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Based on the search results, it's evident that "sequencing by synthesis" is a significant aspect of DNA sequencing. This technique involves the incorporation of nucleotide analogs bearing fluorescent reporters, allowing for the identification of the incorporated nucleotide by its fluorescent emissions. The process is conducted simultaneously on a large number of different template molecules spread out on a solid surface, and it involves the use of terminators that block further polymerization, enabling the addition of only a single base by a polymerase enzyme to each growing DNA copy strand. The sequencing reaction is conducted in cycles, with the terminators being removed after each cycle, and another set of cycles of nucleotide additions is initiated.
The Illumina sequencing technology, which is based on sequencing by synthesis (SBS), supports buy bmk glycidate both single-read and paired-end libraries. This technology offers high-resolution genome sequencing and efficient sequence assembly, de novo sequencing, and more. It involves the incorporation of fluorescently labeled dNTPs into a DNA template during controlled cycles of DNA synthesis, with a modified DNA polymerase incorporating these nucleotides and a reversible terminator allowing the addition of a single base at a time.
The process of DNA sequencing by synthesis has shown great promise as a new sequencing platform, with significant advancements reported recently. It has contributed to the advancement of biomedical research in various aspects, including the elucidation of DNA-protein interactions on a genome-wide scale, the study of gene expression with single copy transcript sensitivity, and the discovery of noncoding RNAs.
In summary, the synthesis sequence in the context of DNA sequencing involves the incorporation of nucleotide analogs bearing fluorescent reporters, the use of terminators to block further polymerization, and the initiation of cycles of nucleotide additions, resulting in the production of DNA sequence reads of uniform quality.