Validating a Target-Enrichment Design for Capturing Uniparental Haplotypes in Ancient Domesticated Animals.

IF 5.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kuldeep D More, Ophélie Lebrasseur, Jaime Lira Garrido, Andaine Seguin-Orlando, Emmanuel Discamps, Oscar Estrada, Laure Tonasso-Calvière, Loreleï Chauvey, Gaëtan Tressières, Stéphanie Schiavinato, Morgane Gibert, Horacio Padula, Horacio Chiavazza, Pablo M Fernández, Nicolás M Guardia, Caroline Borges, Stéphane Bertani, Juan Contreras-Mancilla, Diana Allccarima-Crisóstomo, Miguel Fhon, Eric Barrey, Léa Charliquart, Emilie Robbe, Thibault de Noblet, Rinat Zhumatayev, Samat Shakenov, Emmanuelle Vila, Rémi Berthon, Marjan Mashkour, Roya Khazaeli, Ahmad Nikgoftar, Ali A Vahdati, Pavel Kosintsev, Jean-Luc Houle, Jamsranjav Bayarsaikhan, Jaroslaw Wilczynski, Magdalena Moskal-Del Hoyo, Marek Nowak, William Taylor, Adrian Bălășescu, Roxana Dobrescu, Norbert Benecke, Benjamin Arbuckle, Sharon Steadman, Gregory McMahon, Petra Rajić Šikanjić, Marcel Buric, Tajana Trbojević Vukičević, Nadir Alvarez, Jean-Christophe Castel, Myriam Boudadi-Maligne, Bastiaan Star, Julian Robert Post-Melbye, Christian Løchsen Rødsrud, David W G Stanton, Sophy Charlton, Victoria E Mullin, Kevin G Daly, Nohemi Sala Burgos, Adrian Pablos, Love Dalen, Daniel G Bradley, Laurent Frantz, Greger Larson, Ludovic Orlando
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引用次数: 0

Abstract

In the last three decades, DNA sequencing of ancient animal osteological assemblages has become an important tool complementing standard archaeozoological approaches to reconstruct the history of animal domestication. However, osteological assemblages of key archaeological contexts are not always available or do not necessarily preserve enough ancient DNA for a cost-effective genetic analysis. Here, we develop an in-solution target-enrichment approach, based on 80-mer species-specific RNA probes (ranging from 306 to 1686 per species) to characterise (in single experiments) the mitochondrial genetic variation from eight domesticated animal species of major economic interest: cattle, chickens, dogs, donkeys, goats, horses, pigs and sheep. We also illustrate how our design can be adapted to enrich DNA library content and map the Y-chromosomal diversity within Equus caballus. By applying our target-enrichment assay to an extensive panel of ancient osteological remains, farm soil, and cave sediments spanning the last 43 kyrs, we demonstrate that minimal sequencing efforts are necessary to exhaust the DNA library complexity and to characterise mitogenomes to an average depth-of-coverage of 19.4 to 2003.7-fold. Our assay further retrieved horse mitogenome and Y-chromosome data from Late Pleistocene coprolites, as well as bona fide mitochondrial sequences from species that were not part of the probe design, such as bison and cave hyena. Our methodology will prove especially useful to minimise costs related to the genetic analyses of maternal and paternal lineages of a wide range of domesticated and wild animal species, and for mapping their diversity changes over space and time, including from environmental samples.

验证捕获古代家畜单倍型的目标富集设计。
在过去的三十年中,古代动物骨骼组合的DNA测序已经成为重建动物驯化历史的标准考古学方法的重要补充。然而,关键考古背景的骨学组合并不总是可用的,或者不一定保存足够的古代DNA以进行成本效益高的遗传分析。在这里,我们开发了一种溶液中目标富集方法,基于80个特定物种的RNA探针(每个物种的范围从306到1686)来表征(在单个实验中)8种主要经济利益家养动物物种的线粒体遗传变异:牛、鸡、狗、驴、山羊、马、猪和绵羊。我们还说明了我们的设计如何适应丰富DNA文库内容和绘制马科内y染色体多样性。通过将我们的目标富集分析应用于过去43年的古代骨骼遗骸,农场土壤和洞穴沉积物的广泛小组,我们证明了最小的测序工作是必要的,以消耗DNA文库的复杂性,并将有丝分裂基因组的特征描述为平均覆盖深度的19.4到2003.7倍。我们进一步从晚更新世粪化石中提取了马的有丝分裂基因组和y染色体数据,以及不属于探针设计的物种(如野牛和洞穴鬣狗)的真正线粒体序列。我们的方法将被证明特别有用,可以最大限度地减少与大量家养和野生动物物种的母系和父系遗传分析相关的成本,并绘制它们随空间和时间的多样性变化图,包括从环境样本中绘制。
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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来源期刊
Molecular Ecology Resources
Molecular Ecology Resources 生物-进化生物学
CiteScore
15.60
自引率
5.20%
发文量
170
审稿时长
3 months
期刊介绍: Molecular Ecology Resources promotes the creation of comprehensive resources for the scientific community, encompassing computer programs, statistical and molecular advancements, and a diverse array of molecular tools. Serving as a conduit for disseminating these resources, the journal targets a broad audience of researchers in the fields of evolution, ecology, and conservation. Articles in Molecular Ecology Resources are crafted to support investigations tackling significant questions within these disciplines. In addition to original resource articles, Molecular Ecology Resources features Reviews, Opinions, and Comments relevant to the field. The journal also periodically releases Special Issues focusing on resource development within specific areas.
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