Aberrant genome size and instability of Phytophthora ramorum oospore progenies

The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated. Sexual reproduction could create genotypic variation and increase the pathogen’s ability to adapt to other host plants or changing environments....

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Published inFungal genetics and biology Vol. 48; no. 5; pp. 537 - 543
Main Authors Vercauteren, Annelies, Boutet, Xavier, D’hondt, Liesbet, Van Bockstaele, Erik, Maes, Martine, Leus, Leen, Chandelier, Anne, Heungens, Kurt
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.05.2011
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Abstract The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated. Sexual reproduction could create genotypic variation and increase the pathogen’s ability to adapt to other host plants or changing environments. Genetic characterization using co-dominant microsatellite markers and flow cytometry of single-oospore progeny of crosses between a European A1 isolate and North American or European A2 isolates revealed a considerable number of non-Mendelian inheritance events. This includes inheritance of more than two alleles at a locus and non-inheritance of alleles from one parent at another locus. The progenies were mitotically unstable: zoospore and hyphal tip derivatives of the progenies showed genotypic rearrangements and phenotypic variation. Flow cytometry confirmed variation and instability in DNA content of the single-oospore progenies. This indicates that single-oospore progenies not only display aberrant genomic and phenotypic variation due to meiotic irregularities, but also extra variation as a result of post-meiotic genomic rearrangements.
AbstractList The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated. Sexual reproduction could create genotypic variation and increase the pathogen’s ability to adapt to other host plants or changing environments. Genetic characterization using co-dominant microsatellite markers and flow cytometry of single-oospore progeny of crosses between a European A1 isolate and North American or European A2 isolates revealed a considerable number of non-Mendelian inheritance events. This includes inheritance of more than two alleles at a locus and non-inheritance of alleles from one parent at another locus. The progenies were mitotically unstable: zoospore and hyphal tip derivatives of the progenies showed genotypic rearrangements and phenotypic variation. Flow cytometry confirmed variation and instability in DNA content of the single-oospore progenies. This indicates that single-oospore progenies not only display aberrant genomic and phenotypic variation due to meiotic irregularities, but also extra variation as a result of post-meiotic genomic rearrangements.
The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated. Sexual reproduction could create genotypic variation and increase the pathogen's ability to adapt to other host plants or changing environments. Genetic characterization using co-dominant microsatellite markers and flow cytometry of single-oospore progeny of crosses between a European A1 isolate and North American or European A2 isolates revealed a considerable number of non-Mendelian inheritance events. This includes inheritance of more than two alleles at a locus and non-inheritance of alleles from one parent at another locus. The progenies were mitotically unstable: zoospore and hyphal tip derivatives of the progenies showed genotypic rearrangements and phenotypic variation. Flow cytometry confirmed variation and instability in DNA content of the single-oospore progenies. This indicates that single-oospore progenies not only display aberrant genomic and phenotypic variation due to meiotic irregularities, but also extra variation as a result of post-meiotic genomic rearrangements.
Author Leus, Leen
Chandelier, Anne
D’hondt, Liesbet
Heungens, Kurt
Vercauteren, Annelies
Boutet, Xavier
Maes, Martine
Van Bockstaele, Erik
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Issue 5
Keywords Mating
Sudden Oak Death
Oomycetes
Flow cytometry
Aneuploid
Language English
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Snippet The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated....
The functionality of the sexual cycle in the heterothallic pathogen Phytophthora ramorum, causal agent of Sudden Oak Death, has recently been demonstrated....
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SubjectTerms Aneuploid
Flow Cytometry
Genome, Fungal
Mating
Microsatellite Repeats
Oomycetes
Phytophthora
Phytophthora - cytology
Phytophthora - genetics
Phytophthora - growth & development
Spores, Fungal - cytology
Spores, Fungal - genetics
Spores, Fungal - growth & development
Sudden Oak Death
Title Aberrant genome size and instability of Phytophthora ramorum oospore progenies
URI https://dx.doi.org/10.1016/j.fgb.2011.01.008
https://www.ncbi.nlm.nih.gov/pubmed/21272658
https://search.proquest.com/docview/856172880
https://search.proquest.com/docview/864956369
Volume 48
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