WormMine

WS295

Intermine data mining platform for C. elegans and related nematodes

Gene :

WormBase Gene ID  ? WBGene00220141 Gene Name  Y37E11AR.9
Sequence Name  ? Y37E11AR.9 Organism  Caenorhabditis elegans
Automated Description  Enriched in neurons based on microarray studies. Is affected by several genes including ash-2; glp-1; and tdp-1 based on RNA-seq and microarray studies. Is affected by four chemicals including Humic Substances; Sirolimus; and allantoin based on microarray and RNA-seq studies. Biotype  SO:0001263
Genetic Position  Length (nt)  ? 64
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1 Organism

Name Taxon Id
Caenorhabditis elegans 6239

1 Synonyms

Value
WBGene00220141

Genomics

1 Transcripts

WormMine ID Sequence Name Length (nt) Chromosome Location
Transcript:Y37E11AR.9 Y37E11AR.9 64   IV: 3747547-3747610
 

Other

0 CDSs

0 RNAi Result

3 Allele

Public Name
gk963722
gk963284
gk963592

1 Chromosome

WormBase ID Organism Length (nt)
IV Caenorhabditis elegans 17493829  

1 Chromosome Location


Feature . Primary Identifier
Start End Strand
WBGene00220141 3747547 3747610 1

2 Data Sets

Name URL
WormBaseAcedbConverter  
C. elegans genomic annotations (GFF3 Gene)  

1 Downstream Intergenic Region

WormBase ID Name Sequence Name Length (nt) Chromosome Location Organism
intergenic_region_chrIV_3747611..3748209   599 IV: 3747611-3748209 Caenorhabditis elegans

20 Expression Clusters

Regulated By Treatment Description Algorithm Primary Identifier
  Transcripts that showed significantly increased expression glp-1(e2141); TU3401 animals comparing to in TU3401 animals. Fold change > 2, FDR < 0.01. WBPaper00065993:glp-1(e2141)_upregulated
Bacteria infection: Pseudomonas aeruginosa PA14. 24 hours of exposure at 25C. Transcripts that showed significantly decreased expression in N2 animals with 24 hours of exposure to P. aeruginosa PA14 for 24 hrs at 25C, comparing to N2 animals without exposure to PA14. DESeq2, fold change > 2, FDR < 0.05. WBPaper00058948:PA14_downregulated
Exposure to Au-NP. Genes with differeiential expression after exposed to Au-NP. Hierarchical clustering was performed in Partek to confirm that the samples match to the treatment groups. Analysis of variance (ANOVA) was used to partition the variance due to treatment from technical and biological noise. The list of differentially expressed genes was generated by identifying the genes showing fold change of more than 1.5 and less than -1.5 at p < 0.05 with and without multiple sample correction, False Discovery Rate (FDR). False discovery correction according to Benjamini and Hochberg produced a list of 37 significant transcripts. FDR was not applied when selecting differential expressed genes, because this approach can increase the type II error and result in elimination of the genes responsive to the treatment. WBPaper00040821:Au-NP_regulated
control(maintained under normal lab light (mostly dark, in incubators).) vs EtBr-exposed(maintained under normal lab light (mostly dark, in incubators) and exposed to EtBr (5ug/mL in agar).) at just prior to the third UVC dose (48h). Genes differentially expressed in control vs under EtBr treatment without UVC exposure, at the -1h timepoint. Transcripts were defined as fold-change >1.2, p < 0.05 based on Rosetta Resolver analysis for all pairwise treatment comparisons. The fold-change refers to the second intensity over the first. WBPaper00041939:control_vs_EtBr-exposed_48h
UVC-EtBr-exposed(exposed to 7.5 J/m2 UVC radiation 3 times, 24 h apart (48 h total) and exposed to EtBr (5ug/mL in agar).) vs UVC-exposed(exposed to 7.5 J/m2 UVC radiation 3 times, 24 h apart (48 h total).) at 3 h after the third UVC dose (51h), which is also 3 h after being placed on food. Genes differentially expressed under EtBr treatment and UVC exposure vs under UVC exposure but without EtBr treatment at the -3h timepoint (3 h after the third UVC dose (51h), which is also 3 h after being placed on food). Transcripts were defined as fold-change >1.2, p < 0.05 based on Rosetta Resolver analysis for all pairwise treatment comparisons. The fold-change refers to the second intensity over the first. WBPaper00041939:UVC-EtBr-exposed_vs_UVC-exposed_51h
  Embryonic Pan-neural Enriched Genes. A two-class unpaired analysis of the data was performed to identify genes that differ by >= 1.5-fold from the reference at a FDR of <1% for the larval pan-neural, embryonic pan-neural, and larval A-class motor neuron datasets. WBPaper00030839:Embryo_Pan_Neuronal
4 hours of starvation. Genes with significantly increased expression in N2 animals after 4 hours of starvation. Differentially expressed genes were determined by ANOVA analysis using the Partek software package. WBPaper00047070:N2_starvation_upregulated
  Genes from N2 animals with significantly decreased expression after 72 hours of treatment on growth media with 250uM allantoin in 2% DMSO. Analysis of gene expression data was carried out with the Affymetrix Transcriptome Analysis Console. Data preprocessing (using RMA normalization) and QC metrics were performed using Affymetrix Expression Console TM and manually inspected afterwards. Expression analysis was carried out for each two pairwise conditions. FDR statistical correction for multiple testing resulted in a slightly lower number of DEGs in most cases. P-value < 0.05 and fold change > 2.0 were used to determine differentially expressed genes. WBPaper00048989:N2_allantoin_downregulated
EtBr-exposed(maintained under normal lab light (mostly dark, in incubators) and exposed to EtBr (5ug/mL in agar).) vs UVC-exposed(exposed to 7.5 J/m2 UVC radiation 3 times, 24 h apart (48 h total).) at just prior to the third UVC dose (48h). Genes differentially expressed under EtBr treatment without UVC exposure vs after UVC exposure but without EtBr treatment at the -1h timepoint (just prior to the third UVC dose (48h)). Transcripts were defined as fold-change >1.2, p < 0.05 based on Rosetta Resolver analysis for all pairwise treatment comparisons. The fold-change refers to the second intensity over the first. WBPaper00041939:EtBr-exposed_vs_UVC-exposed_48h
  Genes from eat-2(ad465) animals with significantly decreased expression after 72 hours of treatment on growth media with 10uM rapamycin in 2% DMSO. Analysis of gene expression data was carried out with the Affymetrix Transcriptome Analysis Console. Data preprocessing (using RMA normalization) and QC metrics were performed using Affymetrix Expression Console TM and manually inspected afterwards. Expression analysis was carried out for each two pairwise conditions. FDR statistical correction for multiple testing resulted in a slightly lower number of DEGs in most cases. P-value < 0.05 and fold change > 2.0 were used to determine differentially expressed genes. WBPaper00048989:eat-2(ad465)_rapamycin_downregulated
fasting Genes upregulated by fasting anytime between 9 hour to 12 hour time course in N2 worms. Hierarchical clustering analysis was done with squared Euclidean as the distance metric and average linkage as the cluster method by using GeneSpring GX. WBPaper00041960:N2_fasting_upregulated_9hto12h
fasting Genes upregulated by fasting anytime during the 48 hour time course in N2 worms. Hierarchical clustering analysis was done with squared Euclidean as the distance metric and average linkage as the cluster method by using GeneSpring GX. WBPaper00041960:N2_fasting_upregulated_anytime
Treatment with 2.0mM of HuminFeed until older adult stage (11 days). Gene significantly down-regulated by treatment with 2.0mM of HuminFeed until older adult stage (11 days), with a minimum fold change in gene expression of 0.8. For selection of DEGs, an unpaired t -test was performed followed by a significance analysis of microarray (SAM) test including a calculation that estimates the false discovery rate (FDR). FDR, reducing on the one hand type I errors for null associations, was set to a non-stringent level of <12.5%, mainly to guard from an increase of type II error and also based on findings by Levine et al. (2011), which described 12.5% as most acceptable optimum level of FDR, representing the 90th percentile of the normal distribution curve. DEGs exceeding a fold change of 1.25 were further analyzed with respect to their functional clustering. This fold-cut-off was chosen to allow an interpretation that is biologically meaningful, akin to the notion that data of sound technical and experimental quality which returns strong, statistically significant, absolute signal intensities is sufficiently robust to justify a fold-cut-off of >1.2. This analysis was conducted using the functional annotation clustering tool of the Database for Annotation, Visualization, and Integrated Discovery (DAVID; Huang et al., 2007). WBPaper00041002:HF_11d_2.0mM_Down
Treatment with 2.0mM of HuminFeed Hydroquinone until young adult stage (3 days). Gene significantly up-regulated by treatment with 2.0mM of HuminFeed Hydroquinone until young adult stage (3 days), with a minimum fold change in gene expression of 1.25. For selection of DEGs, an unpaired t -test was performed followed by a significance analysis of microarray (SAM) test including a calculation that estimates the false discovery rate (FDR). FDR, reducing on the one hand type I errors for null associations, was set to a non-stringent level of <12.5%, mainly to guard from an increase of type II error and also based on findings by Levine et al. (2011), which described 12.5% as most acceptable optimum level of FDR, representing the 90th percentile of the normal distribution curve. DEGs exceeding a fold change of 1.25 were further analyzed with respect to their functional clustering. This fold-cut-off was chosen to allow an interpretation that is biologically meaningful, akin to the notion that data of sound technical and experimental quality which returns strong, statistically significant, absolute signal intensities is sufficiently robust to justify a fold-cut-off of >1.2. This analysis was conducted using the functional annotation clustering tool of the Database for Annotation, Visualization, and Integrated Discovery (DAVID; Huang et al., 2007). WBPaper00041002:HQ_3d_2.0mM_Up
fasting Genes upregulated more than 2-fold by fasting for 48 hours in N2. Statistical analysis was performed by two-way analysis of variance (ANOVA) with a Benjamini and Hochberg false discovery rate (BH-FDR-0.1) multiple testing corrections followed by Tukey post hoc tests using log-transformed data (GeneSpring GX). WBPaper00041960:N2_fasting_upregulated
  Transcripts that showed significantly increased expression after exposure of to 10 mg per liter of SiNPs for 24 h. Fold change and Welcht-test performed between probes per gene and were applied to selectdifferentially expressed genes (DEGs): the fold change threshold was 2-fold and the significance level was p < 0.05. WBPaper00057098:SiO2-nanoparticles_upregulated
  Genes up regulated in the absence of TDP-1, when the threshold was set at a fold change (FC) of 1.2. The management and statistical analysis of the microarray data were performed using the Partek Genomic Suite (Partek, Missouri) and Spotfire DecisionSite software (TIBCO, California). WBPaper00040603:tdp-1(lf)_up_vs_N2_FC_1.2
  FBF-associated probe sets (FDR <2.25%) SAM assigns a score to each probe set and estimates their false discovery rates (FDRs). SAM deemed 4722 probe sets as significantly enriched at an FDR of 2.25% or lower. WBPaper00035905:FBF-1_Associated
  Transcripts that showed significantly decreased expression at the AWA neurons of in postdauer adults comparing to adult animals that bypassed the dauger stage. DESeq 2, FDR < 0.05. WBPaper00064494:postdauer_downregulated_AWA
  Genes that change expression level at day 8 adult stage after ash-2 RNAi. One-class analysis in significance analysis of microarrays (SAM)38 was performed comparing empty vector to ash-2 RNAi using a 5% false discovery rate (FDR). Resulting SAM lists of genes regulated by ASH-2 were compared for genes that were specifically changed in N2, but not in glp-1(e2141ts) mutant worms. A complete linkage hierarchical clustering was performed using Gene Cluster 3.0. Clustering results were analysed further with Java Treeview40. GOstat41 was used to identify overrepresented gene ontology categories in the list of ASH-2 regulated genes that were dependent on the presence of the germline. WBPaper00036383:ash-2_Day8_regulated

0 Expression Patterns

0 GO Annotation

0 Homologues

1 Locations


Feature . Primary Identifier
Start End Strand
WBGene00220141 3747547 3747610 1

0 Ontology Annotations

0 Regulates Expr Cluster

1 Sequence

Length
64

1 Sequence Ontology Term