Whole-exome sequencing, also known as exome sequencing, is a widely used next-generation sequencing (NGS) method that involves sequencing the protein-coding regions of the genome. The human exome represents less than 2% of the genome, but contains ~85% of known disease-related variants,1 making this method a cost-effective alternative to whole-genome sequencing.
Exome sequencing using exome enrichment can efficiently identify coding variants across a broad range of applications, including population genetics, genetic and complex disease research, and cancer studies.
Investigate the protein-coding regions of the genome with a comprehensive workflow solution.

Exome sequencing is a cost-effective approach when whole-genome sequencing is not practical or necessary. Sequencing only the coding regions of the genome enables researchers to focus their resources on the genes most likely to affect phenotype, and offers an accessible combination of turnaround time and price.
Whole-exome sequencing detects variants in coding exons, with the capability to expand targeted content to include untranslated regions (UTRs) and microRNA for a more comprehensive view of gene regulation. Whole-exome sequencing typically involves using hybrid-capture enrichment approaches to capture the protein-coding sequences. DNA libraries can be prepared in as little as 1 day and require only 4–5 Gb of sequencing per exome.
A fast, integrated whole-exome enrichment and sequencing library preparation kit for a wide range of applications.
A sensitive and comprehensive whole-exome sequencing kit for detecting low-frequency variants from formalin-fixed, paraffin-embedded (FFPE) samples.
Expand or enhance exome coverage with a custom spike-in panel designed for your targets of interest.
A highly sensitive library prep solution to detect low-abundance mutations from cell-free DNA.
Our most powerful sequencer for ultra-high-throughput projects, featuring up to 16 Tb output and 26 billion single reads per flow cell.
Scalable throughput and flexibility for virtually any genome, sequencing method, and scale of project.
User-friendly, flexible, reliable mid-throughput benchtop sequencing for a broad range of current and emerging applications.
Push-button alignment, followed by variant calling of Illumina exomes to rapidly identify disease-associated variants.
High-efficiency data interpretation for germline research whole-exome sequencing, with the support of explainable AI (XAI).
Explore comprehensive workflow offerings for whole-exome sequencing, including world-class support from Illumina.
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Illumina DRAGEN secondary analysis was developed to address important challenges associated with analyzing NGS data for a range of applications, from whole-exome sequencing to genome and transcriptome sequencing, methylome studies, and more. This software suite rapidly processes NGS data and enables tertiary analysis to drive insights. The available tools make up a highly accurate, comprehensive, and efficient solution that enables labs of all sizes and disciplines to do more with their genomic data.
Learn more about DRAGEN secondary analysisScientists discuss how DRAGEN pipelines and Illumina Connected Analytics helped them analyze exome sequencing data as well as whole-genome, transcriptome, and metagenome data for a chronic obstructive pulmonary disease (COPD) research project.

Dr Irina Iordanescu from Regina Maria Genetic Laboratory explains how her lab adopted NGS-based whole-exome and targeted sequencing, and how NGS helped speed up and expand sample processing while reducing costs.
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Whole-exome and RNA sequencing prove beneficial in uncovering mutations and pathways associated with rare disease.
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Read how researchers perform WES from tumor biopsy samples to better understand tumor onset and progression and identify cancer-related biomarkers.
Read articleIllumina benchtop sequencing systems are making NGS more accessible to laboratories worldwide. Explore a wide variety of applications and methods, from whole-exome sequencing to microbial sequencing, RNA-Seq, single-cell sequencing, and more.
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This method provides useful information about coding mutations associated with tumor progression. By sequencing less than 2% of the genome, it is possible to sequence to higher depth more economically. Learn more about cancer exome sequencing.

NGS-based exome analysis can help scientists uncover variants linked to rare and undiagnosed disorders. Learn more about rare disease genomics.

Whole-exome sequencing is a common approach to finding causal variants in cases of complex disorders. Learn more about complex disease research.

Achieve cost-effective, accurate, and sensitive RNA exome analysis of even difficult samples without sacrificing gene fusion discovery power. Learn more about RNA exome capture sequencing.

Regeneron Genetics Center scientists perform exome sequencing on clinical research data sets to identify relevant genetic associations.

Explore user-friendly tools for intuitive analysis of DNA sequencing data.

Researchers use exome sequencing, arrays, and other methods to identify gene variants linked to intellectual disability.

See a streamlined whole-exome sequencing workflow for germline CNV analysis, from library preparation to insights.

Determine the best kit for your needs based on project type, starting material, and method or application.

Exome sequencing helps researchers identify variants for an array designed for ADHD, autism, and schizophrenia studies.

Seek out a best-in-class NGS company with user-friendly bioinformatics tools and trusted support and service.
*Data calculations on file. Illumina, Inc., 2015