DNA Adapters Set 1 – Set 2 for Illumina Sequencing Indexed Adapter Oligonucleotide Sets for NGS Library Preparation

The DNA Adapters Set 1 – Set 2 for Illumina are double-stranded oligonucleotide adapter sets designed for ligation to fragmented DNA libraries during next-generation sequencing (NGS) library preparation workflows. These indexed adapter sets enable sample multiplexing, cluster amplification, and compatibility with Illumina sequencing platforms.

Role of DNA Adapters in Illumina Sequencing

In Illumina sequencing chemistry, DNA adapters are synthetic oligonucleotides ligated to both ends of DNA fragments. They serve several essential molecular functions:

  • Provide priming sites for PCR amplification

  • Enable hybridization to the flow cell surface

  • Contain index sequences for multiplexing

  • Support cluster generation

Illumina sequencing-by-synthesis (SBS) technology is described in:

Illumina sequencing workflow.Stages in the library preparation. Steps... |  Download Scientific Diagram

Adapter Structure

Illumina-compatible adapters typically contain:

  1. P5 or P7 flow cell binding sequence

  2. Index sequence (barcode)

  3. Sequencing primer binding site

  4. Optional UMI (Unique Molecular Identifier)

Flow cell cluster amplification mechanisms are detailed by:

Set 1 vs Set 2 – Indexed Multiplexing

DNA Adapters Set 1 and Set 2 generally differ in their index barcode combinations. Index diversity enables:

  • Sample multiplexing within a single sequencing run

  • Reduced index cross-talk

  • Demultiplexing during bioinformatic analysis

Multiplex sequencing principles are described by:

Indexed adapters are critical for high-throughput sequencing projects in:

  • Whole genome sequencing (WGS)

  • RNA sequencing (RNA-Seq)

  • Targeted gene panels

  • Amplicon sequencing

RNA-Seq workflow documentation:

AffiNGS® DNA Adapters Set 1 - Set 2 for Illumina

Library Preparation Workflow

Typical workflow using DNA Adapters Set 1 or Set 2:

  1. DNA fragmentation

  2. End repair

  3. A-tailing

  4. Adapter ligation

  5. PCR enrichment

  6. Library quantification

  7. Sequencing

PCR enzymology reference:

Enzymatic ligation background:

Technical Specifications (Typical Parameters)

  • Format: Double-stranded oligonucleotide adapters

  • Platform Compatibility: Illumina sequencing systems

  • Index Type: Single or dual index

  • Purification: HPLC or PAGE purified

  • Concentration: Supplied at defined µM concentration

  • Application: NGS library construction

Quality control parameters:

  • OD260/280 ratio

  • Mass spectrometry validation

  • Sequence verification

Oligonucleotide synthesis quality standards are discussed by:

Scheme for Illumina MiSeq multiplex library preparation using the... |  Download Scientific Diagram

Cluster Generation and Sequencing

After adapter ligation, libraries hybridize to complementary oligos on the Illumina flow cell surface (P5/P7). Bridge amplification generates clonal clusters for sequencing.

Cluster amplification reference:

Sequence-by-synthesis chemistry background:

Applications

DNA Adapters Set 1 – Set 2 are widely used in:

  • Genomic research

  • Clinical research sequencing

  • Agricultural genomics

  • Microbial genomics

  • Cancer research

  • Transcriptomics

NIH cancer genomics resource:

Agricultural genomics (USDA):

Data Processing and Demultiplexing

Indexed reads are demultiplexed post-sequencing using bioinformatics pipelines.

Bioinformatics fundamentals:

Technical Summary

  • Product: DNA Adapters Set 1 – Set 2

  • Use: Illumina-compatible NGS library preparation

  • Function: Adapter ligation, indexing, multiplexing

  • Application: Genomics, transcriptomics, targeted sequencing

DNA Adapters Set 1 – Set 2 provide essential molecular components for indexed NGS library preparation workflows compatible with Illumina sequencing systems. These adapter sets enable efficient multiplex sequencing, reliable cluster generation, and high-throughput genomic analysis within standardized molecular biology laboratory environments.