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microarray-based comparative whole-genome resequencing cgr  (NimbleGen Systems GmbH)

 
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    NimbleGen Systems GmbH microarray-based comparative whole-genome resequencing cgr
    Microarray Based Comparative Whole Genome Resequencing Cgr, supplied by NimbleGen Systems GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/microarray-based+assay/microarray+based+comparative+whole+genome+resequencing+cgr/pm20143945-224-2-9
    Average 90 stars, based on 1 article reviews
    microarray-based comparative whole-genome resequencing cgr - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Microarray:

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics.
    Article Snippet: Microarray-based comparative whole-genome resequencing Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics
    Article Snippet: Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Identification of Genes and Genomic Islands Correlated with High Pathogenicity in Streptococcus suis Using Whole Genome Tilling Microarrays
    Article Snippet: In this study, we used NimbleGen (NimbleGen Systems, Madison, WI) microarray based comparative genome resequencing (CGR) technology to conduct a comprehensive genomic comparison of 31 S. suis strains of 23 serotypes from different clinical sources using genome sequence of a HP strain, GZ1, as the reference to gain a deeper insight into the species diversity, genome variation and virulence.

    Comparison:

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics.
    Article Snippet: Microarray-based comparative whole-genome resequencing Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics
    Article Snippet: Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Identification of Genes and Genomic Islands Correlated with High Pathogenicity in Streptococcus suis Using Whole Genome Tilling Microarrays
    Article Snippet: In this study, we used NimbleGen (NimbleGen Systems, Madison, WI) microarray based comparative genome resequencing (CGR) technology to conduct a comprehensive genomic comparison of 31 S. suis strains of 23 serotypes from different clinical sources using genome sequence of a HP strain, GZ1, as the reference to gain a deeper insight into the species diversity, genome variation and virulence.

    Sequencing:

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics.
    Article Snippet: Microarray-based comparative whole-genome resequencing Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics
    Article Snippet: Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Identification of Genes and Genomic Islands Correlated with High Pathogenicity in Streptococcus suis Using Whole Genome Tilling Microarrays
    Article Snippet: In this study, we used NimbleGen (NimbleGen Systems, Madison, WI) microarray based comparative genome resequencing (CGR) technology to conduct a comprehensive genomic comparison of 31 S. suis strains of 23 serotypes from different clinical sources using genome sequence of a HP strain, GZ1, as the reference to gain a deeper insight into the species diversity, genome variation and virulence.

    Transformation Assay:

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics.
    Article Snippet: Microarray-based comparative whole-genome resequencing Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics
    Article Snippet: Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Identification of Genes and Genomic Islands Correlated with High Pathogenicity in Streptococcus suis Using Whole Genome Tilling Microarrays
    Article Snippet: In this study, we used NimbleGen (NimbleGen Systems, Madison, WI) microarray based comparative genome resequencing (CGR) technology to conduct a comprehensive genomic comparison of 31 S. suis strains of 23 serotypes from different clinical sources using genome sequence of a HP strain, GZ1, as the reference to gain a deeper insight into the species diversity, genome variation and virulence.

    Construct:

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics.
    Article Snippet: Microarray-based comparative whole-genome resequencing Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Host-microbe interaction systems biology: lifecycle transcriptomics and comparative genomics
    Article Snippet: Microarray-based comparative whole-genome resequencing (CGR) (NimbleGen Systems, WI, USA) involves the use of an approximately 30-bp oligonucleotide every seven bases for both strands of a reference genome, where each probe can overlap adjacent probes by approximately 22 bases.

    Article Title: Identification of Genes and Genomic Islands Correlated with High Pathogenicity in Streptococcus suis Using Whole Genome Tilling Microarrays
    Article Snippet: In this study, we used NimbleGen (NimbleGen Systems, Madison, WI) microarray based comparative genome resequencing (CGR) technology to conduct a comprehensive genomic comparison of 31 S. suis strains of 23 serotypes from different clinical sources using genome sequence of a HP strain, GZ1, as the reference to gain a deeper insight into the species diversity, genome variation and virulence.



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    Image Search Results


    Cell type specific genes demonstrated at mRNA level. (A) Heat map of genes with cell type specific expression. (B) Heat map of selected genes with endothelial or epithelial cell type specific expression. (C) Immunohistochemistry staining of protein C1orf116 across human tissues showing its epithelial cell type specific expression. The panel shows a magnified view (20×) from tissue microarrays.

    Journal: Nucleic Acids Research

    Article Title: A transcriptomic and proteomic map of primary human cell types

    doi: 10.1093/nar/gkaf1498

    Figure Lengend Snippet: Cell type specific genes demonstrated at mRNA level. (A) Heat map of genes with cell type specific expression. (B) Heat map of selected genes with endothelial or epithelial cell type specific expression. (C) Immunohistochemistry staining of protein C1orf116 across human tissues showing its epithelial cell type specific expression. The panel shows a magnified view (20×) from tissue microarrays.

    Article Snippet: The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ , ].

    Techniques: Expressing, Immunohistochemistry, Staining