Next-Generation DNA Sequencing Methods

Методы секвенирования ДНК нового поколения
Elaine R. Mardis
2008-06-24

full-length cDNA analysismassively parallel sequencingmetagenomic analysisnext-generation DNA sequencingnoncoding RNA discovery
Recent scientific discoveries that resulted from the application of next-generation DNA sequencing technologies highlight the striking impact of these massively parallel platforms on genetics. These new methods have expanded previously focused readouts from a variety of DNA preparation protocols to a genome-wide scale and have fine-tuned their resolution to single base precision. The sequencing of RNA also has transitioned and now includes full-length cDNA analyses, serial analysis of gene expression (SAGE)-based methods, and noncoding RNA discovery. Next-generation sequencing has also enabled novel applications such as the sequencing of ancient DNA samples, and has substantially widened the scope of metagenomic analysis of environmentally derived samples. Taken together, an astounding potential exists for these technologies to bring enormous change in genetic and biological research and to enhance our fundamental biological knowledge.
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DNA preparation protocols that previously produced focused readouts can now be applied across entire genomes at fine resolution.
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Next-generation sequencing platforms have transformed genetics by enabling massively parallel, genome-wide analyses with single-base resolution.
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RNA sequencing has expanded to full-length cDNA analysis, SAGE-based methods, and discovery of noncoding RNAs.
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The broad capabilities of next-generation sequencing are expected to significantly advance genetic and biological research and fundamental biological knowledge.
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These technologies enable sequencing of ancient DNA and substantially broaden metagenomic analyses of environmental samples.

next-generation DNA sequencing technologies and their applications to genomic, transcriptomic, ancient-DNA, and environmental metagenomic samples

the expanded scale, single-base resolution, and novel research capabilities enabled by massively parallel sequencing

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2008-06-24
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Elaine R. Mardis
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