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    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)

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    • Sequencing Only on Illumina Sequencer
    • Sequencing Only on PacBio Sequencer
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  3. Advancing Polyploid Assembly and Large-Genome Assembly in Plants Through Long-Read Sequencing

Advancing Polyploid Assembly and Large-Genome Assembly in Plants Through Long-Read Sequencing

Introduction:

High-quality reference genomes are complete, contiguous, accurate, and representative of a given species. They are highly valued in scientific research because they serve as the foundation for studying gene function, gene expression, organismal evolution, genetic variation, disease-causing mutations, epigenomics, and for comparative genomics across species. They also provide a framework upon which sequences from similar organisms can be mapped and assembled. Large and complex genomes were difficult or impossible to construct prior to the introduction of third-generation technology. Sanger sequencing was used to determine the sequences of small genomes, however, that approach requires the burdensome, time consuming, and expensive technique of primer walking. Next-generation sequencing (NGS) technology produces short reads that are difficult to assemble. The creation of reference quality genomes with these technologies, especially with very large and/or polyploid genomes, presents often insurmountable challenges.

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Whole Genome SequencingDe novo SequencingAmplicon SequencingShotgun Metagenomic SequencingDirected DNA Methylation Sequencing (DM-Seq)mRNA SequencingSingle Cell Gene ExpressionVisium HD Spatial Gene ExpressionXenium In Situ Spatial TranscriptomeOlink ProteomicsUntargeted Metabolomics
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Copyright © 2026 Novogene Inc. All rights reserved.For Research Use Only. Not for Clinical Diagnostic Use.
Novogene AMEA
  • Novogene AMEA
  • Genomics
    • Human Whole Genome Sequencing
    • Plant and Animal Whole Genome Sequencing
    • Microbial Whole Genome Sequencing
    • Plant and Animal De novo Sequencing
    • Microbial De novo Sequencing
    • Shotgun Metagenomics Sequencing
    • Amplicon Sequencing
    • Whole Exome Sequencing
    Transcriptomics
    • mRNA Sequencing
    • Total RNA Sequencing
    • Full-Length Transcriptome Sequencing
    • Whole Transcriptome Sequencing
    • Small RNA Sequencing
    • Circular RNA Sequencing
    • Metatranscriptome Sequencing
    • Prokaryotic RNA Sequencing
    Single Cell & Spatial Omics
    • Single Cell Gene Expression
    • Single Cell Immune Profiling Sequencing
    • Single Cell Long Read Transcriptome
    • Visium HD Spatial Gene Expression
    • Stereo-Seq Spatial Gene Expression
    • Xenium In Situ Spatial Transcriptome
    Epigenomics
    • Whole Genome Bisulfite Sequencing (WGBS)
    • Directed DNA Methylation Sequencing (DM-Seq) NEW
    • Reduced Representation Bisulfite Sequencing (RRBS)
    • Chromatin Immunoprecipitation Sequencing (ChIP-seq)
    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)

    Premade Library

    • Sequencing Only on Illumina Sequencer
    • Sequencing Only on PacBio Sequencer
    Proteomics and Metabolomics
    • Olink Proteomics
    • Quantitative Proteomics
    • Untargeted Metabolomics
  • PromotionsPromotions
    • Platforms
    • Automated Delivery Platform (Falcon)
    • Bioinformatics Analysis Tool (NovoMagic)
    • Customer Service System (CSS)
    • Brochures
    • Case Studies
    • Webinar
    • Blog
    • Sample Guidelines
    • 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
    • Careers
  • Contact UsContact Us
  1. Home
  2. Resources
  3. Advancing Polyploid Assembly and Large-Genome Assembly in Plants Through Long-Read Sequencing

Advancing Polyploid Assembly and Large-Genome Assembly in Plants Through Long-Read Sequencing

Introduction:

High-quality reference genomes are complete, contiguous, accurate, and representative of a given species. They are highly valued in scientific research because they serve as the foundation for studying gene function, gene expression, organismal evolution, genetic variation, disease-causing mutations, epigenomics, and for comparative genomics across species. They also provide a framework upon which sequences from similar organisms can be mapped and assembled. Large and complex genomes were difficult or impossible to construct prior to the introduction of third-generation technology. Sanger sequencing was used to determine the sequences of small genomes, however, that approach requires the burdensome, time consuming, and expensive technique of primer walking. Next-generation sequencing (NGS) technology produces short reads that are difficult to assemble. The creation of reference quality genomes with these technologies, especially with very large and/or polyploid genomes, presents often insurmountable challenges.

ServicesServices menu

SupportSupport menu

CompanyCompany menu

Services
Whole Genome SequencingDe novo SequencingAmplicon SequencingShotgun Metagenomic SequencingDirected DNA Methylation Sequencing (DM-Seq)mRNA SequencingSingle Cell Gene ExpressionVisium HD Spatial Gene ExpressionXenium In Situ Spatial TranscriptomeOlink ProteomicsUntargeted Metabolomics
Support
NovoMagic Bioinformatics Analysis ToolCustomer Service SystemFalcon Intelligent Delivery Platform
Company
About UsOur LocationsOur PlatformsNewsCareersContact Us
LinkedInLinkedIn hoverYouTubeYouTube hoverXX hover
Copyright © 2026 Novogene Inc. All rights reserved.For Research Use Only. Not for Clinical Diagnostic Use.
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