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Recombination and biased segregation of mitochondrial genomes during crossing and meiosis of different Schizosaccharomyces pombe strains.


ABSTRACT: During meiosis, tethering of parental mitochondria to opposite cell poles inhibits the mixing of mitochondria with different genomes and ensures uniparental inheritance in thestandard laboratory strain of fission yeast. We here investigate mitochondrial inheritance in crosses between natural isolates using tetrad dissection and next-generation sequencing. We find that colonies grown from single spores can sometimes carry a mix of mitochondrial genotypes, that mitochondrial genomes can recombine during meiosis, that in some cases tetrads do not follow the 2:2 segregation pattern, and that certain crosses may feature a weak bias towards one of the parents. Together, these findings paint a more nuanced picture of mitochondrial inheritance in the wild.

SUBMITTER: Kamrad S 

PROVIDER: S-EPMC8129777 | biostudies-literature | 2021 May

REPOSITORIES: biostudies-literature

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Recombination and biased segregation of mitochondrial genomes during crossing and meiosis of different <i>Schizosaccharomyces pombe</i> strains.

Kamrad Stephan S   Rodríguez-López María M   Dey Shoumit S   Hoti Mimoza M   Wallace Henry H   Ralser Markus M   Bähler Jürg J  

microPublication biology 20210517


During meiosis, tethering of parental mitochondria to opposite cell poles inhibits the mixing of mitochondria with different genomes and ensures uniparental inheritance in thestandard laboratory strain of fission yeast. We here investigate mitochondrial inheritance in crosses between natural isolates using tetrad dissection and next-generation sequencing. We find that colonies grown from single spores can sometimes carry a mix of mitochondrial genotypes, that mitochondrial genomes can recombine  ...[more]

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