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进化分析确定了蚤蝇科(双翅目)中多个基因组的扩张和收缩,并为未来的基因组研究提出了目标。

Evolutionary analysis identifies multiple genome expansions and contractions in Sepsidae (Diptera) and suggests targets for future genomic research.

作者信息

Su Kathy F Y, Puniamoorthy Jayanthi, Özsu Nesibe, Srivathsan Amrita, Meier Rudolf

机构信息

Department of Biological Sciences, National University of Singapore, 14 Science Dr 4, Singapore, 117543, Singapore.

California Academy of Sciences, 55 Music Concourse Drive, San Francisco, CA, 94118, USA.

出版信息

Cladistics. 2016 Jun;32(3):308-316. doi: 10.1111/cla.12128. Epub 2015 Jul 14.

Abstract

We here argue that data from comparative studies of genome size and karyotypes provide important information for planning comparative research on genome evolution. We document for 39 species of sepsids that there is a four-fold difference in genome size (151-618 Mbp). Mapping genome sizes onto a phylogenetic hypothesis identifies that this range is the result of five genome expansions and four genome contractions that we here define as changes in genome size of more than 50 Mbp. We then generate karyotype data for 10 species and find no changes in chromosome number. The study reveals that the "Oriental" clade of sepsids is a promising system for studying genome evolution because it has experienced three genome expansion events. These events can be compared with an expansion in the "Neotropical" clade in order to reveal the mechanisms that underlie genome expansion in Sepsidae. A review of the literature on genome sizes and karyotypes reveals that they have been poorly documented in Metazoa. This means that researchers interested in the evolution of genome expansions and contractions are currently not being able to identify appropriate target taxa for genome sequencing. We thus argue for more comparative research on genome sizes and karyotypes and point out that historically species were chosen for genome sequencing for reasons not related to genome evolution (e.g. small genome size, model species status, phylogenetic position, interesting phenotypes). We believe that it is now time to use a more genome-centric selection criterion, where species for whole genome sequencing are selected based on their importance for understanding genome evolution.

摘要

我们在此认为,基因组大小和核型的比较研究数据为规划基因组进化的比较研究提供了重要信息。我们记录了39种蚤蝇的基因组大小存在四倍差异(151 - 618兆碱基对)。将基因组大小映射到系统发育假说上可确定,这个范围是五次基因组扩张和四次基因组收缩的结果,我们在此将其定义为基因组大小变化超过50兆碱基对。然后我们生成了10个物种的核型数据,发现染色体数目没有变化。该研究表明,蚤蝇的“东方”分支是研究基因组进化的一个有前景的系统,因为它经历了三次基因组扩张事件。这些事件可与“新热带”分支中的一次扩张进行比较,以揭示蚤蝇科基因组扩张背后的机制。对基因组大小和核型文献的综述表明,后生动物中对此记录甚少。这意味着对基因组扩张和收缩进化感兴趣的研究人员目前无法确定合适的基因组测序目标分类群。因此,我们主张对基因组大小和核型进行更多的比较研究,并指出历史上选择物种进行基因组测序的原因与基因组进化无关(例如基因组小、模式物种地位、系统发育位置、有趣的表型)。我们认为现在是时候采用更以基因组为中心的选择标准了,即根据物种对理解基因组进化的重要性来选择进行全基因组测序的物种。

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