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一种在多个进化时间尺度上进行紫檀属(Dalbergia spp.)和豆科(Fabaceae)系统基因组分析的目标捕获方法。

A target capture approach for phylogenomic analyses at multiple evolutionary timescales in rosewoods (Dalbergia spp.) and the legume family (Fabaceae).

机构信息

Institute of Integrative Biology, ETH Zurich, Zürich, Switzerland.

Genetic Diversity Centre (GDC), ETH Zurich, Zürich, Switzerland.

出版信息

Mol Ecol Resour. 2022 Nov;22(8):3087-3105. doi: 10.1111/1755-0998.13666. Epub 2022 Jun 27.

Abstract

Understanding the genetic changes associated with the evolution of biological diversity is of fundamental interest to molecular ecologists. The assessment of genetic variation at hundreds or thousands of unlinked genetic loci forms a sound basis to address questions ranging from micro- to macroevolutionary timescales, and is now possible thanks to advances in sequencing technology. Major difficulties are associated with (i) the lack of genomic resources for many taxa, especially from tropical biodiversity hotspots; (ii) scaling the numbers of individuals analysed and loci sequenced; and (iii) building tools for reproducible bioinformatic analyses of such data sets. To address these challenges, we developed target capture probes for genomic studies of the highly diverse, pantropically distributed and economically significant rosewoods (Dalbergia spp.), explored the performance of an overlapping probe set for target capture across the legume family (Fabaceae), and built the general purpose bioinformatic pipeline CaptureAl. Phylogenomic analyses of Malagasy Dalbergia species yielded highly resolved and well supported hypotheses of evolutionary relationships. Population genomic analyses identified differences between closely related species and revealed the existence of a potentially new species, suggesting that the diversity of Malagasy Dalbergia species has been underestimated. Analyses at the family level corroborated previous findings by the recovery of monophyletic subfamilies and many well-known clades, as well as high levels of gene tree discordance, especially near the root of the family. The new genomic and bioinformatic resources, including the Fabaceae1005 and Dalbergia2396 probe sets, will hopefully advance systematics and ecological genetics research in legumes, and promote conservation of the highly diverse and endangered Dalbergia rosewoods.

摘要

理解与生物多样性进化相关的遗传变化对于分子生态学家来说具有根本意义。在数百或数千个不相关的遗传基因座评估遗传变异,为解决从微观进化到宏观进化时间尺度的问题提供了坚实的基础,而这在测序技术进步的情况下现在已经成为可能。主要困难与以下方面有关:(i)许多分类群缺乏基因组资源,特别是来自热带生物多样性热点地区的分类群;(ii)分析的个体数量和测序的基因座数量的扩展;(iii)构建用于此类数据集可重复的生物信息学分析的工具。为了解决这些挑战,我们开发了用于高度多样化、泛热带分布且具有经济重要性的紫檀属(Dalbergia spp.)基因组研究的目标捕获探针,探索了用于豆科(Fabaceae)目标捕获的重叠探针集的性能,并构建了通用的生物信息学分析管道 CaptureAl。马达加斯加紫檀属物种的系统基因组分析产生了高度解析和支持度高的进化关系假说。种群基因组分析鉴定了密切相关物种之间的差异,并揭示了一个潜在新物种的存在,表明马达加斯加紫檀属物种的多样性被低估了。在科水平上的分析证实了以前的发现,即恢复了单系的亚科和许多著名的进化枝,以及高水平的基因树分歧,特别是在科的根部附近。新的基因组和生物信息学资源,包括 Fabaceae1005 和 Dalbergia2396 探针集,有望推进豆科的系统学和生态遗传学研究,并促进高度多样化和濒危的紫檀属树木的保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58de/9796917/a47a493d29c7/MEN-22-3087-g001.jpg

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