Pinto Brendan J, Gamble Tony, Smith Chase H, Wilson Melissa A
School of Life Sciences, Arizona State University, Tempe, AZ USA.
Center for Evolution and Medicine, Arizona State University, Tempe, AZ USA.
bioRxiv. 2023 Mar 31:2023.01.20.524006. doi: 10.1101/2023.01.20.524006.
In 2011, the first high-quality genome assembly of a squamate reptile (lizard or snake) was published for the green anole. Dozens of genome assemblies were subsequently published over the next decade, yet these assemblies were largely inadequate for answering fundamental questions regarding genome evolution in squamates due to their lack of contiguity or annotation. As the "genomics age" was beginning to hit its stride in many organismal study systems, progress in squamates was largely stagnant following the publication of the green anole genome. In fact, high-quality (chromosome-level) squamate genomes were published between the years 2012-2017. However, since 2018, an exponential increase in high-quality genome assemblies has materialized with 24 additional high-quality genomes published for species across the squamate tree of life. As the field of squamate genomics is rapidly evolving, we provide a systematic review from an evolutionary genomics perspective. We collated a near-complete list of publicly available squamate genome assemblies from more than half-a-dozen international and third-party repositories and systematically evaluated them with regard to their overall quality, phylogenetic breadth, and usefulness for continuing to provide accurate and efficient insights into genome evolution across squamate reptiles. This review both highlights and catalogs the currently available genomic resources in squamates and their ability to address broader questions in vertebrates, specifically sex chromosome and microchromosome evolution, while addressing why squamates may have received less historical focus and has caused their progress in genomics to lag behind peer taxa.
2011年,绿安乐蜥的有鳞目爬行动物(蜥蜴或蛇)的首个高质量基因组组装序列发表。在接下来的十年里,又陆续发表了数十个基因组组装序列,但由于缺乏连续性或注释,这些组装序列在很大程度上不足以回答有关有鳞目动物基因组进化的基本问题。随着“基因组学时代”在许多生物研究系统中开始蓬勃发展,绿安乐蜥基因组发表后,有鳞目动物的研究进展在很大程度上停滞不前。事实上,2012年至2017年间发表了高质量(染色体水平)的有鳞目动物基因组。然而,自2018年以来,高质量基因组组装序列呈指数级增长,又为有鳞目生命树中的物种发表了另外24个高质量基因组。随着有鳞目动物基因组学领域的迅速发展,我们从进化基因组学的角度提供了一篇系统综述。我们整理了一份几乎完整的公开可用的有鳞目动物基因组组装序列清单,这些序列来自六个以上的国际和第三方数据库,并从整体质量、系统发育广度以及对继续提供有关有鳞目爬行动物基因组进化的准确和有效见解的有用性方面对它们进行了系统评估。这篇综述既突出并编目了目前有鳞目动物可用的基因组资源及其解决脊椎动物中更广泛问题的能力,特别是性染色体和微染色体的进化,同时也探讨了为什么有鳞目动物在历史上受到的关注较少,以及导致其在基因组学方面的进展落后于同类分类群的原因。