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  2. Genealogical DNA test - Wikipedia

    en.wikipedia.org/wiki/Genealogical_DNA_test

    A genealogical DNA test is a DNA-based genetic test used in genetic genealogy that looks at specific locations of a person's genome in order to find or verify ancestral genealogical relationships, or (with lower reliability) to estimate the ethnic mixture of an individual. Since different testing companies use different ethnic reference groups ...

  3. Haplogroup T (mtDNA) - Wikipedia

    en.wikipedia.org/wiki/Haplogroup_T_(mtDNA)

    Wilde et al. (2014) tested mtDNA samples from the Yamna culture, the presumed homeland of Proto-Indo-European speakers. They found T2a1b in the Middle Volga region and Bulgaria, and T1a both in central Ukraine and the Middle Volga.

  4. Haplogroup X (mtDNA) - Wikipedia

    en.wikipedia.org/wiki/Haplogroup_X_(mtDNA)

    Haplogroup X is a human mitochondrial DNA (mtDNA) haplogroup. It is found in North America, Europe, Western Asia, North Africa, and the Horn of Africa. A mtDNA-based map of major human migrations. Haplogroup X diverged from haplogroup N roughly 30,000 years ago (just prior to or during the Last Glacial Maximum).

  5. Human mitochondrial DNA haplogroup - Wikipedia

    en.wikipedia.org/wiki/Human_mitochondrial_DNA_ha...

    [1] (a) Pie charts on the map. (b) Counts of haplogroups in table format. For populations details, see 1000 Genomes Project#Human genome samples. In human genetics, a human mitochondrial DNA haplogroup is a haplogroup defined by differences in human mitochondrial DNA. Haplogroups are used to represent the major branch points on the ...

  6. Haplogroup B (mtDNA) - Wikipedia

    en.wikipedia.org/wiki/Haplogroup_B_(mtDNA)

    This phylogenetic tree of haplogroup B subclades is based on the paper by Mannis van Oven and Manfred Kayser Updated comprehensive phylogenetic tree of global human mitochondrial DNA variation [1] and subsequent published research. B'R11'R24. B4'5 – China (Han from Zhanjiang, Paleolithic remains from Tianyuan Cave), the Philippines B4

  7. Mitochondrial Eve - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_Eve

    Branches are identified by one or more unique markers which give a mitochondrial "DNA signature" or "haplotype" (e.g. the CRS is a haplotype). Each marker is a DNA base-pair that has resulted from an SNP mutation. Scientists sort mitochondrial DNA results into more or less related groups, with more or less recent common ancestors.

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