The QIAseq Ultralow Input Library Kit incorporates new, ultra-efficient end-repair and ligation chemistries into a complete and streamlined solution. These kits allow the generation of high-quality libraries from limited and damaged DNA sample types using a streamlined, 2.5-hour workflow – starting from 10 pg –100 ng fragmented DNA for a robust solution suitable for a wide range of research applications.
Confidently process samples from 10 pg to 100 ng DNA input. The new, highly efficient chemistries in QIAseq Ultralow Input Kits eliminate the issue of performance drop-off below 1 ng of input DNA. Novel enzymes and buffer formulations maximize the performance of sub-nanogram samples while also enabling the flexibility to process samples with up to 100 ng input DNA.
QIAseq Ultralow Input Library Kits enable superior library conversion rates (>30%) from samples below 1 ng of input using newly optimized chemistry formulations. These consistent conversion rates of genomic information to adapter-ligated library molecules cover a 1000-fold range – from 10 pg to 10 ng of DNA input – and set an industry-leading benchmark. The low percentage of adapter dimers minimizes library contamination compared to the competition.
QIAseq Ultralow Input chemistry is ideal for: low-input whole genome sequencing; cfDNA for liquid biopsy applications; and limited sources of DNA from FFPE tissue, laser capture microdissection (LCM) and fine needle aspirations (FNA).
Next-generation sequencing (NGS) is a driving force for many new and exciting applications, including cancer research, stem cell research, metagenomics, population genetics and medical research. While NGS technology is continuously improving, library preparation remains a process bottleneck for many labs and a limiting factor in the types of samples that can successfully generate NGS data.
As a result, capturing the maximum possible genomic information in an NGS library is both critical and challenging, when starting from limited or damaged DNA samples. Standard library preparation methods that apply to many sample types – such as circulating cell-free DNA, FFPE DNA, ancient DNA and ChIP-seq DNA – can result in quality-related problems. These problems limit the utility of the data generated, from low library yield or conversion rates to high percentages of reads derived from adapter dimer molecules.
PCR-based library amplification is normally required if the input DNA amount is below 100 ng. This protocol is optional, and enables high-fidelity amplification of the DNA library using the QIAseq HiFi PCR Master Mix that is included in the kit.
While adapters are not included in the 12-reaction size kit, two sets of 12-plex adapters with a single six-nucleotide barcode can each be ordered separately (QIAGEN cat. nos. 180985, 180986).
QIAGEN QIAseq Ultralow Input Library Kits have been designed to be the definitive solution for generating high quality libraries from even very challenging NGS samples. Intended for NGS researchers who seek a single library prep kit compatible with a wide range of ultra-low, low and standard input fragmented DNA – QIAseq Ultralow Input Library Kits enable new insights by maximizing performance, particularly from limited and damaged DNA sample types. The streamlined, 2.5-hour protocol for generating libraries from fragmented DNA using QIAseq Ultralow Input Library Kits also enables straightforward automation on different liquid-handling platforms.
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