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Showing 21-40 of 236 results
  1. Targeted Whole Genome Sequencing of the Capripoxvirus Genome from Clinical Tissue Samples and Lyophilized Vaccine Batches

    Diseases caused by Capripoxviruses (CaPVs) are of great economic importance in sheep, goats, and cattle. Since CaPV strains are serologically...
    Elisabeth Mathijs, Frank Vandenbussche in Viral Metagenomics
    Protocol 2024
  2. Freshwater Viral Metagenome Analyses Targeting dsDNA Viruses

    Viral metagenomics is one of the most widely used approaches to study viral population genomics. With the recent development of bioinformatic tools,...
    Kira Moon, Jang-Cheon Cho in Viral Metagenomics
    Protocol 2024
  3. Cancer Sample Analysis Utilizing Single-Nucleotide Polymorphism Array and Array Comparative Genomic Hybridization

    Chromosomal microarray, including single-nucleotide polymorphism (SNP) array and array comparative genomic hybridization (aCGH), enables the...
    Benjamin Kang, Hong **ao, ... Lina Shao in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  4. Profiling Chromosome Topological Features by Super-Resolution 3D Structured Illumination Microscopy

    Three-dimensional structured illumination microscopy (3D-SIM) and fluorescence in situ hybridization on three-dimensional preserved cells (3D-FISH)...
    Eunice Fabian-Morales, Alfredo Rodríguez, ... Sara Frias in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  5. Methods of Detection and Mechanisms of Origin of Complex Structural Genome Variations

    Based on classical karyoty**, structural genome variations (SVs) have generally been considered to be either “simple” (with one or two breakpoints)...
    Protocol 2024
  6. Evaluating Chromosome Instability and Genotoxicity Through Single Cell Quantitative Imaging Microscopy

    Across eukaryotes, genome stability is essential for normal cell function, physiology, and species survival. Aberrant expression of key genes or...
    Rubi Campos Gudiño, Kailee A. Rutherford, Kirk J. McManus in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  7. Studying the Dynamics of Tunneling Tubes and Cellular Spheres

    Cancer cytogenetic analyses often involve cell culture. However, many cytogeneticists overlook interesting phenotypes associated with cultured cells....
    Sanjana Thanedar, Eric Heng, ... Henry H. Heng in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  8. Characterizing Chemotherapy/Radiotherapy-Induced Genome Chaos in Hodgkin’s Lymphoma Patients Using M-FISH

    Hodgkin lymphoma (HL) is one of the most common lymphomas, with an incidence of 3 per 100,000 persons. Current treatment uses a cocktail of genotoxic...
    Sandra Ramos, Sara Frias in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  9. The Digital World of Cytogenetic and Cytogenomic Web Resources

    The dynamic growth of technological capabilities at the cellular and molecular level has led to a rapid increase in the amount of data on the genes...
    Andrzej Kasperski, Henry H. Heng in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  10. High-Resolution FISH Analysis Using DNA Fibers Generated by Molecular Combing

    Molecular combing is a technique used to stretch hundreds of consistent DNA molecules in parallel on a glass surface, with a resolution of two...
    Sandra Louzada, Fengtang Yang in Cancer Cytogenetics and Cytogenomics
    Protocol 2024
  11. Enrichment, Sequencing, and Identification of DNA Bacteriophages from Fecal Samples

    Research on individual viruses and phages, as well as viral populations (viromes), is greatly expanding. Phages and viromes are increasingly...
    Quentin Lamy-Besnier, Julian R. Garneau in Viral Metagenomics
    Protocol 2024
  12. Viromes of Plants Determined by High-Throughput Sequencing of Virus-Derived siRNAs

    Plants growing in open airfields can be infected by several viruses even as a multiple infection. Virus infection in crops can lead to a serious...
    Nikoletta Jaksa-Czotter, Zsuzsanna Nagyné Galbács, ... Éva Várallyay in Viral Metagenomics
    Protocol 2024
  13. Metagenomic Analyses of Viruses in the Orchid Mycorrhizal Interaction Using Improved Assemble Tools

    In nature, mycorrhizal association with soil-borne fungi is indispensable for orchid species. Compatible mycorrhizal fungi form endo-mycorrhizal...
    Kota Kambara, Hanako Shimura, ... Chikara Masuta in Viral Metagenomics
    Protocol 2024
  14. From Metagenomics to Ecogenomics: NGS-Based Approaches for Discovery of New Circular DNA Single-Stranded Viral Species

    Viruses comprise the most abundant genetic material in the biosphere; however, global viral genomic population (virome) has been largely...
    Enrique A. Guevara-Rivera, Edgar A. Rodríguez-Negrete, ... Jesús Méndez-Lozano in Viral Metagenomics
    Protocol 2024
  15. Identification of DNA Viruses in Ancient DNA from Herbarium Samples

    Herbaria encompass millions of plant specimens, mostly collected in the nineteenth and twentieth centuries that can represent a key resource for...
    Gianluca Grasso, Silvia Rotunno, ... Valeria Bianciotto in Viral Metagenomics
    Protocol 2024
  16. Application of Nanopore-Based Sequencing to Identify Virus Infections in Woody Plants

    Plant viruses threaten the yield and quality of crops. Efficient and affordable pathogen diagnosis is crucial to regulate the trade of plant...
    Serafina Serena Amoia, Michela Chiumenti, Angelantonio Minafra in Viral Metagenomics
    Protocol 2024
  17. Recovery of Recombinant Rotaviruses by Reverse Genetics

    Rotaviruses are the primary cause of severe gastroenteritis in infants and young children throughout the world. To combat rotavirus illness, several...
    Chantal A. Agbemabiese, Asha A. Philip, John T. Patton in Reverse Genetics of RNA Viruses
    Protocol 2024
  18. Plasmid-Based Lassa Virus Reverse Genetics

    Several mammarenaviruses cause hemorrhagic fever (HF) disease in humans and pose a significant public health problem in their endemic regions. The...
    Luis Martínez-Sobrido, Cheng** Ye, Juan Carlos de la Torre in Reverse Genetics of RNA Viruses
    Protocol 2024
  19. Reverse Genetics of Hepatitis C Virus Using an RNA Polymerase I-Mediated Transcription

    The reverse genetics system commonly used for the production of hepatitis C virus (HCV), which is a major causative agent of liver diseases, involves...
    Ryosuke Suzuki, Tetsuro Suzuki in Reverse Genetics of RNA Viruses
    Protocol 2024
  20. Exploring the Archaeal Virosphere by Metagenomics

    During the past decade, environmental research has demonstrated that archaea are abundant and widespread in nature and play important ecological...
    Yifan Zhou, Yongjie Wang, ... Mart Krupovic in Viral Metagenomics
    Protocol 2024
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