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DNA sequencing technologies: 2006–2016
by
Mardis, Elaine R
in
631/1647/514/1948
/ Analytical Chemistry
/ Animals
/ Biological Techniques
/ Biomedical research
/ Cloning
/ Computational Biology/Bioinformatics
/ Deoxyribonucleic acid
/ DNA
/ DNA - biosynthesis
/ DNA - genetics
/ DNA sequencing
/ Enzymes
/ Genetic testing
/ Genomes
/ Genomics
/ High-Throughput Nucleotide Sequencing
/ Humans
/ Innovations
/ Life Sciences
/ Medical research
/ Microarrays
/ Molecular biology
/ Next-generation sequencing
/ Nucleotide sequence
/ Organic Chemistry
/ perspective
/ Sequence Analysis, DNA - methods
/ Statistics as Topic
2017
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DNA sequencing technologies: 2006–2016
by
Mardis, Elaine R
in
631/1647/514/1948
/ Analytical Chemistry
/ Animals
/ Biological Techniques
/ Biomedical research
/ Cloning
/ Computational Biology/Bioinformatics
/ Deoxyribonucleic acid
/ DNA
/ DNA - biosynthesis
/ DNA - genetics
/ DNA sequencing
/ Enzymes
/ Genetic testing
/ Genomes
/ Genomics
/ High-Throughput Nucleotide Sequencing
/ Humans
/ Innovations
/ Life Sciences
/ Medical research
/ Microarrays
/ Molecular biology
/ Next-generation sequencing
/ Nucleotide sequence
/ Organic Chemistry
/ perspective
/ Sequence Analysis, DNA - methods
/ Statistics as Topic
2017
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Do you wish to request the book?
DNA sequencing technologies: 2006–2016
by
Mardis, Elaine R
in
631/1647/514/1948
/ Analytical Chemistry
/ Animals
/ Biological Techniques
/ Biomedical research
/ Cloning
/ Computational Biology/Bioinformatics
/ Deoxyribonucleic acid
/ DNA
/ DNA - biosynthesis
/ DNA - genetics
/ DNA sequencing
/ Enzymes
/ Genetic testing
/ Genomes
/ Genomics
/ High-Throughput Nucleotide Sequencing
/ Humans
/ Innovations
/ Life Sciences
/ Medical research
/ Microarrays
/ Molecular biology
/ Next-generation sequencing
/ Nucleotide sequence
/ Organic Chemistry
/ perspective
/ Sequence Analysis, DNA - methods
/ Statistics as Topic
2017
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Journal Article
DNA sequencing technologies: 2006–2016
2017
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Overview
In this Perspective, Elaine Mardis reviews a decade of DNA sequencing technology, from the introduction of Next-Generation Sequencing to single-molecule sequencing, including future applications that promise to further biological and biomedical research.
Recent advances in the field of genomics have largely been due to the ability to sequence DNA at increasing throughput and decreasing cost. DNA sequencing was first introduced in 1977, and next-generation sequencing technologies have been available only during the past decade, but the diverse experiments and corresponding analyses facilitated by these techniques have transformed biological and biomedical research. Here, I review developments in DNA sequencing technologies over the past 10 years and look to the future for further applications.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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