogenetics data and that tandem duplication may be the major mechanism responsible for the genomic dynamics of TEs here analyzed. This paper provides insights in the genomic organization of TEs under an integrated view based on cytogenetics and genomics.
细胞遗传学与基因组学的整合对于更好地了解基因组的结构和功能至关重要。尽管基因组测序技术的进步有助于研究基因和基因组,但基因组中的重复DNA部分仍然神秘且了解甚少。在重复DNA中,转座元件(TEs)是真核染色质的主要组成部分,即使在全基因组测序可用之后,对它们的研究仍然受到阻碍。TEs在染色体上的细胞遗传学定位已被证明对于将核苷酸序列的微观信息与染色体的细胞学视图整合起来具有很高的价值。不同的TEs已在丽鱼科鱼类中进行了细胞遗传学定位;然而,这些方法既没有很好地确定它们的基因组排列细节,也没有确定合适的拷贝数。当前的研究基于细胞遗传学和基因组学/生物信息学方法,整合了尼罗罗非鱼奥利亚罗非鱼基因组中TEs的分布。结果表明,一些元件不是随机分布的,并且一些元件在基因组上相互依赖。此外,我们发现基因组学和细胞遗传学数据之间存在广泛的重叠,并且串联重复可能是此处分析的TEs基因组动态的主要机制。本文基于细胞遗传学和基因组学的综合视角,对TEs的基因组组织提供了见解。