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  2. Carlson curve - Wikipedia

    en.wikipedia.org/wiki/Carlson_Curve

    The term was coined by The Economist [3] and is named after author Rob Carlson. [1]Carlson curves illustrate the rapid (in some cases above exponential growth) decreases in cost, and increases in performance, of a variety of technologies, including DNA sequencing, DNA synthesis and a range of physical and computational tools used in protein production and in determining protein structures.

  3. Personal genomics - Wikipedia

    en.wikipedia.org/wiki/Personal_genomics

    The cost of sequencing a human genome is dropping rapidly, due to the continual development of new, faster, cheaper DNA sequencing technologies such as "next-generation DNA sequencing". The National Human Genome Research Institute, an arm of the U.S. National Institutes of Health , has reported that the cost to sequence a whole human-sized ...

  4. MT-ND4 - Wikipedia

    en.wikipedia.org/wiki/MT-ND4

    The MT-ND4 gene is located in human mitochondrial DNA from base pair 10,760 to 12,137. [5] [11] The MT-ND4 gene produces a 52 kDa protein composed of 459 amino acids.[12] [13] MT-ND4 is one of seven mitochondrial genes encoding subunits of the enzyme NADH dehydrogenase (ubiquinone), together with MT-ND1, MT-ND2, MT-ND3, MT-ND4L, MT-ND5, and MT-ND6.

  5. Genome skimming - Wikipedia

    en.wikipedia.org/wiki/Genome_skimming

    Using genome skimming, the sequencing of the entire plastid genome, or plastome, can be done at a fraction of the cost and time required for typical sequencing approaches like Sanger sequencing. [3] Plastomes have been suggested as a method to replace traditional DNA barcodes in plants, [3] such as the rbcL and matK barcode genes.

  6. $1,000 genome - Wikipedia

    en.wikipedia.org/wiki/$1,000_genome

    Rothberg estimated the cost of the sequence—the first personal genome produced using a next-generation sequencing platform—at $1 million. [12] Watson's genome sequence was published in 2008. [13] A number of scientists have highlighted the cost of additional analysis after performing sequencing.

  7. Whole genome sequencing - Wikipedia

    en.wikipedia.org/wiki/Whole_genome_sequencing

    Because of this, full genome sequencing is considered a disruptive innovation to the DNA array markets as the accuracy of both range from 99.98% to 99.999% (in non-repetitive DNA regions) and their consumables cost of $5000 per 6 billion base pairs is competitive (for some applications) with DNA arrays ($500 per 1 million basepairs).

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