ScholarGate
アシスタント

手法を比較

選択した手法を並べて確認できます。異なる行はハイライト表示されます。

IBDマッピング×F統計量 (FST)×
分野遺伝学遺伝学
系統Process / pipelineProcess / pipeline
提唱年19871951
提唱者Eric Lander & David BotsteinSewall Wright
種類Genomic mapping methodPopulation differentiation measure
原典Lander, E. S., & Botstein, D. (1987). Homozygosity mapping of autosomal recessive disorders in consanguineous families. American Journal of Human Genetics, 36(3), 537–551. link ↗Wright, S. (1951). The genetical structure of populations. Annals of Eugenics, 15(4), 323–354. DOI ↗
別名IBD mapping, Autozygosity mapping, Homozygosity mappingFST, Wright's F-statistics, Population differentiation index
関連44
概要Identity-by-descent (IBD) mapping is a genetic mapping technique that identifies disease loci in consanguineous families or isolated populations by detecting homozygous chromosomal segments shared among affected individuals. Developed by Lander and Botstein in 1987, this method exploits the fact that rare disease alleles in related individuals must lie within shared ancestral DNA blocks. By mapping regions where affected individuals are homozygous at multiple markers, researchers can localize disease genes to narrowly defined genomic intervals without prior knowledge of the disease mechanism.F-statistics are a family of measures developed by Sewall Wright to quantify population genetic structure and the degree of genetic differentiation between populations. FST, the most widely used F-statistic, measures the proportion of total genetic variation attributable to differences between populations versus within populations. FST ranges from zero (no differentiation) to one (complete differentiation). These statistics have become fundamental tools for understanding population structure, detecting population admixture, and analyzing the evolutionary forces shaping genetic variation.
ScholarGateデータセット
  1. v1
  2. 3 出典
  3. PUBLISHED
  1. v1
  2. 3 出典
  3. PUBLISHED

検索へ スライドをダウンロード

ScholarGate手法を比較: IBD Mapping · F-statistics (FST). 2026-06-17に以下より取得 https://scholargate.app/ja/compare