Genome-wide and allele-resolved maps of the radial architecture of the mouse genome
The 23 matches · 3 of them tie a paragraph to a whole file, not to given lines: weak matches, whose lines are not tinted
- [1] § Methods › Computational methods › RNA-seq data analysis › Data processing ↔ scripts/rnaseq/RNAseq_R_processing.R, lines 29–110 · score 0.86 · GeneCounts, imported gene, DESeq2, log2FC, RNA seq, M36
- [2] § Methods › Computational methods › Hi-C › Hi-C data processing ↔ scripts/hic/02_Hic_convert.sh, lines 6–44 · score 0.82 · TADs insulation scores, Cooltools, Explorer, eigs, HiC, Cooler
- [3] § Methods › Computational methods › Chromflock › Assessment of Chr X topology in 3D genome reconstructions ↔ scripts/visualization/FigS/FS7.FGHIJ.chrX_shape.py, lines 1–59 · score 0.81 · convex hull, surface area, mesh, prolateness, sphericity, gyration
- [4] § Methods › Computational methods › GPSeq data analysis › Multivariate linear regression model ↔ scripts/visualization/Fig1/F1QT.R, lines 11–78 · score 0.79 · explained variance, GC content, gene density, LMG, NMAE, R2
- [5] § Methods › Computational methods › Hi-C › Allele-specific Hi-C analysis ↔ scripts/hic/00_Genome_build.sh, the whole file · a weak match · score 0.78 · mm39 reference, diploid B6, REL2021, bcftools, consensus, indels
- [6] § Methods › Computational methods › RNA-seq data analysis › Allele-specific RNA-seq analysis ↔ scripts/rnaseq/RNAseq_R_processing_allelic.R, lines 1–75 · score 0.74 · extremely low, DESeq2, phased normalized, imported, rnaseq, mNPC
- [7] § Methods › Computational methods › Gene Ontology analysis ↔ scripts/visualization/Fig3/F3DEFG.R, lines 18–60 · score 0.72 · clusterProfiler, enrichGO, simplify, db, cutoff, mm
- [8] § Methods › Computational methods › RNA-seq data analysis › Data processing ↔ scripts/rnaseq/RNAseq_nonphased_pipeline.sh, lines 56–152 · score 0.72 · quantMode, GeneCounts, GENCODE, STAR, fastp, workflow
- [9] § Methods › Computational methods › Gene Ontology analysis ↔ scripts/visualization/Fig4/F4.Z.R, lines 12–59 · score 0.70 · clusterProfiler, enrichGO, simplify, db, cutoff, mm
- [10] § Methods › Computational methods › Chromflock › Homolog-specific radial positioning analysis ↔ scripts/visualization/Fig6/F6.chromflock.py, lines 1–70 · score 0.65 · B6 CAST homologous, nuclear periphery, radial position, Chromflock, autosomes, beads
- [11] § Results › Interplay between radial repositioning and gene expression dynamics ↔ scripts/visualization/Fig3/F3H.R, the whole file · a weak match · score 0.64 · moving outward, fold change, gene expression changes, mESC, variation, inward
- [12] § Methods › Computational methods › GPSeq data analysis › Allele-specific GPSeq score calculation ↔ scripts/rnaseq/RNAseq_allelic_phased_01_filterBam.sh, lines 6–43 · score 0.61 · SNPsplit, parental genome, BAM, filtered, phased
- [13] § Methods › Computational methods › ATAC-seq ↔ scripts/rnaseq/RNAseq_allelic_phased_01_filterBam.sh, lines 6–43 · score 0.61 · SNPsplit, allelic phased, BAM, SAMtools, parental, mapping
- [14] § Methods › Computational methods › GPSeq data analysis › GPSeq data processing ↔ scripts/gpseq/gpseq_allelic_radiality.sh, lines 1–43 · score 0.60 · DpnII, Bowtie2, barcode, cut, pipeline, UMI
- [15] § Methods › Computational methods › GPSeq data analysis › Allele-specific GPSeq score calculation ↔ scripts/gpseq/gpseq_allelic_radiality.sh, lines 45–95 · score 0.57 · SNPsplit, quality, BAM, UMI, filtered, radiality
- [16] § Results › The inactive chromosome X is less peripheral than its active copy ↔ scripts/visualization/Fig5/F5.E.R, lines 14–120 · score 0.56 · genes escaping, lncRNA, Xist, XCI, escapee, protein
- [17] § Results › The inactive chromosome X is less peripheral than its active copy ↔ scripts/visualization/Fig6/F6.chromflock.py, lines 1–70 · score 0.55 · Chromflock configuration, nuclear periphery, radial positions, radius, Mb, Figure 6
- [18] § Methods › Computational methods › GPSeq data analysis › Multivariate linear regression model ↔ scripts/visualization/FigS/FS7.L.gpseq_corr.py, lines 1–43 · score 0.54 · Linear regression, GPSeq score, fitted
- [19] § Methods › Computational methods › GPSeq data analysis › GPSeq score, ranked GPSeq score (rGS) and |ΔrGS| calculation ↔ scripts/rnaseq/RNAseq_R_processing_allelic.R, lines 1–75 · score 0.54 · CAST alleles, confidently, extreme, transformed, log2, mNPC
- [20] § Methods › Experimental methods › GPSeq ↔ scripts/gpseq/gpseq_allelic_radiality.sh, lines 1–43 · score 0.52 · DpnII, barcode, adapter, UMI, SNP, sequences
- [21] § Results › Radial genome reorganization during mouse neurodifferentiation ↔ scripts/visualization/Fig3/F3H.R, the whole file · a weak match · score 0.52 · moves inward, moved outward, mESC, upregulated, downregulated, mNPC
- [22] § Methods › Computational methods › ATAC-seq ↔ scripts/atacseq/ATACseq_allelic_phased_02_getCoverage.sh, lines 9–44 · score 0.51 · allelic phased, BEDTools, SAMtools, atacseq, BAM, coverage
- [23] § Results › Interplay between radial repositioning and gene expression dynamics ↔ scripts/visualization/Fig3/F3C.R, lines 11–70 · score 0.50 · fold change, gene expression, outside, outward, mESC, inward
Paper
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The authors' code
Shell · 97 lines · 4.3 KB · no license · 3 matches
- #!/bin/bash
- #SBATCH --job-name=AllelicRadiality --time=24:00:00 --nodes=1 --ntasks-per-node=1 --cpus-per-task=16 --mem=64G --array=0-7
- ### ------------------------------------------------------------------------------
- ###
- ### Author: Wing Hin Yip ([email hidden]) or ([email hidden])
- ### Description: Pipeline to analyse allele-specific RNA-seq data from the output of nf-core/rnaseq pipeline
- ### Allelic Radiality Script adapter from our original nextflow-pipeline.
- ### Python and R scripts used are part of [https://github.com/BiCroLab/nextflow-gpseq]
- ###
- ### ------------------------------------------------------------------------------
- ### Example Code: depending on input fastq file, adjust barcode sequence according to the samplesheet.
- file=($(ls /path/to/*_trimmed.fq.gz))
- input=${file[$SLURM_ARRAY_TASK_ID]}
- TMP=${TMPDIR}
- ref="/path/to/reference/genome.fa"
- bt2index="/path/to/bowtie2/index/"
- ref_cutsite="/path/to/reference/cut/sites/bed.gz"
- snp_file="/path/to/snp/annotation"
- enzyme="DpnII"
- cutsite="GATC"
- barcode="GTCGTATC"
- sample=$(basename ${input} _R1_001_trimmed.fq.gz)
- threads=16
- mkdir -p ${sample} && cd ${sample}
- # Extracting barcode, cutsite and UMI information from reads
- fbarber flag extract ${input} ${sample}.hq.fastq.gz \
- --filter-qual-output ${sample}.lq.fastq.gz \
- --unmatched-output ${sample}.noprefix.fastq.gz \
- --log-file ${sample}.flagextracting.log \
- --pattern 'umi8bc8cs4' --simple-pattern \
- --flagstats bc cs --filter-qual-flags umi,30,.2 \
- --threads ${threads} --chunk-size 100000
- # Filtering reads checking for correct barcode and cutsite
- fbarber flag regex ${sample}.hq.fastq.gz ${sample}.filtered.fastq.gz \
- --unmatched-output ${sample}.unmathced.fastq.gz \
- --log-file ${sample}.filtering.log \
- --pattern "bc,^(?<bc>"${barcode}"){s<2}\$" "cs,^(?<cs>${cutsite}){s<2}\$" \
- --threads ${threads} --chunk-size 100000
- # Aligning filtered fastq files to reference genome using bowtie2
- bowtie2 -x ${bt2index} ${sample}.filtered.fastq.gz \
- --very-sensitive -L 20 --score-min L,-0.6,-0.2 --end-to-end --reorder -p ${threads} \
- -S ${sample}.sam &> ${sample}.mapping.log
- # Sorting sam file and converting it to bam
- samtools sort ${sample}.sam --threads ${threads} -o ${sample}.bam
- # Filtering bamfile on quality score, chromosomes etc
- sambamba view ${sample}.bam \
- -t ${threads} -f bam -F "mapping_quality>=30 and not secondary_alignment and not unmapped and not chimeric and ref_name!='chrM' and ref_name!='MT'" > ${sample}.clean.bam
- # Split aligned reads into separate genomes by SNPs
- SNPsplit --single_end --no_sort --snp_file ${snp_file} ${sample}.clean.bam
- mv ${sample}.clean.SNPsplit_report.txt ${sample}.clean.SNPsplit_report.log
- # Generate allele-specific bed file
- for bam in *.genome[12].bam; do
- name=$(basename ${bam} .bam)
- sambamba view -q -t ${threads} -h -f bam -F "reverse_strand" ${name}.bam -o ${name}.revs.bam
- sambamba view -q -t ${threads} ${name}.revs.bam | convert2bed --input=sam --keep-header - > ${name}.revs.bed
- cut -f 1-4 ${name}.revs.bed | sed 's/~/\t/g' | cut -f 1,3,7,16 | gzip > ${name}.revs.umi.txt.gz
- sambamba view -q -t ${threads} -h -f bam -F "not reverse_strand" ${name}.bam -o ${name}.plus.bam
- sambamba view -q -t ${threads} ${name}.plus.bam | convert2bed --input=sam --keep-header - > ${name}.plus.bed
- cut -f 1-4 ${name}.plus.bed | sed 's/~/\t/g' | cut -f 1,3,7,16 | gzip > ${name}.plus.umi.txt.gz
- group_umis.py ${name}.revs.umi.txt.gz ${name}.plus.umi.txt.gz ${name}.clean.umis.txt.gz --compress-level 6 --len 4
- umis2cutsite.py ${name}.clean.umis.txt.gz ${ref_cutsite} ${name}.clean.umis.atcs.txt.gz --compress --threads ${threads}
- umi_dedupl.R ${name}.clean.umis.atcs.txt.gz ${name}.clean.umis.dedup.txt.gz -c ${threads} -r 10000
- zcat ${name}.clean.umis.dedup.txt.gz | awk 'BEGIN{{FS=OFS="\t"}}{{print $1 FS $2 FS $2 FS "pos_"NR FS $4}}' | gzip > ${name}.bed.gz
- done
- mkdir fastq && mv *.fastq.gz fastq/
- mkdir bam && mv *.bam *.bam.bai bam/
- mkdir bed && mv *.bed bed/
- mkdir log && mv *.txt *.txt.gz *.tsv *.log *.yaml log/
- rm *.sam
- rm *.conflicting.bam *.allele_flagged.bam
- rm *.revs.bam *.revs.bam.bai *.revs.bed *.plus.bam *.plus.bam.bai *.plus.bed
gpseq_allelic_radiality.sh at commit a0bacf7, no license · at the source
Overview
- Human Technopole, Viale Rita Levi-Montalcini 1, 22157, Milan, Italy
- Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet, Stockholm, 17177, Sweden
- Science for Life Laboratory, Tomtebodavägen 23A, Solna, 17165, Sweden
- Institut Imagine, UMR 1163 24 Bd du Montparnasse, 75015, Paris, France
- Institut Pasteur, Department of Developmental and Stem Cell Biology, 25-28 Rue du Dr Roux, 75015, Paris (France)
- Université Paris Cité, 45 Rue des Saints-Pères, 75006, Paris (France)
- The Francis Crick Institute, London, UK, 1 Midland Road, London, NW1 1AT, UK
- Collège de France, Paris, France 11 Place Marcelin Berthelot, 75005, Paris, France
Abstract
Despite extensive research on 3D genome architecture across species, genome organization along the periphery-center axis of the nucleus—radiality—remain
Reproduced under the paper's license (CC BY), from the paper cited above.
Repositories
Its files are read in the Code ↔ Paper reader above, with 23 matches between paragraphs and lines of code.
BiCroLab/nextflow-gpseq
56c990aada17ff5709e322e9969ee2197639e292, 4 August 2025Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
11 files
- bin/
generateMetadata.R , R, 38 lines - bin/
gpseq-radical-legacy.R , R, 889 lines - bin/
gpseq-radical.R , R, 830 lines - bin/
group_umis.py , Python, 103 lines - bin/
mk_summary_table.py , Python, 210 lines - bin/
pizza_plot.R , R, 110 lines - bin/
summary.R , R, 83 lines - bin/
umi_dedupl.R , R, 140 lines - bin/
umis2cutsite.py , Python, 264 lines - LICENSE, License, 21 lines
- README.md, Text, 85 lines
nf-core/rnaseq
a1fcdddd3b826fe46eb46f0479f2ff8a7815af05, 23 September 2026Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
15 files
- .devcontainer/
setup.sh , Shell, 13 lines - .github/
actions/ , Python, 113 linesnf-test/ license_message.py - .hooks/
block_pipeline_outdir.sh , Shell, 44 lines - bin/
deseq2_qc.r , R, 250 lines - bin/
mqc_features_stat.py , Python, 90 lines - modules/
nf-core/ , Python, 132 linescustom/ catadditionalfasta/ templates/ fasta2gtf.py - modules/
nf-core/ , Python, 131 linescustom/ gtffilter/ templates/ gtffilter.py - modules/
nf-core/ , Python, 155 linescustom/ multiqccustombiotype/ templates/ mqc_features_stat.py - modules/
nf-core/ , Python, 214 linescustom/ tx2gene/ templates/ tx2gene.py - modules/
nf-core/ , R, 187 linesdupradar/ templates/ dupradar.r - modules/
nf-core/ , Perl, 140 linesea-utils/ gtf2bed/ templates/ gtf2bed.pl - modules/
nf-core/ , R, 237 linessummarizedexperiment/ summarizedexperiment/ templates/ summarizedexperiment.r - modules/
nf-core/ , R, 320 linestximeta/ tximport/ templates/ tximport.r - LICENSE, License, 21 lines
- README.md, Text, 157 lines
nf-core/atacseq
e805fffab3d2113d41768d08a71bfdda129fe396, 25 July 2026Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
12 files
- bin/
bampe_rm_orphan.py , Python, 169 lines - bin/
check_samplesheet.py , Python, 218 lines - bin/
deseq2_qc.r , R, 247 lines - bin/
get_autosomes.py , Python, 114 lines - bin/
igv_files_to_session.py , Python, 159 lines - bin/
macs2_merged_expand.py , Python, 222 lines - bin/
plot_homer_annotatepeaks , R, 170 lines.r - bin/
plot_macs2_qc.r , R, 155 lines - bin/
plot_peak_intersect.r , R, 78 lines - modules/
nf-core/ , Python, 101 linescustom/ dumpsoftwareversions/ templates/ dumpsoftwareversions.py - LICENSE, License, 21 lines
- README.md, Text, 131 lines
elgw/chromflock
379c8b47ecca20be7c9312ef47dec1d86d34166f, 19 December 2024Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
134 files
- examples/
chromflock/ , Shell, 28 lines3beads_3structures/ 3beads_3structures.sh - examples/
mflock/ , Shell, 42 linesbead_wells/ bead_wells.sh - examples/
mflock/ , Python, 49 linesdiploid_skeleton/ diploid.py - examples/
mflock/ , Python, 46 lineshaploid_skeleton/ haploid.py - examples/
mflock/ , Shell, 35 lineskissing_number/ kissing_number.sh - examples/
mflock/ , Shell, 44 lineskissing_number/ more_kissing_number.sh - examples/
mflock/ , Shell, 20 linesminimal_two_beads/ two_beads.sh - makedeb-ubuntu_2204.sh, Shell, 69 lines
- src/
aflock.c , C, 1,423 lines - src/
aflock.h , C/C++, 269 lines - src/
any2string.c , C, 96 lines - src/
any2string.h , C/C++, 14 lines - src/
balance.c , C, 82 lines - src/
balance.h , C/C++, 21 lines - src/
cc2cpm.c , C, 1,043 lines - src/
cc2cpm.h , C/C++, 19 lines - src/
cc2cpm_cli.c , C, 6 lines - src/
cf_util.c , C, 75 lines - src/
cf_util.h , C/C++, 58 lines - src/
cf_version.h , C/C++, 15 lines - src/
chromflock.c , C, 112 lines - src/
chromflock_init.c , C, 188 lines - src/
chromflock_init.h , C/C++, 15 lines - src/
cmmfilter.c , C, 107 lines - src/
cmmwrite.c , C, 192 lines - src/
cmmwrite.h , C/C++, 57 lines - src/
cmmwrite_ut.c , C, 149 lines - src/
contact_pairs_io.c , C, 513 lines - src/
contact_pairs_io.h , C/C++, 87 lines - src/
contact_pairs_io_ut.c , C, 6 lines - src/
ellipsoid.c , C, 892 lines - src/
ellipsoid.h , C/C++, 84 lines - src/
fast_prng/ , C/C++, 632 linesMT19937.h - src/
fast_prng/ , C/C++, 103 linesbenchmarks/ doornik_normal.h - src/
fast_prng/ , C/C++, 171 linesbenchmarks/ double_marsaglia.h - src/
fast_prng/ , C/C++, 187 linesbenchmarks/ marsaglia_tsang_exponent ial.h - src/
fast_prng/ , C, 82 linesbenchmarks/ profile.c - src/
fast_prng/ , Python, 64 linesbenchmarks/ profile_all.py - src/
fast_prng/ , Python, 247 linescreate_layers.py - src/
fast_prng/ , C/C++, 40 linesdebug.h - src/
fast_prng/ , C/C++, 65 linesexponential.h - src/
fast_prng/ , C, 49 linesmatlab/ fast_exprnd.c - src/
fast_prng/ , C, 34 linesmatlab/ fast_rand.c - src/
fast_prng/ , C, 45 linesmatlab/ fast_randn.c - src/
fast_prng/ , Shell, 25 linesmatlab/ install_matlab_fuctions. sh - src/
fast_prng/ , C/C++, 21 linesmatlab/ shared.h - src/
fast_prng/ , MATLAB, 33 linesmatlab/ timings.m - src/
fast_prng/ , C/C++, 96 linesnormal.h - src/
fast_prng/ , C, 71 linesquality_test.c - src/
fast_prng/ , C/C++, 19 linesshared.h - src/
functional.c , C, 1,041 lines - src/
functional.h , C/C++, 183 lines - src/
functional_optimal_nDiv. , C, 55 linesc - src/
functional_ut.c , C, 505 lines - src/
gen_cm.c , C, 134 lines - src/
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lua-5.3.5/ , C, 279 linessrc/ lundump.c - src/
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lua-5.3.5/ , C, 1,322 linessrc/ lvm.c - src/
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lua-5.3.5/ , C, 68 linessrc/ lzio.c - src/
lua-5.3.5/ , C/C++, 66 linessrc/ lzio.h - src/
mflock.c , C, 1,798 lines - src/
mflock.h , C/C++, 42 lines - src/
mflock_cli.c , C, 6 lines - src/
oscp.c , C, 47 lines - src/
oscp.h , C/C++, 26 lines - src/
sprite2cmap.c , C, 881 lines - src/
sprite2cmap.h , C/C++, 26 lines - src/
string2any.c , C, 105 lines - src/
string2any.h , C/C++, 10 lines - src/
wio.c , C, 259 lines - src/
wio.h , C/C++, 34 lines - src/
wio_ut.c , C, 7 lines - README.md, Text, 61 lines
BiCroLab/AllelicRadiality
a0bacf72a760104a16559d391baac82adf8c480c, 27 May 2026Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
76 files
- scripts/
atacseq/ , R, 110 linesATACseq_R_processing.R - scripts/
atacseq/ , Shell, 42 linesATACseq_allelic_phased_0 0_Phasing.sh - scripts/
atacseq/ , Shell, 60 linesATACseq_allelic_phased_0 1_filterBam.sh - scripts/
atacseq/ , Shell, 59 lines, 1 matchATACseq_allelic_phased_0 2_getCoverage.sh - scripts/
atacseq/ , Shell, 241 linesATACseq_nonphased_workfl ow.sh - scripts/
atacseq/ , Shell, 73 linesATACseq_promoter_quant.s h - scripts/
chromflock/ , Python, 408 linescool_to_chromflock.py - scripts/
chromflock/ , Shell, 259 linesgpseq_to_chromflock.sh - scripts/
extra/ , Shell, 3 linesgc_content.sh - scripts/
extra/ , Shell, 18 linesgencode_gene.sh - scripts/
extra/ , Shell, 3 linesgene_density.sh - scripts/
extra/ , Shell, 33 linesgene_window.sh - scripts/
gpseq/ , R, 278 linesGPSeq_R_processing.R - scripts/
gpseq/ , R, 373 linesGPSeq_R_processing_allel ic.R - scripts/
gpseq/ , Shell, 97 lines, 3 matchesgpseq_allelic_radiality. sh - scripts/
gpseq/ , Shell, 33 linesgpseq_allelic_radiality_ score.sh - scripts/
hic/ , Shell, 30 lines, 1 match00_Genome_build.sh - scripts/
hic/ , Shell, 17 lines01_HicPro_run.sh - scripts/
hic/ , Shell, 51 lines, 1 match02_Hic_convert.sh - scripts/
rnaseq/ , R, 197 lines, 1 matchRNAseq_R_processing.R - scripts/
rnaseq/ , R, 295 lines, 2 matchesRNAseq_R_processing_alle lic.R - scripts/
rnaseq/ , Shell, 49 lines, 2 matchesRNAseq_allelic_phased_01 _filterBam.sh - scripts/
rnaseq/ , Shell, 192 linesRNAseq_allelic_phased_02 _featureCounts.sh - scripts/
rnaseq/ , Shell, 49 linesRNAseq_allelic_phased_03 _RNAcoverage.sh - scripts/
rnaseq/ , Shell, 167 lines, 1 matchRNAseq_nonphased_pipelin e.sh - scripts/
visualization/ , R, 88 linesFig1/ F1AB.R - scripts/
visualization/ , C, 1,051 linesFig1/ F1CD/ main.c - scripts/
visualization/ , Python, 48 linesFig1/ F1CD/ rescale_data.py - scripts/
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visualization/ , Python, 339 lines, 1 matchFigS/ FS7.L.gpseq_corr.py - README.md, Text, 33 lines
Code Availability
All the scripts used for data processing, analysis and plotting from Source Data are available on GitHub at https://
Reproduced under the paper's license (CC BY), from the paper cited above.
Tracing map
Proposed by the machine: these links were found in the paper and verified at the source, without human review. The map will receive a Zenodo DOI once one of the paper's authors has validated it with their ORCID.
What the map holds:
- 5 repositories of the authors' code, each at its verified commit, with its license and how the link was found in the paper;
- 240 scripts, each with its path and the digest of its content;
- 23 matches between paragraphs of the paper and lines of the code (method lexical-v1);
- neither the text of the paper nor the code itself.
Its JSON (tracing-map.json) is deposited on Zenodo with its DOI once the map is validated.
Data
Datasets cited
- zenodo:20374207, at Zenodo; found in “Data Availability”
Data Availability
A list of all the datasets generated in this study and of the corresponding source samples is provided in Supplementary Table 1. The GPSeq and ATAC-seq data (FASTQ and BAM files) generated and analyzed in this study have been deposited on the European Nucleotide Archive (ENA) under accession number PRJEB112822. The mESC RNA-seq and ATAC-seq data analyzed in this study were generated previously98 and are available on the NCBI Sequence Read Archive (SRA) under accession number PRJNA478782 (RNA-seq) and PRJNA1186175 (ATAC-seq). Source Data and code to regenerate the plots displayed in this manuscript are available at https://
Reproduced under the paper's license (CC BY), from the paper cited above.
Versions
The history of this record: each version stored by the harvester or made by a correction of its authors or of the maintainers of its code, and what changed in its facts. The texts of the paper (its abstract, its availability statements) are not part of it; versions that changed only those are not listed.
Version 2, 28 September 2026
- Funding: added European Commission: 860675; Vetenskapsrådet; H2020 Marie Skłodowska-Curie Actions: 860675
Version 1, 27 September 2026: the first record
Recorded: type, journal, dates, 9 authors, 97 references.
Cite
This paper
Salviati, L., Yip, W. H., Peveri, G., Loda, A., Wernersson, E., Crosetto, N., Heard, E., Bouwman, B. A. M., & Bienko, M. (2026). Genome-wide and allele-resolved maps of the radial architecture of the mouse genome. Research Square (preprint). https://
BibTeX
@article{salviati2026gen
author = {Salviati, Lorenzo and Yip, Wing Hin and Peveri, Giulia and Loda, Agnese and Wernersson, Erik and Crosetto, Nicola and Heard, Edith and Bouwman, Britta A. M. and Bienko, Magda},
title = {{Genome-wide and allele-resolved maps of the radial architecture of the mouse genome}},
journal = {Research Square (preprint)},
year = {2026},
month = jun,
publisher = {Research Square},
issn = {2693-5015},
doi = {10.21203/
url = {https://
}
RIS
TY - JOUR
AU - Salviati, Lorenzo
AU - Yip, Wing Hin
AU - Peveri, Giulia
AU - Loda, Agnese
AU - Wernersson, Erik
AU - Crosetto, Nicola
AU - Heard, Edith
AU - Bouwman, Britta A. M.
AU - Bienko, Magda
TI - Genome-wide and allele-resolved maps of the radial architecture of the mouse genome
T2 - Research Square (preprint)
J2 - Res Sq
PY - 2026
DA - 2026/
SN - 2693-5015
PB - Research Square
DO - 10.21203/
UR - https://
ER -
CSL-JSON
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The tracing map gets a citation of its own once an author has validated it and it has a DOI.
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