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High-throughput DNA sequencing techniques have greatly accelerated the pace of research into the repertoires of antibody and T cell receptor gene rearrangements that confer antigen specificity to adaptive immune responses.
High-throughput DNA sequencing techniques offer the ability to rapidly and cheaply sequence material such as whole genomes.
In recent years, next-generation high-throughput DNA sequencing techniques have provided fascinating opportunities in the life sciences and dramatically improved the efficiency and speed of gene discovery [6].
The development of novel high-throughput DNA sequencing techniques has led to an ever increasing flood of data.
Next-generation high-throughput DNA sequencing techniques, including that provided by the Illumina Genome Analyzer, provide high speed and throughput (gigabase level).
Several high-throughput DNA sequencing techniques are commercially available which are based on different technologies (Table 2) (for details, see recent reviews, including [ 15]).
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The organisms were studied by analyzing the V4 region of 16S rDNA using a high-throughput DNA sequencing technique.
To identify GR primary target genes in adipocytes, in this report, we applied a combination of chromatin immunoprecipitation (ChIP) and a high throughput DNA sequencing technique (called ChIPseq) to isolate genome-wide GR binding regions (GBRs) in 3T3-L1 adipocytes.
Although the number of omic techniques is ever expanding, the most developed techniques are high-throughput DNA sequencing, transcriptomics (studying gene expression), epigenomics (studying epigenetic regulation of gene expression), proteomics (studying large sets of proteins; the proteome), and metabolomics (studying large sets of metabolites; the metabolome).
Many recent advances in plant genetics have resulted from improvements in high-resolution technologies for measuring SVs, including microarray-based techniques, and more recently, high-throughput DNA sequencing.
Much of the recent attention in plant genetics is the result of the availability of high-resolution technologies for measuring these variants, including microarray-based techniques, and more recently, high-throughput DNA sequencing.
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