Each sentence tells a cell to make a special molecule called a protein. These proteins control everything in a cell. In this way, DNA is like the boss of a company, and not the brain of the cell. It issues instructions, but doesn't do very much of the actual work :) These proteins help each cell do its job. Each gene makes one protein, and only one protein.
— Once you have chosen a test and received your autosomal results there is still a great deal more fun to be had. Independent tools and websites created by scientists and enthusiasts allow you to take the raw data provided from FTDNA, 23andMe and Ancestry DNA and explore them in astounding detail–giving you a wide variety of new admixtures, phasing options, chromosome browsers, SNP tools and connections with family across the world. Gedmatch is our favorite because they have so many wonderful and meticulously updated tools from a variety of sources. Easily upload your raw data and run your results for free (if you love the tools, don’t forget to donate and uncover even more options.)
I took the AncestryDNA test in 2016 and was disappointed by my initial report, which put my results into a giant area encompassing at least 15 countries labeled “Asia East.” Since then, Ancestry has updated its algorithm and reference population to make its results more specific, but it still only supports 17 regions in Asia and West Asia compared to 296 regions in Europe.

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Similarly, mitochondrial DNA, or mtDNA, is used by direct-to-consumer DNA tests to trace your direct maternal lineage and determine maternal haplogroups. While most DNA lives in your cells' nuclei, mtDNA lives in the mitochondria. Mitochondria are the cells' powerhouses – their 37 genes are necessary for cellular energy production and respiration. Previous research suggested that mtDNA is inherited directly from your mother, but a recent study found that biparental mtDNA may be more common. This discovery may affect maternal haplogroup testing in DNA tests in the future, but for now, it’s safe to assume your results are correct.
Following a recent case in Phoenix, in which a patient who had been in a coma for nine years gave birth, Arizona lawmaker David Livingston sponsored a senate bill that would require certain occupations to submit DNA samples along with fingerprints for use by law enforcement. Though Senate Bill 1475 has been updated since its initial draft, it could set a precedent that normalizes collection of DNA samples from everyone, not just those suspected or charged with a violent crime. 
Most of the services we tested use genotyping to read your DNA. Genotyping looks for specific markers in your genetic code. For something like ancestry testing, genotyping is effective because it identifies known variants in your DNA. Scientifically speaking, genotyping’s weakness is that it can only recognize previously identified markers. This is one reason DNA tests’ accuracy relies so heavily on the DNA database size; there must be enough information available and identified genetic variants in the database to recognize new customers’ markers.
First of all, what is DNA? The letters stand for Deoxyribonucleic acid, a molecule encoding the genetic instructions used in the development and functioning of all known living organisms. Its structure was first described by Nobel Prize winners Crick and Watson in 1953. The information in DNA is stored as a code made up of four chemical bases: adenine (A), guanine (G), cytosine (C), and thymine (T). The DNA bases pair up with each other, A with T and C with G, to form units called base pairs. Each base is also attached to a sugar molecule and a phosphate molecule. Together, a base, sugar, and phosphate are called a nucleotide. Nucleotides are arranged in two long strands that form a spiral called a double helix. The structure of the double helix is somewhat like a ladder, with the base pairs forming the ladder’s rungs and the sugar and phosphate molecules forming the vertical sidepieces of the ladder.
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