Extraordinary Genome Instability and Widespread Chromosome Rearrangements During Vegetative Growth
The haploid genome of the pathogenic fungus is contained on "core" and "accessory" chromosomes. While 13 core chromosomes are found in all strains, as many as eight accessory chromosomes show presence/absence variation and rearrangements among field isolates. The factors influenc...
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Veröffentlicht in: | Genetics (Austin) 2018-10, Vol.210 (2), p.517-529 |
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Sprache: | eng |
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Zusammenfassung: | The haploid genome of the pathogenic fungus
is contained on "core" and "accessory" chromosomes. While 13 core chromosomes are found in all strains, as many as eight accessory chromosomes show presence/absence variation and rearrangements among field isolates. The factors influencing these presence/absence polymorphisms are so far unknown. We investigated chromosome stability using experimental evolution, karyotyping, and genome sequencing. We report extremely high and variable rates of accessory chromosome loss during mitotic propagation
and
Spontaneous chromosome loss was observed in 2 to >50% of cells during 4 weeks of incubation. Similar rates of chromosome loss in the closely related
suggest that this extreme chromosome dynamic is a conserved phenomenon in the genus. Elevating the incubation temperature greatly increases instability of accessory and even core chromosomes, causing severe rearrangements involving telomere fusion and chromosome breakage. Chromosome losses do not affect the fitness of
, but some lead to increased virulence, suggesting an adaptive role of this extraordinary chromosome instability. |
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ISSN: | 1943-2631 0016-6731 1943-2631 |
DOI: | 10.1534/genetics.118.301050 |