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WGDI:用于全基因组复制和祖先核型进化分析的用户友好型工具包。

WGDI: A user-friendly toolkit for evolutionary analyses of whole-genome duplications and ancestral karyotypes.

作者信息

Sun Pengchuan, Jiao Beibei, Yang Yongzhi, Shan Lanxing, Li Ting, Li Xiaonan, Xi Zhenxiang, Wang Xiyin, Liu Jianquan

机构信息

Key Laboratory of Bio-Resource and Eco-Environment of Ministry of Education and State Key Laboratory of Hydraulics and Mountain River Engineering, College of Life Sciences, Sichuan University, Chengdu, China.

Center for Genomics and Bio-computing, North China University of Science and Technology, Tangshan, Hebei, China.

出版信息

Mol Plant. 2022 Dec 5;15(12):1841-1851. doi: 10.1016/j.molp.2022.10.018. Epub 2022 Oct 28.

Abstract

Evidence of whole-genome duplications (WGDs) and subsequent karyotype changes has been detected in most major lineages of living organisms on Earth. To clarify the complex resulting multi-layered patterns of gene collinearity in genome analyses, there is a need for convenient and accurate toolkits. To meet this need, we developed WGDI (Whole-Genome Duplication Integrated analysis), a Python-based command-line tool that facilitates comprehensive analysis of recursive polyploidization events and cross-species genome alignments. WGDI supports three main workflows (polyploid inference, hierarchical inference of genomic homology, and ancestral chromosome karyotyping) that can improve the detection of WGD and characterization of WGD-related events based on high-quality chromosome-level genomes. Significantly, it can extract complete synteny blocks and facilitate reconstruction of detailed karyotype evolution. This toolkit is freely available at GitHub (https://github.com/SunPengChuan/wgdi). As an example of its application, WGDI convincingly clarified karyotype evolution in Aquilegia coerulea and Vitis vinifera following WGDs and rejected the hypothesis that Aquilegia contributed as a parental lineage to the allopolyploid origin of core dicots.

摘要

在地球上大多数主要生物谱系中都检测到了全基因组复制(WGDs)及随后的核型变化证据。为了在基因组分析中阐明由此产生的复杂多层基因共线性模式,需要便捷且准确的工具包。为满足这一需求,我们开发了WGDI(全基因组复制综合分析),这是一个基于Python的命令行工具,有助于对递归多倍体化事件和跨物种基因组比对进行全面分析。WGDI支持三个主要工作流程(多倍体推断、基因组同源性的层次推断和祖先染色体核型分析),这些流程能够基于高质量的染色体水平基因组,改进对WGD的检测以及对WGD相关事件的特征描述。值得注意的是,它可以提取完整的共线性区块,并有助于详细核型进化的重建。该工具包可在GitHub(https://github.com/SunPengChuan/wgdi)上免费获取。作为其应用的一个例子,WGDI令人信服地阐明了耧斗菜和葡萄在WGDs后的核型进化,并否定了耧斗菜作为亲本谱系对核心双子叶植物异源多倍体起源有贡献的假说。

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