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Recombination and meiosis models, means, and evolution

Once per life cycle, mitotic nuclear divisions are replaced by meiosis I and II - reducing chromosome number from the diploid level to a haploid genome and recombining chromosome arms by crossing-over. In animals, all this happens during formation of eggs and sperm - in yeasts before spore formation. The mechanisms of reciprocal exchange at crossover/chiasma sites are central to mainstream meiosis. To initiate the meiotic exchange of DNA, surgical cuts are made as a form of calculated damage that subsequently is repaired by homologous recombination. These key events are accompanied by ancillar.

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  • "Once per life cycle, mitotic nuclear divisions are replaced by meiosis I and II - reducing chromosome number from the diploid level to a haploid genome and recombining chromosome arms by crossing-over. In animals, all this happens during formation of eggs and sperm - in yeasts before spore formation. The mechanisms of reciprocal exchange at crossover/chiasma sites are central to mainstream meiosis. To initiate the meiotic exchange of DNA, surgical cuts are made as a form of calculated damage that subsequently is repaired by homologous recombination. These key events are accompanied by ancillar."@en

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  • "Online-Publikation"
  • "Aufsatzsammlung"
  • "Electronic books"
  • "Electronic books"@en

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  • "Recombination and meiosis models, means, and evolution"@en
  • "Recombination and meiosis models, means, and evolution"
  • "Recombination and meiosis : models, means, and evolution"
  • "Recombination and Meiosis : Models, Means, and Evolution"