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Veterinary Fungal Pathogen Whole Genome Sequencing

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WGS Service Technical Process Why Choose Us?

Whole genome sequencing (WGS) has revolutionized the field of veterinary medicine by providing comprehensive insights into the genetic makeup of fungal pathogens. Biovenic's veterinary fungal pathogen whole genome sequencing service offers state-of-the-art solutions to identify, analyze, and understand the complexities of fungal infections in veterinary settings. Fungal whole genome re-sequencing is an advanced process that aligns sequencing reads to a reference genome, typically one with at least 98% sequence similarity to the genome being studied. Our service allows for the precise identification of genetic variations, such as single nucleotide polymorphisms (SNPs), insertions and deletions (InDels), copy number variations (CNVs), and structural variations (SVs). Our fungal WGS sequencing Service leverages high-throughput sequencing and customized bioinformatic analyses to accelerate the understanding of fungal-induced diseases and facilitate drug discovery.

Veterinary Fungal Pathogen WGS Service

Our fungal whole genome sequencing service encompasses a comprehensive workflow designed to deliver accurate, timely, and actionable genomic insights.

Sample Collection and Preparation
We accept various sample types including animal tissue isolates, feed samples, environmental samples, and more. We conduct strict quality control protocols to ensure samples to meet the required standards for high-quality sequencing.
DNA Extraction and Sequencing
We utilize state-of-the-art next-generation sequencing (NGS) platforms, we offer high-throughput capabilities to generate vast amounts of genomic data efficiently. Our optimized protocols for DNA library preparation ensure the generation of robust and high-quality sequencing data.
Bioinformatics Analysis
We provide customized bioinformatic analysis. Sequencing reads are aligned to a reference genome with ≥ 98% sequence similarity, ensuring high accuracy in variant detection. Sophisticated algorithms identify SNPs, InDels, CNVs, and SVs, providing a detailed map of genetic variations. Variants are annotated to predict their functional impact, aiding in the understanding of their roles in disease and resistance.
Interpretation and Reporting
Our detailed reports include insights into detected variants, their potential impacts, and implications for disease and treatment. We provide post-analysis consultations to discuss the findings and their relevance to your specific needs.

Technical Process of Fungus De Novo Sequencing

Fig.1 Schematic diagram of fungal pathogen whole genome sequencing process. (BioVenic Original)

Our Advantages

Fungal pathogens pose significant challenges in both veterinary and medical fields, contributing to a range of diseases. Traditional diagnostic and research methods often lack the resolution required to fully understand the genetic intricacies of these pathogens. Whole genome re-sequencing offers several critical benefits:

  • High-Resolution Genomic Insights
    Detects even minor genetic variations with high precision, crucial for understanding pathogenicity and resistance mechanisms.
  • Efficient Variant Detection
    Identifies SNPs, InDels, CNVs, and SVs that can influence disease progression, virulence, and treatment responses.
  • Enhanced Disease Pathogenesis Research
    Facilitates the tracking of fungal strains and outbreaks with high accuracy and pathogenesis research in animal diseases.
  • Drug Resistance Profiling
    Uncovers genetic markers associated with antifungal resistance, guiding effective treatment strategies.

BioVenic's fungal whole genome sequencing service provides a powerful tool for the accurate identification and analysis of genetic variations in fungal pathogens. By leveraging advanced sequencing technologies and customized bioinformatics, we help veterinary researchers combat fungal diseases more effectively. Partner with us to enhance your diagnostic capabilities, improve treatment outcomes, and advance the understanding of fungal genomics.

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