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Illumina second generation sequencing, which is suitable for generating enormous numbers of transcript sequences that can be used for functional genomic analysis of longan.
Second generation sequencing.
Genome-wide studies of bacterial gene expression are shifting from microarray technology to second generation sequencing platforms.
Recent studies have demonstrated the capability of second generation sequencing (SGS) to provide coverage of short tandem repeats (STRs) found within the human genome.
We employed hybridization capture methods and second generation sequencing technology to obtain >30 kb of exon sequences from 26 nuclear genes for both H. gigas and Dugong dugon.
Second generation sequencing has prompted a number of groups to re-interrogate the transcriptomes of several bacterial and archaeal species.
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They also reviewed recently published genome assemblies generated with various second-generation sequencing strategies.
Metagenomics has been enabled by the advances in second-generation sequencing, with current sequencing machines generating reads that are shorter than those generated with gel-capillary technology.
With the advent of second-generation sequencing, it has become increasingly possible to generate large quantities of data.
Next-generation (massively parallel, or second-generation) sequencing technologies have largely supplanted first-generation technologies.
Next-generation sequencing (NGS) is a more recent technology, also named second-generation sequencing (SGS) and has been commercially available since 2004.
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