Twist PCR-Free WGS Library Preparation Kit

Twist Bioscience Logo White
Twist PCR-Free WGS Library Preparation Kit

The Twist PCR-Free WGS Library Preparation Kit is engineered for researchers who need their sequencing data to reflect the genome as it actually exists — not as amplification has reshaped it. By eliminating the PCR amplification step entirely, this kit preserves native genome representation from the outset, removing the single greatest source of coverage bias in whole genome sequencing workflows. Built on Twist’s optimised enzymatic fragmentation and high-efficiency ligation chemistry, the workflow delivers consistent insert sizes, minimised ligation bias, and uniform genome-wide coverage that supports confident variant characterisation from the first run.

Designed to scale from individual research projects to population-level sequencing studies, the PCR-Free WGS kit supports multiplexing of up to 1,536 samples per run via Twist’s full-length unique dual index (UDI) adapters — making it equally suited to high-throughput core laboratories and discovery programmes with large cohort requirements. As your authorised Australian distributor, Decode Science can support you with kit configurations, protocol guidance, and compatibility assessment for your sequencing platform and informatics pipeline.

Exclusive Offer for now!!

50% off 16 sample workflow kits & 50% off 96 sample kits. 

Submit Your Interest

Data

Why

It Matters

Download Instantly

Know in Detail

But... Why Choose PCR-Free WGS Library Prep?

Amplification-Free Prep for Native Genome

Minimised Ligation Bias for Maximum Conversion

Consistent Insert Size Control Across a Wide Input Range

Scale to 1,536-Plex Without Sacrificing Data Quality

Product Data: Performance Where It Counts

Robust Library Yield Maintained at Low Input

The PCR-Free WGS kit delivers strong library yields and consistent library size distribution even as DNA input is reduced, outperforming competitor PCR-free workflows at equivalent input levels. Efficient ligation chemistry drives conversion across input amounts — producing sequencer-ready libraries that don’t require amplification rescue when input is reduced.

Figure 1. PCR-free library yield comparison across inputs. Final library concentration (nM) was measured following PCR-free library preparation using the indicated DNA inputs. Twist PCR-Free WGS Library Preparation generated higher library yields than competitor workflows at equivalent inputs and maintained strong performance at lower inputs.

Reproducible Insert Size Control From 300 ng to 37.5 ng

Median insert sizes remain consistent across the full supported input range, from 300 ng down to 37.5 ng. Minimal read overlap across samples in this range confirms that fragment size control is maintained regardless of input quantity — supporting dependable genome-wide coverage without depth fluctuation between samples.

Figure 2. The kit produces consistently large inserts across a wide range of DNA samples. (A)Median Insert Size is represented for 300 ng, 75 ng, and 37.5 ng of NA12878 DNA sample input. (B) Percent Overlap (which measures how much paired-end sequencing reads redundantly cover the same DNA bases) is represented for 300 ng, 75 ng, and 37.5 ng of NA12878 sample input.

Tunable Fragment Lengths for Workflow Flexibility

Enzymatic fragmentation parameters can be adjusted to produce insert size distributions matched to the requirements of your sequencing platform and read length. This gives laboratories flexibility to optimise the prep for their specific instruments and analysis pipelines without sacrificing inter-batch reproducibility.

Figure 3. Tunability of Twist PCR-Free WGS Library Prep Kit.

A: Five electropherograms of NGS libraries generated using differing fragmentation times. 50 ng of high-quality gDNA was fragmented for various times at 32°C.

Consistent GC Coverage Across All Input Levels

One of the most persistent sources of WGS data quality problems is differential coverage across GC content — PCR amplification exacerbates this by further enriching already-accessible fragments. By removing amplification, the PCR-Free WGS kit maintains even coverage across GC content categories regardless of input, yielding cleaner, more interpretable genome-wide data.

Figure 4. The Twist PCR-Free WGS Library Preparation Kit provides more consistent coverage distribution across varying GC content. The kit shows minimized GC bias even at low inputs, thereby reducing the need for additional sequencing to achieve uniform coverage and better detection of variants in the high- and low-GC content regions.

Watch How It Works

Two steps to sequencer-ready whole genome libraries.

The PCR-Free WGS workflow is deliberately streamlined — complexity is removed at the chemistry level, not pushed onto the operator.

Step 1 — Enzymatic Fragmentation: Input DNA is enzymatically fragmented to produce consistent, tunable insert sizes across all samples in a batch. No sonication, no shear-related variability — just controlled, reproducible fragmentation that sets the foundation for uniform downstream coverage.

Step 2 — Adapter Ligation: Twist’s optimised ligase chemistry maximises adapter conversion efficiency while minimising ligation bias. The result is a sequencer-ready library that accurately represents the molecular diversity of your input, with no amplification step introducing artificial enrichment of any genomic region.

Why It Matters to You?

Because Whole Genome Sequencing Is Only as Good as What It Captures

Whole genome sequencing is increasingly the method of choice for variant discovery, structural analysis, and population-scale genomics — but the value of WGS data depends entirely on whether the library faithfully represents the genome that went into it. Amplification-based workflows introduce systematic biases that are difficult to distinguish from true biological signal, particularly in AT-rich regions, repetitive elements, and low-complexity sequences.

The PCR-Free WGS kit addresses this directly. Its impact is most relevant for:

Population and cohort genomics

 Large-scale studies demand per-sample consistency, reproducible coverage distributions, and the ability to scale indexing without index hopping or sample cross-contamination. UDI adapter compatibility and 1,536-plex capacity make this feasible at production scale.

Structural variant and CNV detection

Accurate copy number and structural variant calls depend on even baseline coverage across the genome. Amplification-induced regional bias creates false signals that complicate interpretation; PCR-free prep removes this confounder at source.

Germline variant discovery

Comprehensive, unbiased genome representation is the baseline requirement for germline variant calling, particularly in regions with extreme GC content or repetitive architecture that amplification-based methods handle poorly.

High-throughput sequencing cores

Consistent insert sizes, robust yields across a range of inputs, and multiplexing capacity that scales to 1,536 samples translate directly to higher instrument utilisation and lower per-sample sequencing cost.

Chris Wicky

Clinical Genomics Manager - ANZ & Country Manager - NZ

Planning a whole genome sequencing study or scaling an existing one?
 
Our team can help you assess input requirements, multiplexing strategy, and expected data output for your specific application. 

Related Products

Twist TrueAmp Library Prep Kit

High-fidelity amplification-based library prep for target enrichment and challenging low-input or FFPE samples

Twist Custom NGS Panels

Design and order target enrichment panels tailored to your gene list or genomic region of interest

Twist Exome 2.0

Comprehensive exome capture panel with proven uniformity across canonical and difficult targets

Resources

Download PCR-Free WGS Library Prep Product Sheet

Unlock with quick sign up!

    FAQs

     Amplification-free workflows are more sensitive to input DNA quality than PCR-based methods, as there is no amplification step to recover yield from degraded material. High molecular weight, intact genomic DNA is recommended. If your samples are degraded or of variable quality, the Twist TrueAmp Library Preparation Kit may be a better fit — contact Decode Science to discuss.

     The PCR-Free WGS kit maintains robust performance from 300 ng down to 37.5 ng DNA input, with consistent insert sizes and sequencing-ready yields across this range.

    The kit is compatible with Twist’s full-length UDI adapter system, supporting multiplexing of up to 1,536 uniquely indexed samples per sequencing run.

    In direct comparisons, the PCR-Free WGS kit delivers higher library yields than competitor PCR-free workflows at equivalent inputs. The absence of amplification removes duplicate reads from the sequencing output, meaning a greater proportion of reads generated are informative — improving effective sequencing depth per run.

     The kit is compatible with Illumina sequencing platforms. Contact Decode Science for guidance on read length optimisation and coverage depth requirements for your specific platform and study design.

     Yes. Amplification-free library prep is particularly well-suited to structural variant and copy number variant analysis, where even baseline coverage is essential. Removing PCR-induced regional enrichment reduces false positive signals in copy number calling.

    The Twist PCR-Free WGS Library Preparation Kit protocol is available from Decode Science on request.

    Talk to Us About PCR-Free WGS

    We only need these information to serve you better. Decode Science respects your privacy and will never spam you with unrelated content.



      Antibody EngineeringAquacultureCardiovascularCore FacilityCROsCytogeneticsDrug DiscoveryEarly stage biotechEnzyme EngineeringFood SafetyGermlineHorticulture (plant)ImmunologyInfectious DiseaseLivestockmRNA/RNANeuropathologiesNeuroscienceOncologyOncology Pre ClinicalPhysiologyProtein EngineeringRare DiseaseSoil and EnviromentalStructural BiologySynthetic BiologyTherapeuticsOther

      You agree to receive communications from Decode Science. View our Privacy Policy

      Twist TrueAmp Library Preparation Kit

      Twist Bioscience Logo White
      Twist TrueAmp Library Preparation Kit

      The Twist TrueAmp Library Preparation Kit is a precision-engineered solution for next-generation sequencing target enrichment workflows, purpose-built for laboratories that cannot afford to lose data from difficult samples. At its core is the Twist TrueAmp polymerase — a high-fidelity amplification enzyme optimised to suppress amplification-induced errors and GC-related bias, delivering the coverage uniformity your downstream variant analysis demands. Whether you’re working with pristine input or fighting the constraints of degraded FFPE material, TrueAmp is designed to keep your libraries representative and your results reproducible.

      Paired with optimised enzymatic fragmentation and a high-efficiency ligation step, the TrueAmp workflow delivers tunable, consistent insert sizes across a wide range of input quantities — making it well-suited to mixed-input workflows and scaled sequencing operations. From pre-capture yield to on-target coverage, every metric reflects the same design intent: higher library complexity, fewer reruns, and greater confidence in variant calls from the first pass. As your authorised Australian distributor, Decode Science can advise on kit configurations, protocol optimisation, and compatibility with your current target enrichment panels.

      Exclusive Offer for now!!

      50% off 16 sample workflow kits & 50% off 96 sample kits. 

      Submit Your Interest

      Data

      Why

      It Matters

      Download Instantly

      Know in Detail

      But... Why Choose TrueAmp Library Prep?

      Delivers Reliable Coverage Across the Hardest Genomic Regions

      High Conversion Efficiency From Low-Input and FFPE Samples

      High-Fidelity Amplification for Low VAF Variant Detection

      Consistent Fragment Sizes Across Inputs for Scalable Workflows

      Product Data: Performance Where It Counts

      Higher Yield and Coverage From Your Most Challenging Inputs

      When working with low-input or degraded FFPE DNA, pre-capture library yield is the first indicator of whether a prep has succeeded or failed. TrueAmp consistently delivers higher pre-capture yields alongside stronger mean target coverage — without sacrificing library complexity. The result is more sequenceable molecules from the same difficult starting material, fewer failed runs, and less pressure on irreplaceable samples.

      Figure 1. Performance comparison of enriched libraries with low-input FFPE degraded samples (DIN <2.2) between TrueAmp Library Preparation Kit and competitor K kit, demonstrating the optimal solution for challenging sample applications. (A) The Twist TrueAmp Library Preparation Kit generates superior pre-capture library yield, indicative of high library construction and amplification efficiency. (B) The Twist TrueAmp Library Preparation Kit shows higher library complexity when compared with the competitor’s kits. This allows for more unique DNA molecules that are sequenceable in the library, reducing sequencing costs. (C) Achieves higher coverage.

      Uniform Coverage With Fewer Zero-Coverage Targets

      Gaps in coverage are not just an inconvenience — in target enrichment workflows, they represent missed variants and incomplete answers. TrueAmp reduces the proportion of zero-coverage targets across captured regions, improving coverage uniformity and giving you greater confidence that every target in your panel has been adequately interrogated. What you sequence is what you intended to sequence.

      Figure 2. Performance comparison of enriched libraries with low-input FFPE degraded samples (DIN <2.2) between TrueAmp Library Preparation Kit and competitor K kit, demonstrating the optimal solution for challenging sample applications. (A) Delivers excellent coverage uniformity, measured by a lower fold-80 base penalty. (B) Reduced regions with no coverage, measured by Percentage of Zero Coverage Targets.

      Consistent Performance Across GC-Extreme Regions

      GC content remains one of the most persistent sources of coverage bias in NGS library preparation. The TrueAmp Polymerase Mix is specifically formulated to maintain uniform amplification across both high- and low-GC regions — and critically, this performance holds even as PCR cycle number increases. For panels that include regulatory elements, repetitive regions, or GC-skewed targets, this translates directly to more complete and trustworthy data.

      Figure 3. Normalized GC bias trace showing improved coverage of the Twist TrueAmp polymerase. Libraries were prepared with Twist TrueAmp Library Preparation Kit and amplified with different polymerases and cycles.

      Upper panel: Normalized coverage against GC window plots comparing polymerases at 3 cycles of PCR.
      Lower panel: Normalized coverage against GC window plots comparing polymerases at 16 cycles of PCR.

      Reproducible Fragment Sizes Across a Wide Input Range

      Fragment size consistency underpins downstream QC, sequencing performance, and batch-to-batch reproducibility. TrueAmp delivers tightly controlled insert size distributions across a broad range of input DNA quantities, making it well-suited to mixed-input batching strategies and high-throughput workflows where uniformity at scale is non-negotiable.

      Figure 4. Reliable library size with Twist TrueAmp Library Prep Kit, even from ultra-low inputs.

      500 ng, 100 ng, 50 ng, 10 ng and 1 ng (gDNA) were fragmented at 32°C. 3, 5, 6, 8, 10, and 14 cycles of PCR were utilized for amplification, respectively. Samples have been performed in duplicates.

      A: Electropherograms of NGS libraries generated with the Twist TrueAmp Library Preparation Kit.

      B: Concentration of libraries after amplification for various DNA inputs.

      Tunable Insert Sizes for Application-Specific Optimisation

      Not every workflow demands the same library architecture. TrueAmp’s enzymatic fragmentation step produces repeatable, tunable insert sizes that can be adjusted to match your sequencing platform requirements and downstream analysis needs — providing flexibility without sacrificing the reproducibility your pipeline depends on.

      Figure 5. Tunability of Twist TrueAmp Library Prep Kit.

      A: Five electropherograms of NGS libraries generated using differing fragmentation times. 50 ng of high-quality gDNA was fragmented for various times at 32°C. 6 cycles of PCR were utilized for amplification.
      B: Median insert size vs time. 50 ng of high-quality gDNA was fragmented for various times at 32°C. Amplification was performed using 6 cycles of PCR. Samples were captured using the Twist Exome 2.0 panel.

      Watch How TrueAmp Works

      Three steps. Consistent results.

      The TrueAmp workflow is built around three precision-optimised steps that together deliver libraries you can sequence with confidence:

      Step 1 — Enzymatic Fragmentation: Extracted DNA is fragmented enzymatically to produce consistent, tunable insert sizes — no sonication required, no shear-related variability.

      Step 2 — Adapter Ligation: An optimised Twist ligase formulation maximises adapter conversion efficiency while minimising ligation bias, preserving molecular diversity from the very first step.

      Step 3 — Amplification via TrueAmp Polymerase: High-fidelity amplification boosts yield from challenging templates, maintains coverage uniformity across GC extremes, and supports sensitive downstream variant detection.

      Why It Matters to You?

      Because the Hardest Samples Carry the Most Important Questions

      In translational research and clinical genomics, the samples most critical to a study are often the ones that are hardest to sequence. Archival FFPE blocks, fine-needle aspirates, liquid biopsy specimens, and low-cellularity tumour sections are routinely degraded, limited in quantity, or variable in quality — and standard library prep kits frequently fail them.

      TrueAmp was engineered specifically for this challenge. Its impact is most pronounced where it matters most:

      Oncology and somatic variant detection

      Low VAF variants in heterogeneous tumour samples require error suppression and high complexity to call reliably. TrueAmp’s fidelity advantage directly supports this.

      FFPE-derived biobanked samples

      Legacy tissue samples carry irreplaceable longitudinal or retrospective data. Higher pre-capture yields from degraded input means more of that data becomes sequenceable.

      Target enrichment workflows

      Coverage uniformity across all captured targets — including GC-extreme regions — is the difference between a complete and an incomplete picture of your panel of interest.

      High-throughput core laboratories

       Reproducible fragment sizes and consistent performance across input ranges simplify batch QC, reduce failed libraries, and increase instrument utilisation.

      Chris Wicky

      Clinical Genomics Manager - ANZ & Country Manager - NZ

      Working with FFPE, low-input, or otherwise challenging samples?
       
      Our team can help you assess whether TrueAmp fits your current workflow and what to expect from your first run.

      Related Products

      Twist PCR-Free WGS Library Preparation Kit

      Bias-free whole genome libraries from high-quality input DNA, no amplification required

      Twist Custom NGS Panels

      Design and order target enrichment panels tailored to your gene list or genomic region of interest

      Twist Exome 2.0

      Comprehensive exome capture panel with proven uniformity across canonical and difficult targets

      Resources

      FAQs

      TrueAmp is specifically validated for challenging input types including FFPE-derived DNA (DIN <2.2), low-input samples, and variable-quality clinical specimens. It also performs well with high-quality genomic DNA across a wide input range.

      Input requirements vary by sample type and downstream application. TrueAmp is designed to deliver high conversion efficiency even from low-input and degraded samples — contact Decode Science for guidance specific to your sample type and target enrichment panel.

      Yes. TrueAmp is validated for use with both the Twist Universal Adapter System and the Twist UMI Adapter System, supporting error correction workflows for somatic variant detection and liquid biopsy applications.

      Absolutely. TrueAmp is designed to integrate with the full Twist target enrichment ecosystem, including Twist Custom NGS Panels and standard off-the-shelf panels such as Twist Exome 2.0.

      In head-to-head benchmarking against a leading competitor kit (Competitor K), TrueAmp generated superior pre-capture library yields, higher library complexity, and greater mean target coverage from the same degraded FFPE input — preserving more sequenceable molecules from precious, limited-quantity samples.

      TrueAmp libraries are compatible with Illumina sequencing platforms. For platform-specific guidance, contact our team.

      Protocols for TrueAmp with both the Universal Adapter System and UMI Adapter System are available from Decode Science on request.

      Talk to Us About TrueAmp

      We only need these information to serve you better. Decode Science respects your privacy and will never spam you with unrelated content.



        Antibody EngineeringAquacultureCardiovascularCore FacilityCROsCytogeneticsDrug DiscoveryEarly stage biotechEnzyme EngineeringFood SafetyGermlineHorticulture (plant)ImmunologyInfectious DiseaseLivestockmRNA/RNANeuropathologiesNeuroscienceOncologyOncology Pre ClinicalPhysiologyProtein EngineeringRare DiseaseSoil and EnviromentalStructural BiologySynthetic BiologyTherapeuticsOther

        You agree to receive communications from Decode Science. View our Privacy Policy