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Novogene
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  • Genomics
    • Human Whole Genome Sequencing
    • Whole Exome Sequencing
    • Plant and Animal Whole Genome Sequencing
    • Plant and Animal De Novo Sequencing
    • Microbial Whole Genome Sequencing
    • Microbial De Novo Sequencing

    Metagenomics

    • Shotgun Metagenomics Sequencing
    • Amplicon Sequencing

    Transcriptomics

    • mRNA Sequencing
    • Swift & Express mRNA Sequencing New!
    • Full-Length Transcriptome Sequencing
    • Prokaryotic RNA Sequencing
    • Metatranscriptome Sequencing
    • Total RNA Sequencing
    • Small RNA Sequencing (sRNA‑seq)
    • Whole Transcriptome Sequencing

    Single Cell & Spatial Omics

    • 10x Single Cell Gene Expression
    • Illumina PIP-seq Single Cell 3’ RNA Sequencing New!
    • Spatial Transcriptomics Sequencing New!

    Epigenomics

    • Whole Genome Bisulfite Sequencing (WGBS)
    • Enzymatic Methylation Sequencing
    • Directed Methylation Sequencing (DM-Seq) New!
    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Chromatin Immunoprecipitation Sequencing (ChIP-seq)
    • Cleavage Under Targets & Tagmentation (CUT&Tag) New!
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)
    • Reduced Representation Bisulfite Sequencing (RRBS)

    Proteomics

    • Quantitative Proteomics New!
    • PTM Proteomics New!
    • Olink Proteomics New!

    Metabolomics

    • Untargeted Metabolomics

    Premade Library

    • Sequencing Only on Illumina Sequencer
    • Sequencing Only on Ultima Sequencer
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    • Cancer Research
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    • mRNA Sequencing
    • Illumina Lane Sequencing

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mRNA SequencingSwift & Express mRNA SequencingTotal RNA SequencingHuman Whole Genome SequencingWhole Exome Sequencing10x Single Cell Gene ExpressionIllumina PIP-seq Single Cell 3’ RNA SequencingSpatial Transcriptomics SequencingWhole Genome Bisulfite Sequencing (WGBS)Quantitative ProteomicsUntargeted MetabolomicsShotgun Metagenomics SequencingMetatranscriptome SequencingSequencing Only on Illumina SequencerSequencing Only on Ultima SequencerFull-Length Transcriptome SequencingChromatin Immunoprecipitation Sequencing (ChIP-seq)
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Copyright © 2026 Novogene Corporation Inc. All rights reserved. For Research Use Only.
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    • Cart
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Novogene
  • Novogene
  • Genomics
    • Human Whole Genome Sequencing
    • Whole Exome Sequencing
    • Plant and Animal Whole Genome Sequencing
    • Plant and Animal De Novo Sequencing
    • Microbial Whole Genome Sequencing
    • Microbial De Novo Sequencing

    Metagenomics

    • Shotgun Metagenomics Sequencing
    • Amplicon Sequencing

    Transcriptomics

    • mRNA Sequencing
    • Swift & Express mRNA Sequencing New!
    • Full-Length Transcriptome Sequencing
    • Prokaryotic RNA Sequencing
    • Metatranscriptome Sequencing
    • Total RNA Sequencing
    • Small RNA Sequencing (sRNA‑seq)
    • Whole Transcriptome Sequencing

    Single Cell & Spatial Omics

    • 10x Single Cell Gene Expression
    • Illumina PIP-seq Single Cell 3’ RNA Sequencing New!
    • Spatial Transcriptomics Sequencing New!

    Epigenomics

    • Whole Genome Bisulfite Sequencing (WGBS)
    • Enzymatic Methylation Sequencing
    • Directed Methylation Sequencing (DM-Seq) New!
    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Chromatin Immunoprecipitation Sequencing (ChIP-seq)
    • Cleavage Under Targets & Tagmentation (CUT&Tag) New!
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)
    • Reduced Representation Bisulfite Sequencing (RRBS)

    Proteomics

    • Quantitative Proteomics New!
    • PTM Proteomics New!
    • Olink Proteomics New!

    Metabolomics

    • Untargeted Metabolomics

    Premade Library

    • Sequencing Only on Illumina Sequencer
    • Sequencing Only on Ultima Sequencer
  • PromotionsPromotions
    • Platforms
    • Service & Support
    • Automated Delivery Platform (Falcon)
    • Bioinformatics Analysis Tool (NovoMagic)
    • Customer Service System (CSS)
    • Case Study
    • Blog
    • Webinar
    • Brochure
    • Cancer Research
    • Immuno-oncology
    • Agrigenomics
    • Environment
    • Food Science
    • Human Microbiome
    • Plant and Animal Microbiome
    • Drug Discovery and Development
    • Rare and Complex Diseases
    • About Us
    • Our Locations
    • News & Events
    • Careers
  • Contact UsContact Us
    • mRNA Sequencing
    • Illumina Lane Sequencing

ServicesServices menu

CompanyCompany menu

Contact UsContact Us menu

Service SupportService Support menu

Services
mRNA SequencingSwift & Express mRNA SequencingTotal RNA SequencingHuman Whole Genome SequencingWhole Exome Sequencing10x Single Cell Gene ExpressionIllumina PIP-seq Single Cell 3’ RNA SequencingSpatial Transcriptomics SequencingWhole Genome Bisulfite Sequencing (WGBS)Quantitative ProteomicsUntargeted MetabolomicsShotgun Metagenomics SequencingMetatranscriptome SequencingSequencing Only on Illumina SequencerSequencing Only on Ultima SequencerFull-Length Transcriptome SequencingChromatin Immunoprecipitation Sequencing (ChIP-seq)
Company
About UsOur LocationsNews & EventsCareers
Contact Us
Contact Us
Service Support
Automated Delivery Platform (Falcon)Bioinformatics Analysis Tool (NovoMagic)Customer Service System (CSS)
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Copyright © 2026 Novogene Corporation Inc. All rights reserved. For Research Use Only.
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Food Science

Overview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Overview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Genomics Application in Food Science

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

Genomics Application in Food Science

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

More services

Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)

More services

Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)

Tell Us More About Your Next Project

We are able to support your research by generating high-quality, publication-ready data in a rapid time-frame. Reach out to us and we will get back to you shortly.
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Food Science

Overview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Overview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Next-Generation Sequencing (NGS) technologies have several applications in food science, from metagenomic analysis of foodborne pathogens to whole genome sequencing for food source tracking or identification of a single cultured isolate. Metagenomics also allows for the monitoring of the food microbiome and the emergence of any antibiotic resistance among pathogenic strains. Developments in NGS technologies have led to huge progress in the tracking of pathogenic outbreaks and the creation of sanitation protocols in production facilities. NGS can detect unexpected contaminations in food production lines and avoid the costs of product recalls.

Preview

Genomics Application in Food Science

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

Genomics Application in Food Science

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

Genomics supports food science by helping researchers understand the biological basis of food quality, composition, and functional traits. It can reveal genetic factors related to flavor, texture, nutritional value, and shelf-life across different food sources.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

It also enables deeper study of fermentation, ingredient variation, and biological processes involved in food production. These insights support innovation in food development and contribute to more precise and science-based quality improvement.

More services

Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)

More services

Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Animal and Plant Whole Genome Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Genome Bisulfite Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Whole Transcriptome Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Shotgun Metagenomic Sequencing
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
Reduced Representation Bisulfite Sequencing (RRBS)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)
RNA Immunoprecipitation Sequencing (RIP-seq)

Tell Us More About Your Next Project

We are able to support your research by generating high-quality, publication-ready data in a rapid time-frame. Reach out to us and we will get back to you shortly.
Concact Us
(Tell Us More About Your Next Project)
Concact Us
(Tell Us More About Your Next Project)
Your Privacy ChoicesPrivacy PolicyCookie PolicyCareers