Wgd v2 : a suite of tools to uncover and date ancient polyploidy and whole-genome duplication

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Authors

Chen, Hengchi
Zwaenepoel, Arthur
Van de Peer, Yves

Journal Title

Journal ISSN

Volume Title

Publisher

Oxford University Press

Abstract

MOTIVATION: Major improvements in sequencing technologies and genome sequence assembly have led to a huge increase in the number of available genome sequences. In turn, these genome sequences form an invaluable source for evolutionary, ecological, and comparative studies. One kind of analysis that has become routine is the search for traces of ancient polyploidy, particularly for plant genomes, where whole-genome duplication (WGD) is rampant. RESULTS: Here, we present a major update of a previously developed tool wgd, namely wgd v2, to look for remnants of ancient polyploidy, or WGD. We implemented novel and improved previously developed tools to (a) construct KS age distributions for the whole-paranome (collection of all duplicated genes in a genome), (b) unravel intragenomic and intergenomic collinearity resulting from WGDs, (c) fit mixture models to age distributions of gene duplicates, (d) correct substitution rate variation for phylogenetic placement of WGDs, and (e) date ancient WGDs via phylogenetic dating of WGD-retained gene duplicates. The applicability and feasibility of wgd v2 for the identification and the relative and absolute dating of ancient WGDs is demonstrated using different plant genomes.

Description

DATA AVAILABILITY STATEMENT: The genome assemblies involved in this paper were summarized in Supplementary Table S2.
CODE AVAILABILITY : The wgd v2 program can be found at https://github.com/heche-psb/wgd.

Keywords

Polyploidy, Whole-genome duplication (WGD), Genome sequencing, Phylogenetic dating, SDG-09: Industry, innovation and infrastructure, SDG-15: Life on land

Sustainable Development Goals

SDG-09: Industry, innovation and infrastructure
SDG-15:Life on land

Citation

Hengchi Chen, Arthur Zwaenepoel, Yves Van de Peer, wgd v2: a suite of tools to uncover and date ancient polyploidy and whole-genome duplication, Bioinformatics, Volume 40, Issue 5, May 2024, btae272, https://doi.org/10.1093/bioinformatics/btae272.