INVIEW™ MICROBIOME PROFILING 2.0
Discover the diversity of microbial communities

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Highlights:
- 2 x 300bp paired-end sequencing, multiplexing of up 96 samples (Illumina).
- Full-length 16S gene sequencing, multiplexing of up to 10 samples (PacBio).
- Optimised bioinformatics pipelines for samples of any complexity.
- Highly sensitive and accurate phylogenetic characterisation and quantification of microbial communities down to species level.
- Available with ISO 17025-accredited service standard.
INVIEW™ stands for streamlined high-quality next generation sequencing (NGS) solutions for specific applications.
INVIEW™ MICROBIOME Profiling 2.0, as a highly sensitive method, allows the identification of both low and highly complex microbial populations. By sequencing either multiple hypervariable regions of the 16S rRNA or ITS regions, microbial detection of low numbers of very rare taxa on genus level can be achieved.
INVIEW™ MICROBIOME High Specificity, as a highly specific method, is based on PacBio’s SMRT sequencing. Ultra long reads and the novel Reads of Insert (ROI) approach enable high quality long amplicon sequencing. Full-length 16S gene sequencing (~ 1400 bp) allows for characterisation of microbial communities down to species level at the highest taxonomic resolution.
Brochures
GATC Biotech's Universal Primer List
The following brochure presents GATC Biotech’s universal primer list, for use in PCR and other DNA analyses.
GATC’s INVIEW™ MICROBIOME Profiling 2.0 - High Throughput Microbiome Sequencing Using Illumina’s MiSeq
GATC’s INVIEW MICROBIOME Profiling 2.0 represents a powerful tool to analyze microbiomes of all kinds from various sources. Discover the benefits of the service, which uses Illumina’s sequencing-by-synthesis technology to sequence hypervariable regions of the 16S rRNA gene or the ITS regions of microbial samples, and tips for successful microbiome sequencing.
Next-Generation Sequencing: Sample Requirements
The following application note details the sample requirements when performing next-generation sequencing using GATC Biotech instruments.
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