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  2. Genealogical DNA test - Wikipedia

    en.wikipedia.org/wiki/Genealogical_DNA_test

    There are three major types of genealogical DNA tests: Autosomal (which includes X-DNA), Y-DNA, and mtDNA. Autosomal DNA tests look at chromosome pairs 1–22 and the X part of the 23rd chromosome. The autosomes (chromosome pairs 1–22) are inherited from both parents and all recent ancestors.

  3. Y-STR - Wikipedia

    en.wikipedia.org/wiki/Y-STR

    Y-STRs are often used in forensics, paternity, and genealogical DNA testing. Y-STRs are taken specifically from the male Y chromosome. These Y-STRs provide a weaker analysis than autosomal STRs because the Y chromosome is only found in males, which are only passed down by the father, making the Y chromosome in any paternal line practically ...

  4. Genetic genealogy - Wikipedia

    en.wikipedia.org/wiki/Genetic_genealogy

    In 2007, 23andMe was the first company to offer saliva-based direct-to-consumer testing, [13] and the first to use autosomal DNA for ancestry testing. [ 14 ] [ 15 ] An autosome is one of the 22 chromosomes other than the X or Y chromosomes.

  5. Ancestry tests are used to deepen divisions when they are ...

    www.aol.com/news/ancestry-tests-used-deepen...

    Though humans can have different skin tones, speak different languages or have different genders, we all share 99.9% of our DNA. Ancestry tests are used to deepen divisions when they are ...

  6. List of Y-STR markers - Wikipedia

    en.wikipedia.org/wiki/List_of_Y-STR_markers

    The Y-STR markers in the following list are commonly used in forensic [1] and genealogical DNA testing. DYS454 is the least diverse, and multi-copy marker DYS464 is the most diverse Y-STR marker. The location on the Y-chromosome of numbered Y-STR markers can be roughly given with cytogenetic localization. For example, DYS449 is located at Yp11 ...

  7. Genetic testing - Wikipedia

    en.wikipedia.org/wiki/Genetic_testing

    Genetic testing, also known as DNA testing, is used to identify changes in DNA sequence or chromosome structure. Genetic testing can also include measuring the results of genetic changes, such as RNA analysis as an output of gene expression , or through biochemical analysis to measure specific protein output. [ 1 ]

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