Journal Article DKFZ-2026-02335

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Concentrating cell-type-specific transcriptional signatures in bone marrow from interspecies comparisons.

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2026
Elsevier Amsterdam

Cell genomics nn, nn () [10.1016/j.xgen.2026.101365]
 GO

Abstract: Cell-type definition is commonly achieved using marker genes. Because cell types are broadly conserved across evolution, marker genes are identifiable via interspecies comparisons. We generated single-cell RNA sequencing datasets of bone marrow niche and hematopoietic progenitor compartments from four mouse species. Using these data, we developed a strategy that adds conservation of transcriptional levels to existing approaches that identify marker genes using conserved cell-type specificity. The resulting 'signature gene' lists contain both well-known and underexplored bone marrow markers. Signature genes capture cell identities and thus can robustly discern homologous cell types in diverse tissues of evolutionarily distant species. Unbiased benchmarking assessments demonstrated that our signature genes are comparable or superior to larger, less-conserved gene lists. Last, we confirm our framework's versatility and robustness using published datasets from another tissue and mammalian order. Thus, combining conserved cell-type specificity and transcriptional levels is a powerful, widely applicable strategy to distill profoundly descriptive signatures.

Keyword(s): bone marrow ; cell-type identity ; cell-type signatures ; cross-species comparisons ; hematopoietic niche ; hematopoietic stem cells ; marker genes ; mesenchymal stromal cells ; single-cell transcriptomics ; transcriptomic conservation

Classification:

Note: #EA:B270#LA:B086#LA:A012#LA:A011#LA:B270# / epub

Contributing Institute(s):
  1. Regulatorische Genomik und Evolution von Tumoren (B270)
  2. Stressinduzierte Aktivierung von Hämatopoetischen Stammzellen (A011)
  3. Experimentelle Hämatologie (A012)
  4. Abteilung Computergestützte und Molekulare Prävention (C220)
  5. Modellierung Biol. Systeme (B086)
  6. DKTK Koordinierungsstelle Frankfurt (FM01)
Research Program(s):
  1. 312 - Funktionelle und strukturelle Genomforschung (POF4-312) (POF4-312)

Appears in the scientific report 2026
Database coverage:
Medline ; DOAJ ; Article Processing Charges ; BIOSIS Previews ; Biological Abstracts ; Clarivate Analytics Master Journal List ; DOAJ Seal ; Emerging Sources Citation Index ; Fees ; PubMed Central ; SCOPUS ; Web of Science Core Collection
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 Record created 2026-09-22, last modified 2026-09-23



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