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Genome-wide maps of recombination and chromosome segregation in human oocytes and embryos show selection for maternal recombination rates

Academic Article
Publication Date:
2015
abstract:
Crossover recombination reshuffles genes and prevents errors in segregation that lead to extra or missing chromosomes (aneuploidy) in human eggs, a major cause of pregnancy failure and congenital disorders. Here we generate genome-wide maps of crossovers and chromosome segregation patterns by recovering all three products of single female meioses. Genotyping >4 million informative SNPs from 23 complete meioses allowed us to map 2,032 maternal and 1,342 paternal crossovers and to infer the segregation patterns of 529 chromosome pairs. We uncover a new reverse chromosome segregation pattern in which both homologs separate their sister chromatids at meiosis I; detect selection for higher recombination rates in the female germ line by the elimination of aneuploid embryos; and report chromosomal drive against non-recombinant chromatids at meiosis II. Collectively, our findings show that recombination not only affects homolog segregation at meiosis I but also the fate of sister chromatids at meiosis II. © 2015 Nature America, Inc. All rights reserved.
Iris type:
1.1 Articolo in rivista
Keywords:
Cells; Cultured; Chromosome Mapping; Crossing Over; Genetic; Female; Genome; Human; Humans; Meiosis; Oocytes; Polar Bodies; Polymorphism; Single Nucleotide; Sequence Analysis; DNA; Chromosome Segregation; Recombination; Genetic; Genetics; Medicine (all)
List of contributors:
Ottolini, Christian S.; Newnham, Louise J.; Capalbo, Antonio; Natesan, Senthilkumar A.; Joshi, Hrishikesh A.; Cimadomo, Danilo; Griffin, Darren K.; Sage, Karen; Summers, Michael C.; Thornhill, Alan R.; Housworth, Elizabeth; Herbert, Alex D.; Rienzi, Laura; Ubaldi, Filippo M.; Handyside, Alan H.; Hoffmann, Eva R.
Authors of the University:
CIMADOMO DANILO
Handle:
https://iris.unipv.it/handle/11571/1531505
Published in:
NATURE GENETICS
Journal
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