DNA barcoding of the rodent genus Oligoryzomys (Cricetidae: Sigmodontinae): mitogenomic-anchored database and identification of nuclear mitochondrial translocations (Numts).

Marcos O R da Cruz, Marcelo Weksler, Cibele R Bonvicino, Alexandra M R Bezerra, Francisco Prosdocimi, Carolina Furtado, Lena Geise, François Catzeflis, Benoit de Thoisy, Luiz F B de Oliveira, Claudia Silva, João Alves de Oliveira
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引用次数: 5

Abstract

DNA barcoding has become a standard method for species identification in taxonomically complex groups. An important step of the barcoding process is the construction of a library of voucher-based material that was properly identified by independent methods, free of inaccurate identification, and paralogs. We provide here a cytochrome oxidase I (mt-Co1) DNA barcode database for species of the genus Oligoryzomys, based on type material and karyotyped specimens, and anchored on the mitochondrial genome of one species of Oligoryzomys, O. stramineus. To evaluate the taxonomic determination of new COI sequences, we assessed species intra/interspecific genetic distances (barcode gap), performed the General Mixed Yule Coalescent method (GMYC) for lineages' delimitation, and identified diagnostic nucleotides for each species of Oligoryzomys. Phylogenetic analyses of Oligoryzomys were performed on 2 datasets including 14 of the 23 recognized species of this genus: a mt-Co1 only matrix, and a concatenated matrix including mt-Co1, cytochrome b (mt-Cytb), and intron 7 of the nuclear fibrinogen beta chain gene (i7Fgb). We recovered nuclear-mitochondrial translocated (Numts) pseudogenes on our samples and identified several published sequences that are cases of Numts. We analyzed the rate of non-synonymous and synonymous substitution, which were higher in Numts in comparison to mtDNA sequences. GMYC delimitations and DNA barcode gap results highlight the need for further work that integrate molecular, karyotypic, and morphological analyses, as well as additional sampling, to tackle persistent problems in the taxonomy of Oligoryzomys.

啮齿类动物Oligoryzomys (crictidae: Sigmodontinae)的DNA条形码:有丝分裂基因组锚定数据库和核线粒体易位鉴定(Numts)。
DNA条形码已成为复杂类群物种鉴定的标准方法。条形码过程的一个重要步骤是建立一个以凭证为基础的材料库,通过独立的方法正确识别,避免不准确的识别和类比。我们在此提供了一个基于类型材料和核型标本的Oligoryzomys属物种的细胞色素氧化酶I (mt-Co1) DNA条形码数据库,并以一种Oligoryzomys, O. stramineus的线粒体基因组为基础。为了评估新COI序列的分类鉴定,我们评估了种内/种间遗传距离(条形码间隙),采用通用混合Yule聚结法(GMYC)进行谱系划分,并鉴定了Oligoryzomys各物种的诊断核苷酸。对该属23个已知种中的14个进行了系统发育分析:一个仅mt-Co1的基质,一个包含mt-Co1、细胞色素b (mt-Cytb)和核纤维蛋白原β链基因内含子7 (i7Fgb)的连接基质。我们在我们的样本上恢复了核线粒体易位(Numts)假基因,并鉴定了几个已发表的序列,这些序列是Numts的病例。我们分析了非同义和同义替换的比率,与mtDNA序列相比,这在Numts中更高。GMYC定界和DNA条形码间隙的结果强调需要进一步的工作,整合分子、核型和形态学分析,以及额外的采样,以解决寡聚体分类中持续存在的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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