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    Introduction


    Meta Hi-C sequencing is defined as a technology that integrates Hi-C technology with metagenomic sequencing. Based on the technical principles of Hi-C, all microorganisms in the sample are subjected to fixation and cross-linking, restriction enzyme digestion, proximal DNA ligation, and capture processes to obtain spatially proximal DNA fragments, followed by metagenomic library construction and sequencing.

    Applications


    Detection of the relationship between antibiotic resistance genes and hosts, research on the transfer and spread of antibiotic resistance genes

    Detection of the relationship between plasmids and hosts

    Detection of the relationship between mobile genetic elements and hosts

    Detection of the relationship between bacteriophages and hosts

    Product Advantages


    Decipher microbial spatial interaction networks

    Enhance microbial genome assembly quality

    Precisely link functional genes to host microbes

    Unveil spatial organization patterns of microbial communities

    Integrate three-dimensional information

    Workflow


    Sample Preparation

    Sample Preparation

    Sufficient Samples

    Sample QC

    Sample Preparation
    Hi-C Proximity Ligation

    Hi-C Proximity Ligation

    DNA Cross-linking and Fixation,Restriction Enzyme Digestion,Ligation,Biotin Capture

    Library Construction

    Library Construction

    DNA Library Preparation

    Library QC

    Library Construction
    Sequencing

    Sequencing

    Platform:illumina

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    Technical Principle


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    Data Delivery Format


    FASTQ

    Comparison with Other Technologies


    Dimension

    Hi-C Technology

    Meta Hi-C Technology

    Technical Position

    Analysis of 3D chromatin structure in a single species

    Interaction analysis among complex microbial communities

    Research Object

    Single species

    Complex microbial mixed samples

    Application Scenario

    Research on 3D genome structure and gene regulation mechanism of a single species

    Analysis of host-plasmid/ARGs associations and species interactions in complex microbial communities

    ore Purpose

    Construct chromosome-level genome of a single species and analyze chromatin interactions

    Analyze horizontal gene transfer and host-mobile element associations in microbial communities

    Article Case


    Data

    Journal

    Impact Factor

    Title

    2025.9

    Nature Microbiology

    19.4

    Phages with a broad host range are common across ecosystems

    2024.3

    Nature Communications

    16.6

    Host- plasmid network structure in wastewater is linked to antimicrobial resistance genes

    2023.11

    Nature Communications

    16.6

    Hi-C metagenome sequencing reveals soil phage–host interactions

    2022.1

    Nature Biotechnology

    54.9

    Generating lineage-resolved, complete  metagenome-assembled genomes from complex  microbial communities

    2021.2

    Elife

    10.8

    MetaHiC phage-bacteria infection network reveals active cycling phages of the healthy human gut

    Sample Submission Requirements


    Meta HiC Sequencing pecifications:

    Sample Type

    Weight

    Precautions

    Feces

    2~5 g

    Store at -80℃ and transport on dry ice

    Soil

    5~8 g

    Other types of samples can be consulted with the application scientist

    Contact Us

    If you are interested in our long-read sequencing services or potential collaboration, please contact us. Our team is ready to support your research with tailored solutions. We also welcome feedback from users to help us improve our services.

    Contact Us
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    Contact Us

    E-mail:service@sailgene.com

    WhatsApp:1-(617)-223-7544

    Tel:16172237544

    Email:service@sailgene.com

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