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  1. By doing this type of analysis with more and more genes (e.g., adding in genes D, E, and F and figuring out their relationships to A, B, and C) we can build up linkage maps of entire chromosomes. In linkage maps, you may see distances expressed as centimorgans or map units rather than recombination frequencies.

  2. Map distances are always calculated for one pair of loci at a time. However, by combining the results of multiple pairwise calculations, a genetic map of many loci on a chromosome can be produced (Figure 11.2.2). A genetic map shows the map distance, in cM, that separates any two loci, and the position of these loci relative to all other mapped ...

  3. en.wikipedia.org › wiki › Gene_mappingGene mapping - Wikipedia

    Gene mapping or genome mapping describes the methods used to identify the location of a gene on a chromosome and the distances between genes. Gene mapping can also describe the distances between different sites within a gene. The essence of all genome mapping is to place a collection of molecular markers onto their respective positions on the ...

  4. 23 sty 2015 · We propose new distance measures for estimating genetic distances between individuals when allelic variation, gene dosage and recombination could compromise standard approaches. We present four distance measures based on single nucleotide polymorphisms (SNP) and evaluate them against previously published measures using coalescent-based simulations.

  5. A genetic linkage map describes the position of a species' or experimental population's known genes or genetic markers in terms of recombination frequency rather than a particular physical distance along each chromosome. A linkage map is a graph that shows how frequently markers recombine during homologous chromosome crossover.

  6. Explain why a map is an important aid to genome sequencing. Distinguish between the terms ‘genetic map’ and ‘physical map’. Describe the different types of marker used to construct genetic maps, and state how each type of marker is scored.

  7. Genetic maps provide an outline for the location of genes within a genome, and they estimate the distance between genes and genetic markers on the basis of recombination frequencies during meiosis. Physical maps provide detailed information about the physical distance between the genes.

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