Abstract

BackgroundSpecies of the Fusarium genus are important fungi which is associated with health hazards in human and animals. The taxonomy of this genus has been a subject of controversy for many years. Although many researchers have applied molecular phylogenetic analysis to examine the taxonomy of Fusarium species, their phylogenetic relationships remain unclear only few comprehensive phylogenetic analyses of the Fusarium genus and a lack of suitable nucleotides and amino acid substitution rates. A previous stugy with whole genome comparison among Fusairum species revealed the possibility that each gene in Fusarium genomes has a unique evolutionary history, and such gene may bring difficulty to the reconstruction of phylogenetic tree of Fusarium. There is a need not only to check substitution rates of genes but also to perform the exact evaluation of each gene-evolution.ResultsWe performed phylogenetic analyses based on the nucleotide sequences of the rDNA cluster region (rDNA cluster), and the β-tubulin gene (β-tub), the elongation factor 1α gene (EF-1α), and the aminoadipate reductase gene (lys2). Although incongruence of the tree topologies between lys2 and the other genes was detected, all genes supported the classification of Fusarium species into 7 major clades, I to VII. To obtain a reliable phylogeny for Fusarium species, we excluded the lys2 sequences from our dataset, and re-constructed a maximum likelihood (ML) tree based on the combined data of the rDNA cluster, β-tub, and EF-1α. Our ML tree indicated some interesting relationships in the higher and lower taxa of Fusarium species and related genera. Moreover, we observed a novel evolutionary history of lys2. We suggest that the unique tree topologies of lys2 are not due to an analytical artefact, but due to differences in the evolutionary history of genomes caused by positive selection of particular lineages.ConclusionThis study showed the reliable species tree of the higher and lower taxonomy in the lineage of the Fusarium genus. Our ML tree clearly indicated 7 major clades within the Fusarium genus. Furthermore, this study reported differences in the evolutionary histories among multiple genes within this genus for the first time.

Highlights

  • Species of the Fusarium genus are important fungi which is associated with health hazards in human and animals

  • Seven major clades of the Fusarium genus and the incongruence of gene trees The maximum likelihood (ML) trees inferred from each of the concatenated parts of the rRNA cluster region, E-tub EF-1 D and lys2 are displayed in Figures 1, 2, 3 and 4, respectively

  • The b-tub and elongation factor 1a gene (EF-1a) sequences supported the monophyly of F. merismoides, the rDNA cluster supported a paraphyletic relationship for this species

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Summary

Introduction

Species of the Fusarium genus are important fungi which is associated with health hazards in human and animals. Many researchers have applied molecular phylogenetic analysis to examine the taxonomy of Fusarium species, their phylogenetic relationships remain unclear only few comprehensive phylogenetic analyses of the Fusarium genus and a lack of suitable nucleotides and amino acid substitution rates. A previous stugy with whole genome comparison among Fusairum species revealed the possibility that each gene in Fusarium genomes has a unique evolutionary history, and such gene may bring difficulty to the reconstruction of phylogenetic tree of Fusarium. Whole genome comparison among four Fusairum species revealed the drastic genome-evolution such as the horizontal gene transfer in Fusarium genomes [11] It is possible for each gene in Fusarium genomes to have a unique evolutionary history, and it is necessary to perform exact evaluation of the evolutionary processes of each gene. We should select suitable genes providing information for phylogenetic inference about both the higher and lower taxa in the Fusarium tree

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