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Items: 1 to 20 of 234

  • Unknown field was ignored: [@jyp24].
1.

Genome-wide selection signatures reveal widespread synergistic effects of two different stressors in Drosophila melanogaster

Project data type: Other
Scope:
Monoisolate
Institute of Population Genetics, University of Veterinary Medicine, Vienna (Vetmeduni Vienna)
Accession:
PRJEB55541
ID:
1152426
2.

The Plasmodium falciparum histone methyltransferase PfSET10 is dispensable for the regulation of antigenic variation and gene expression in blood stage parasites

Organism:
Plasmodium falciparum
Taxonomy:
Plasmodium falciparum (malaria parasite P. falciparum)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Richard Bartfai Lab, Molecular Biology, Radboud Institute for Molecular Life Sciences
Accession:
PRJNA1127598
ID:
1127598
3.

NUTRIMI study

Nutrition to Relieve IBS symptoms by targeting the Microbiota

Project data type: Other
Scope:
Monoisolate
WAGENINGEN UNIVERSITY, LABORATORY OF MICROBIOLOGY
Accession:
PRJEB56219
ID:
1119842
4.

Deciphering cell states and genealogies of human hematopoiesis with single-cell multi-omics [Extended donors]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Other
Scope:
Multiisolate
Vijay Sankaran lab and Jonathan Weissman lab, Genetics, Broad Institute and Whitehead Institute
Accession:
PRJNA1085244
ID:
1085244
5.

Jatkowska_EEN

Dose-dependent effects of enteral nutrition on the faecal microbiota and diet-related bacterial metabolites

Project data type: Other
Scope:
Monoisolate
University of Glasgow
Accession:
PRJEB72881
ID:
1084515
6.

Deciphering cell states and genealogies of human hematopoiesis with single-cell multi-omics [Crispr_Mouse_Batch2]

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Other
Scope:
Multiisolate
Vijay Sankaran lab and Jonathan Weissman lab, Genetics, Broad Institute and Whitehead Institute
Accession:
PRJNA1080587
ID:
1080587
7.

Deciphering cell states and genealogies of human hematopoiesis with single-cell multi-omics [Crispr_Mouse_Batch1]

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Other
Scope:
Multiisolate
Vijay Sankaran lab and Jonathan Weissman lab, Genetics, Broad Institute and Whitehead Institute
Accession:
PRJNA1080578
ID:
1080578
8.

Particle uptake by macrophages triggers bifurcated transcriptional pathways that differentially regulate inflammation and lysosomal gene expression.

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Other
Scope:
Multiisolate
Glass Lab, CMM, University of California, San Diego
Accession:
PRJNA1079273
ID:
1079273
9.

Chromatin conformation and histone modification profiling across human kidney anatomic regions [Hi-C]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Other
Scope:
Multiisolate
Washington University School of Medicine
Accession:
PRJNA1066382
ID:
1066382
10.

Chromatin conformation and histone modification profiling across human kidney anatomic regions [CUT&RUN]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Epigenomics
Scope:
Multiisolate
Washington University School of Medicine
Accession:
PRJNA1066378
ID:
1066378
11.

Massive Parallel Sequencing (MPS) of miRNAs in PBMCs

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Institute of Rheumatology
Accession:
PRJNA1062301
ID:
1062301
12.

Selection of aptamers against α-synuclein fibrillar polymorphs

Libraries of SELEX against α-synuclein fibrillar polymorphs

Project data type: Other
Scope:
Monoisolate
CEA-MIRCEN
Accession:
PRJEB70964
ID:
1051470
13.

guidedNOMe-seq quantifies chromatin states at single allele resolution for hundreds of custom regions in parallel [guidedNOMe-seq]

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Other
Scope:
Multiisolate
Buehler Lab, Friedrich Miescher Institute for Biomedical Research
Accession:
PRJNA1050144
ID:
1050144
14.

guidedNOMe-seq quantifies chromatin states at single allele resolution for hundreds of custom regions in parallel [ChIP-Seq]

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Epigenomics
Scope:
Multiisolate
Buehler Lab, Friedrich Miescher Institute for Biomedical Research
Accession:
PRJNA1050142
ID:
1050142
15.

Dual RNA Seq of Salmonella-positive and Salmonella-negative small intestinal epithelial cells using the neonatal infection model

Organism:
Mus musculus
Taxonomy:
Mus musculus (house mouse)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
AG Hornef, Medical Microbiology, Uniklinik Aachen
Accession:
PRJNA1045571
ID:
1045571
16.

Time- and lineage-resolved transcriptional profiling uncovers gene expression programs and clonal relationships that underlie human T lineage specification

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Stem Cell Engineering, School of Biomedical Engineering, University of British Columbia
Accession:
PRJNA1044765
ID:
1044765
17.

THALLI

Project data type: Raw sequence reads
Scope:
Multispecies
Tuscia University
Accession:
PRJNA1042949
ID:
1042949
18.

Identification of TREM1+CD163+ myeloid cells as a deleterious immune subset in HCC [bulk_RNA-seq]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Armand Frappier Santé Biotechnologie, INRS
Accession:
PRJNA1030367
ID:
1030367
19.

Identification of TREM1+CD163+ myeloid cells as a deleterious immune subset in HCC [scRNA-seq]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Transcriptome or Gene expression
Scope:
Multiisolate
Armand Frappier Santé Biotechnologie, INRS
Accession:
PRJNA1030366
ID:
1030366
20.

Identification of TREM1+CD163+ myeloid cells as a deleterious immune subset in HCC [Spatial Transcriptomics]

Organism:
Homo sapiens
Taxonomy:
Homo sapiens (human)
Project data type: Other
Scope:
Multiisolate
Armand Frappier Santé Biotechnologie, INRS
Accession:
PRJNA1030364
ID:
1030364

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