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Novogene data analysis rna seq
Data Analysis Rna Seq, supplied by Novogene, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/rna-seq+data+analysis/rna+seq/pm41945392-275-3-24
Average 86 stars, based on 1 article reviews
data analysis rna seq - by Bioz Stars, 2026-09
86/100 stars

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Sequencing:

Article Title: Insulin-like growth factor binding protein 7 identified in aged dental pulp by single-cell RNA sequencing.
Article Snippet: Library construction and sequencing, RNA-seq data analysis process, identification of 197 DEGs, and enrichment of KEGG were performed based on the procedures Novogene Bioinformatics 198 Technology Co., Ltd (Beijing, China) provided.

Article Title: Phenyl salicylate induces neurotoxicity and early Alzheimer's disease-like symptoms through ndrg1-regulated myelin damage, increasing bace1 in zebrafish.
Article Snippet: • Phenyl salicylate caused dosedependently neurotoxicity in zebrafish.. • Early AD-like symptoms were triggered by phenyl salicylate.. • Phenyl salicylate induced myelin damage via downregulating of ndrg1.

Article Title: JAG1/Notch Pathway Inhibition Induces Ferroptosis and Promotes Cataractogenesis
Article Snippet: RNA-Seq data analysis was conducted through NovoMagic ( magic.novogene.com ) (accessed on 25 March 2024).

Article Title: Transcriptomic and metabolomic analysis provides insight into imazethapyr toxicity to non-target plants.
Article Snippet: Imazethapyr is a widely used imidazolinone herbicide worldwide, and its potential adverse effects on non-target plants have raised concerns.. Understanding the mechanisms of imazethapyr phytotoxicity is crucial for its agro-ecological risk assessment.. Here, the comprehensive molecular responses and metabolic alterations of Arabidopsis in response to imazethapyr were investigated.

Article Title: 2-Hydroxy-4-n-octyloxybenzophenone induces developmental neurotoxicity and multiple sclerosis-like symptoms through cacna1a regulated Ca 2 + inward flow and microglial activation.
Article Snippet: RNA-seq data analysis was conducted by Experimental Department in the Novogene (Novogene bioinformatics Technology Co. Ltd, China).

Article Title: Imazethapyr-Induced Inhibition of Arabidopsis Root Growth Associated with Disrupting Auxin Signal to Alter Cell Wall Remodeling.
Article Snippet: Imazethapyr, a widely used herbicide, exhibits a long persistence in soils and can cause injury to rotational crops.. Here, we discovered that imazethapyr inhibits primary root elongation in Arabidopsis by inhibiting cell division and expansion rather than damaging the organization of root meristem.. Integration of transcriptomic and metabolomic analysis revealed that imazethapyr downregulated multiple genes related to cell wall loosening and modification, leading to increased cell wall thickness and inhibited cellular expansion in Arabidopsis roots.

Article Title: JAG1/Notch Pathway Inhibition Induces Ferroptosis and Promotes Cataractogenesis.
Article Snippet: RNA-Seq data analysis was conducted through NovoMagic (magic. novogene.com) (accessed on 25 March 2024).

Article Title: Gibberellin application and RNA-seq-based transcriptomtc analysis of leaf and buds in grape
Article Snippet: A tetracyclic diterpenoid hormone, Gibberellins are a class of plant hormones critical in controlling several plant growth and development processes, including fruit ripening, flower production, stem elongation, and seed germination.. However, the effect of gibberellin on grape leaves and bud development is not yet reported.. In this study, we found that GA3 could release bud dormancy, and increase the GA3, and IAA content, but decrease ABA content.

RNA Sequencing Assay:

Article Title: Insulin-like growth factor binding protein 7 identified in aged dental pulp by single-cell RNA sequencing.
Article Snippet: Library construction and sequencing, RNA-seq data analysis process, identification of 197 DEGs, and enrichment of KEGG were performed based on the procedures Novogene Bioinformatics 198 Technology Co., Ltd (Beijing, China) provided.

Article Title: Phenyl salicylate induces neurotoxicity and early Alzheimer's disease-like symptoms through ndrg1-regulated myelin damage, increasing bace1 in zebrafish.
Article Snippet: • Phenyl salicylate caused dosedependently neurotoxicity in zebrafish.. • Early AD-like symptoms were triggered by phenyl salicylate.. • Phenyl salicylate induced myelin damage via downregulating of ndrg1.

Article Title: JAG1/Notch Pathway Inhibition Induces Ferroptosis and Promotes Cataractogenesis
Article Snippet: RNA-Seq data analysis was conducted through NovoMagic ( magic.novogene.com ) (accessed on 25 March 2024).

Article Title: Transcriptomic and metabolomic analysis provides insight into imazethapyr toxicity to non-target plants.
Article Snippet: Imazethapyr is a widely used imidazolinone herbicide worldwide, and its potential adverse effects on non-target plants have raised concerns.. Understanding the mechanisms of imazethapyr phytotoxicity is crucial for its agro-ecological risk assessment.. Here, the comprehensive molecular responses and metabolic alterations of Arabidopsis in response to imazethapyr were investigated.

Article Title: 2-Hydroxy-4-n-octyloxybenzophenone induces developmental neurotoxicity and multiple sclerosis-like symptoms through cacna1a regulated Ca 2 + inward flow and microglial activation.
Article Snippet: RNA-seq data analysis was conducted by Experimental Department in the Novogene (Novogene bioinformatics Technology Co. Ltd, China).

Article Title: Imazethapyr-Induced Inhibition of Arabidopsis Root Growth Associated with Disrupting Auxin Signal to Alter Cell Wall Remodeling.
Article Snippet: Imazethapyr, a widely used herbicide, exhibits a long persistence in soils and can cause injury to rotational crops.. Here, we discovered that imazethapyr inhibits primary root elongation in Arabidopsis by inhibiting cell division and expansion rather than damaging the organization of root meristem.. Integration of transcriptomic and metabolomic analysis revealed that imazethapyr downregulated multiple genes related to cell wall loosening and modification, leading to increased cell wall thickness and inhibited cellular expansion in Arabidopsis roots.

Article Title: JAG1/Notch Pathway Inhibition Induces Ferroptosis and Promotes Cataractogenesis.
Article Snippet: RNA-Seq data analysis was conducted through NovoMagic (magic. novogene.com) (accessed on 25 March 2024).

Article Title: Gibberellin application and RNA-seq-based transcriptomtc analysis of leaf and buds in grape
Article Snippet: A tetracyclic diterpenoid hormone, Gibberellins are a class of plant hormones critical in controlling several plant growth and development processes, including fruit ripening, flower production, stem elongation, and seed germination.. However, the effect of gibberellin on grape leaves and bud development is not yet reported.. In this study, we found that GA3 could release bud dormancy, and increase the GA3, and IAA content, but decrease ABA content.



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Minor macroscopic effects of Parp14 deficiency on the severity of salmonellosis. ( A, B ) Schematic representation of the single-animal experiment executed in this study. The blue box refers to mice, which were subjected to statistical comparisons throughout the study. The tissues marked with an asterisk were longitudinally cut into two pieces, one for histology and one for <t>qPCR/RNA-Seq.</t> Images were partially created with BioRender.com. ( C ) Weight change of the mice during the course of the experiment relative to day −1 (medians with interquartile range). No statistically significant differences between the infected wt and Parp14-deficient mice were detected. Statistical significance values are shown in the figure. Weights of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ). ( D ) Colon lengths at day 1 and day 5. ( E ) Spleen weights at day 1 and day 5. ( F ) Liver weights at day 1 and day 5. ( G–L ) Determination of viable bacteria in different tissues at day 1 and day 5. Bars in sub-panels D–L represent medians with interquartile range. All individual data points are shown. Statistical significance values for the differences between the infected wt and Parp14-deficient mice are shown in each D–L sub-panel. Fecal pellets were not obtained from all mice. Parameters of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ).
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Image Search Results


Minor macroscopic effects of Parp14 deficiency on the severity of salmonellosis. ( A, B ) Schematic representation of the single-animal experiment executed in this study. The blue box refers to mice, which were subjected to statistical comparisons throughout the study. The tissues marked with an asterisk were longitudinally cut into two pieces, one for histology and one for qPCR/RNA-Seq. Images were partially created with BioRender.com. ( C ) Weight change of the mice during the course of the experiment relative to day −1 (medians with interquartile range). No statistically significant differences between the infected wt and Parp14-deficient mice were detected. Statistical significance values are shown in the figure. Weights of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ). ( D ) Colon lengths at day 1 and day 5. ( E ) Spleen weights at day 1 and day 5. ( F ) Liver weights at day 1 and day 5. ( G–L ) Determination of viable bacteria in different tissues at day 1 and day 5. Bars in sub-panels D–L represent medians with interquartile range. All individual data points are shown. Statistical significance values for the differences between the infected wt and Parp14-deficient mice are shown in each D–L sub-panel. Fecal pellets were not obtained from all mice. Parameters of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ).

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Minor macroscopic effects of Parp14 deficiency on the severity of salmonellosis. ( A, B ) Schematic representation of the single-animal experiment executed in this study. The blue box refers to mice, which were subjected to statistical comparisons throughout the study. The tissues marked with an asterisk were longitudinally cut into two pieces, one for histology and one for qPCR/RNA-Seq. Images were partially created with BioRender.com. ( C ) Weight change of the mice during the course of the experiment relative to day −1 (medians with interquartile range). No statistically significant differences between the infected wt and Parp14-deficient mice were detected. Statistical significance values are shown in the figure. Weights of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ). ( D ) Colon lengths at day 1 and day 5. ( E ) Spleen weights at day 1 and day 5. ( F ) Liver weights at day 1 and day 5. ( G–L ) Determination of viable bacteria in different tissues at day 1 and day 5. Bars in sub-panels D–L represent medians with interquartile range. All individual data points are shown. Statistical significance values for the differences between the infected wt and Parp14-deficient mice are shown in each D–L sub-panel. Fecal pellets were not obtained from all mice. Parameters of the PBS mice were not statistically compared (NA, not applicable; fewer than three animals to compare, see ).

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: RNA Sequencing, Infection, Bacteria

Quantitation of Parp14 expression in the mouse gastrointestinal tract. ( A ) The QuPath-based quantitation of Parp14 expression. Representative examples of the Parp14 stainings are shown in  . The values on the y -axis refer to the means of DAB staining intensity, that is, the mean OD in the QuPath data output. Each dot refers to a single cell. The numbers of analyzed cells (mostly epithelial cells) are indicated on the x -axis (see  ). The red lines above the data points refer to the mean values. Statistical analyses were conducted using the two-tailed unpaired t -test (NA, not applicable; fewer than three animals to compare, see  ). One Salmonella -infected day 5 mouse was left out from the quantitation due to poor quality of the FFPE tissue block. ( B ) The qPCR data on relative Parp14 expression (means with standard deviation, statistics performed using two-tailed unpaired t -test). Samples were included in the data analysis if they passed the 0.5 standard deviation Ct filter for replicate runs. No statistical analyses were executed against the PBS groups because there were less than three data points/animal to compare (see  ). The calibrators in each sub-panel are the mean dCq values of the day 1 Salmonella -infected mice.

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Quantitation of Parp14 expression in the mouse gastrointestinal tract. ( A ) The QuPath-based quantitation of Parp14 expression. Representative examples of the Parp14 stainings are shown in . The values on the y -axis refer to the means of DAB staining intensity, that is, the mean OD in the QuPath data output. Each dot refers to a single cell. The numbers of analyzed cells (mostly epithelial cells) are indicated on the x -axis (see ). The red lines above the data points refer to the mean values. Statistical analyses were conducted using the two-tailed unpaired t -test (NA, not applicable; fewer than three animals to compare, see ). One Salmonella -infected day 5 mouse was left out from the quantitation due to poor quality of the FFPE tissue block. ( B ) The qPCR data on relative Parp14 expression (means with standard deviation, statistics performed using two-tailed unpaired t -test). Samples were included in the data analysis if they passed the 0.5 standard deviation Ct filter for replicate runs. No statistical analyses were executed against the PBS groups because there were less than three data points/animal to compare (see ). The calibrators in each sub-panel are the mean dCq values of the day 1 Salmonella -infected mice.

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: Quantitation Assay, Expressing, Staining, Single Cell, Two Tailed Test, Infection, Blocking Assay, Standard Deviation

Transcriptional signatures uniquely detected in S . Typhimurium-infected wt and Parp14-deficient mice. Data from a triplicate RNA-Seq analysis of mouse large intestine sections 1 day post-infection are shown. ( A ) The Venn diagrams of shared and unique genes that were detected to be expressed in the infected wt and Parp14-deficient mice (FPKM value >1). The integer is the number of genes detected to be expressed in both of the genotypes. ( B ) The pie charts of the numbers of identified GO terms based on the genotype-specific lists of expressed genes (BP, biological process; CC, cellular component; MF, molecular function; ). ( C–E ) Bar graph representation of all the identified GO BP terms with the genotype-specific lists of expressed genes. The BP terms are sorted based on the percentage of GO term gene values (number of detected genes in a particular BP term / number of all genes in particular BP term × 100). FDR refers to the false discovery rate value. An FDR value cut-off of <0.05 was used in the searches. The asterisks in the wt sub-panel ( D ) refer to the seven infection- and inflammation response-related BP terms. The sub-panel E displays the genes of these seven infection- and inflammation response-related BP terms. ( F–H ) Pathway-enrichment dot plot representations of all (KO sub-panel) and the top 10 (wt sub-panel) KEGG pathways identified with the genotype-specific lists of expressed genes. All the identified KEGG pathways with the corresponding gene lists are described in . The KEGG pathways are sorted based on the P -value. The count values refer to the number of genes that were detected in a particular KEGG pathway. The asterisk in the wt sub-panel ( G ) refers to the only KEGG pathway with a <0.05 P adj -value. The sub-panel H displays the genes of this IL-17 signaling pathway.

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Transcriptional signatures uniquely detected in S . Typhimurium-infected wt and Parp14-deficient mice. Data from a triplicate RNA-Seq analysis of mouse large intestine sections 1 day post-infection are shown. ( A ) The Venn diagrams of shared and unique genes that were detected to be expressed in the infected wt and Parp14-deficient mice (FPKM value >1). The integer is the number of genes detected to be expressed in both of the genotypes. ( B ) The pie charts of the numbers of identified GO terms based on the genotype-specific lists of expressed genes (BP, biological process; CC, cellular component; MF, molecular function; ). ( C–E ) Bar graph representation of all the identified GO BP terms with the genotype-specific lists of expressed genes. The BP terms are sorted based on the percentage of GO term gene values (number of detected genes in a particular BP term / number of all genes in particular BP term × 100). FDR refers to the false discovery rate value. An FDR value cut-off of <0.05 was used in the searches. The asterisks in the wt sub-panel ( D ) refer to the seven infection- and inflammation response-related BP terms. The sub-panel E displays the genes of these seven infection- and inflammation response-related BP terms. ( F–H ) Pathway-enrichment dot plot representations of all (KO sub-panel) and the top 10 (wt sub-panel) KEGG pathways identified with the genotype-specific lists of expressed genes. All the identified KEGG pathways with the corresponding gene lists are described in . The KEGG pathways are sorted based on the P -value. The count values refer to the number of genes that were detected in a particular KEGG pathway. The asterisk in the wt sub-panel ( G ) refers to the only KEGG pathway with a <0.05 P adj -value. The sub-panel H displays the genes of this IL-17 signaling pathway.

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: Infection, RNA Sequencing

Hampered expression of four cytokines in the large intestine of S . Typhimurium-infected Parp14-deficient mice. Four hit genes of the large intestine bulk tissue RNA-Seq analysis ( Ccl2 , Ccl7 , Cxcl10 , Il1b ) were analyzed. Five other TaqMan qPCR assays on inflammation-associated genes were run in parallel. The figure illustrates the TaqMan qPCR data on relative gene expression with means and standard deviations. The calibrators in all sub-panels are the mean dCq values of the day 1 infected wt mice. Statistical analyses were done with a two-tailed unpaired t -test. All the statistical significance values of the comparisons between the wt and Parp14-deficient mice are indicated.

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Hampered expression of four cytokines in the large intestine of S . Typhimurium-infected Parp14-deficient mice. Four hit genes of the large intestine bulk tissue RNA-Seq analysis ( Ccl2 , Ccl7 , Cxcl10 , Il1b ) were analyzed. Five other TaqMan qPCR assays on inflammation-associated genes were run in parallel. The figure illustrates the TaqMan qPCR data on relative gene expression with means and standard deviations. The calibrators in all sub-panels are the mean dCq values of the day 1 infected wt mice. Statistical analyses were done with a two-tailed unpaired t -test. All the statistical significance values of the comparisons between the wt and Parp14-deficient mice are indicated.

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: Expressing, Infection, RNA Sequencing, Gene Expression, Two Tailed Test

Transcriptional signature downregulated in S . Typhimurium-infected Parp14-deficient mice. Data from triplicate bulk tissue RNA-Seq analysis of mouse large intestine sections 1 day post-infection are shown. ( A ) Inter-sample correlation heatmap based on the FPKM values of the DEGs in Parp14-deficient vs wt mice comparison. R 2 is the square of Pearson correlation coefficient ( R ). ( B ) Volcano plots of the DEGs. Specific information on the DEGs is given in . The x -axis shows the fold difference in gene expression between different samples, and the y -axis shows the statistical significance of the differences. Red dots represent upregulation genes, and green dots represent downregulation genes. The dashed line indicates the threshold line for statistically significant differential gene expression. The values marked with asterisks refer to the number of DEGs that were used for a stringent downstream data analysis, that is, UP genes, log2(FoldChange) > 0.5 and P adj < 0.05; DOWN genes, log2(FoldChange) < −0.5 and P adj < 0.05 . ( C ) GO term analysis with DEGs in Parp14-deficient vs wt mice comparison (BP, biological process; CC, cellular component; MF, molecular function; ). The GO terms were searched using the canonical Fisher’s test and an FDR value <0.05 filter. ( D ) Bar graph representations of the top 20 identified GO BP terms (all the 107 identified GO BP terms in ) sorted based on the percentage of GO term gene values (number of detected genes in a particular GO term / number of all genes in a particular GO term × 100). The black asterisks in the sub-panel refer to the PB terms with functional relevance to cell adhesion and cytoskeleton remodeling. ( E ) Pathway-enrichment dot plot representations of the top 10 identified KEGG pathways sorted based on the P -value. All the identified KEGG pathways with the corresponding gene lists are described in . The count values refer to the number of genes that were detected in a particular KEGG pathway. The black asterisk in the wt sub-panel refers to the KEGG pathways with a <0.05 P adj -value.

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Transcriptional signature downregulated in S . Typhimurium-infected Parp14-deficient mice. Data from triplicate bulk tissue RNA-Seq analysis of mouse large intestine sections 1 day post-infection are shown. ( A ) Inter-sample correlation heatmap based on the FPKM values of the DEGs in Parp14-deficient vs wt mice comparison. R 2 is the square of Pearson correlation coefficient ( R ). ( B ) Volcano plots of the DEGs. Specific information on the DEGs is given in . The x -axis shows the fold difference in gene expression between different samples, and the y -axis shows the statistical significance of the differences. Red dots represent upregulation genes, and green dots represent downregulation genes. The dashed line indicates the threshold line for statistically significant differential gene expression. The values marked with asterisks refer to the number of DEGs that were used for a stringent downstream data analysis, that is, UP genes, log2(FoldChange) > 0.5 and P adj < 0.05; DOWN genes, log2(FoldChange) < −0.5 and P adj < 0.05 . ( C ) GO term analysis with DEGs in Parp14-deficient vs wt mice comparison (BP, biological process; CC, cellular component; MF, molecular function; ). The GO terms were searched using the canonical Fisher’s test and an FDR value <0.05 filter. ( D ) Bar graph representations of the top 20 identified GO BP terms (all the 107 identified GO BP terms in ) sorted based on the percentage of GO term gene values (number of detected genes in a particular GO term / number of all genes in a particular GO term × 100). The black asterisks in the sub-panel refer to the PB terms with functional relevance to cell adhesion and cytoskeleton remodeling. ( E ) Pathway-enrichment dot plot representations of the top 10 identified KEGG pathways sorted based on the P -value. All the identified KEGG pathways with the corresponding gene lists are described in . The count values refer to the number of genes that were detected in a particular KEGG pathway. The black asterisk in the wt sub-panel refers to the KEGG pathways with a <0.05 P adj -value.

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: Infection, RNA Sequencing, Comparison, Gene Expression, Functional Assay

Epithelial cell-specific transcriptomic signature downregulated in the large intestine of S . Typhimurium-infected Parp14-deficient mice. ( A ) The Venn diagrams of the shared and unique genes in two comparisons, that is (i) genes upregulated by infection in wt mice (single-cell data ) vs genes downregulated by infection in Parp14-deficient mice (bulk tissue data), and (ii) genes downregulated by infection in wt mice (single-cell data ) vs genes upregulated by infection in Parp14-deficient mice (bulk tissue data). ( B ) The key single-cell RNA-Seq differential expression metrics of the shared genes. The numbers behind the gene names indicate the rank numbers, for example, ApoA1 was the third highest upregulated gene in goblet cells. ( C ) The key bulk tissue differential expression metrics of the shared genes. ( D ) TaqMan qPCR validation of the four shared genes with small and large intestine samples at day 1 and day 5. The figure illustrates the TaqMan qPCR data on relative gene expression with means and standard deviations. The calibrators in all sub-panels are the mean dCq values of the infected wt mice. Statistical analyses were done with a two-tailed unpaired t -test. All the statistical significance values of the comparisons between the wt and Parp14-deficient mice are indicated.

Journal: Microbiology Spectrum

Article Title: Exacerbated salmonellosis in poly(ADP-ribose) polymerase 14-deficient mice

doi: 10.1128/spectrum.02971-25

Figure Lengend Snippet: Epithelial cell-specific transcriptomic signature downregulated in the large intestine of S . Typhimurium-infected Parp14-deficient mice. ( A ) The Venn diagrams of the shared and unique genes in two comparisons, that is (i) genes upregulated by infection in wt mice (single-cell data ) vs genes downregulated by infection in Parp14-deficient mice (bulk tissue data), and (ii) genes downregulated by infection in wt mice (single-cell data ) vs genes upregulated by infection in Parp14-deficient mice (bulk tissue data). ( B ) The key single-cell RNA-Seq differential expression metrics of the shared genes. The numbers behind the gene names indicate the rank numbers, for example, ApoA1 was the third highest upregulated gene in goblet cells. ( C ) The key bulk tissue differential expression metrics of the shared genes. ( D ) TaqMan qPCR validation of the four shared genes with small and large intestine samples at day 1 and day 5. The figure illustrates the TaqMan qPCR data on relative gene expression with means and standard deviations. The calibrators in all sub-panels are the mean dCq values of the infected wt mice. Statistical analyses were done with a two-tailed unpaired t -test. All the statistical significance values of the comparisons between the wt and Parp14-deficient mice are indicated.

Article Snippet: We used the single-cell RNA-Seq data analysis and visualization interface at the Broad Institute Single Cell Portal ( https://singlecell.broadinstitute.org/single_cell ) in order to analyze Parp1 and Parp14 expression.

Techniques: Infection, Single Cell, RNA Sequencing, Quantitative Proteomics, Biomarker Discovery, Gene Expression, Two Tailed Test