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Allelic association under map error and recombinational heterogeneity: A tale of two sites

机译:地图错误和重组异质性下的等位基因关联:两个地点的故事

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摘要

Recombination acts on the genetic map, not on the physical map. On the other hand, the physical map is usually more accurate. Choice of the genetic or physical map for positional cloning by allelic association depends on the goodness of fit of data to each map under an established model. Huntington disease illustrates the usual case in which the greater reliability of physical data outweighs recombinational heterogeneity. Hemochromatosis represents an exceptional case in which unrecognized recombinational heterogeneity retarded positional cloning for a decade. The Malecot model performs well for major genes, but no approach assuming either equilibrium or disequilibrium has been validated for oligogenes contributing to common disease. In this case of greatest interest, the power of allelic association relative to linkage is less clear than for major genes.
机译:重组作用于遗传图谱,而不是物理图谱。另一方面,物理图通常更准确。通过等位基因关联对位置克隆的遗传图谱或物理图谱的选择取决于已建立模型下每个图谱的数据拟合度。亨廷顿病说明了一种通常的情况,在这种情况下,物理数据的更高可靠性胜过重组异质性。血色素沉着症代表了一种特殊情况,其中无法识别的重组异质性延迟了十年的位置克隆。 Malecot模型对主要基因表现良好,但尚无假设平衡或不平衡的方法能够验证导致常见疾病的寡基因。在这种最令人感兴趣的情况下,与主要基因相比,等位基因关联相对于连锁的功能还不清楚。

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