Variation and phylogeny of fusarium oxysporum isolates based on nucleotide sequences of polygalacturonase genes

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Abstract

The nucleotide sequences of two endopolygalacturonase genes (pgl and pg5) and two exopolygalacturonase genes (pgxl and pgx4), which encode members of a major family of secreted cell-wall-degrading enzymes (CWDEs), were compared to detect the extent of genetic variation among isolates of Fusarium oxysporum. The nucleotide variation rate in exons was 0.23-0.93%, higher than that in introns (0.01-0.64%) and untranslated regions (UTRs) (0.07-0.25%), resulting in 0.05-0.31% variation in amino acids. pgxl exhibited the most genetic diversity. Phylogenetic analysis of the four genes, which reside on different chromosomes, revealed different evolutionary patterns for each. Our results suggest a biased evolution of the polygalacturonase genes of F. oxysporum, or alternatively, that the genes were acquired at different times during evolution.

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Hirano, Y., & Arie, T. (2009). Variation and phylogeny of fusarium oxysporum isolates based on nucleotide sequences of polygalacturonase genes. Microbes and Environments, 24(2), 113–120. https://doi.org/10.1264/jsme2.ME08554

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