Virginia Panara
Postdoktor vid Institutionen för organismbiologi; Evolution och utvecklingsbiologi
- E-post:
- virginia.panara@ebc.uu.se
- Besöksadress:
- Evolutionsbiologiskt Centrum EBC Norbyv. 18A
- Postadress:
- Norbyv. 18A
752 36 UPPSALA

Publikationer
Urval av publikationer
Senaste publikationer
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Ingår i BMC Biology, 2026
- DOI för Transcriptomic signature of differentiating catshark cartilage unravels the co-evolution of the Spp2 gene family with skeletal mineralisation in cartilaginous fish
- Ladda ner fulltext (pdf) av Transcriptomic signature of differentiating catshark cartilage unravels the co-evolution of the Spp2 gene family with skeletal mineralisation in cartilaginous fish
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Ingår i STAR Protocols, 2025
- DOI för Protocol to computationally average confocal images of zebrafish lymphatic vessels to identify phenotypes
- Ladda ner fulltext (pdf) av Protocol to computationally average confocal images of zebrafish lymphatic vessels to identify phenotypes
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The relationship between the secondary vascular system and the lymphatic vascular system in fish
Ingår i Biological Reviews, s. 2108-2133, 2024
- DOI för The relationship between the secondary vascular system and the lymphatic vascular system in fish
- Ladda ner fulltext (pdf) av The relationship between the secondary vascular system and the lymphatic vascular system in fish
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Multiple cis-regulatory elements control prox1a expression in distinct lymphatic vascular beds
Ingår i Development, 2024
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Ingår i EMBO Journal, 2023
Alla publikationer
Artiklar i tidskrift
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Ingår i BMC Biology, 2026
- DOI för Transcriptomic signature of differentiating catshark cartilage unravels the co-evolution of the Spp2 gene family with skeletal mineralisation in cartilaginous fish
- Ladda ner fulltext (pdf) av Transcriptomic signature of differentiating catshark cartilage unravels the co-evolution of the Spp2 gene family with skeletal mineralisation in cartilaginous fish
-
Ingår i STAR Protocols, 2025
- DOI för Protocol to computationally average confocal images of zebrafish lymphatic vessels to identify phenotypes
- Ladda ner fulltext (pdf) av Protocol to computationally average confocal images of zebrafish lymphatic vessels to identify phenotypes
-
The relationship between the secondary vascular system and the lymphatic vascular system in fish
Ingår i Biological Reviews, s. 2108-2133, 2024
- DOI för The relationship between the secondary vascular system and the lymphatic vascular system in fish
- Ladda ner fulltext (pdf) av The relationship between the secondary vascular system and the lymphatic vascular system in fish
-
Multiple cis-regulatory elements control prox1a expression in distinct lymphatic vascular beds
Ingår i Development, 2024
-
Ingår i EMBO Journal, 2023
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A Prox1 enhancer represses haematopoiesis in the lymphatic vasculature
Ingår i Nature, s. 343-348, 2023
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Ingår i Cell Reports, 2022
- DOI för mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct manners
- Ladda ner fulltext (pdf) av mafba and mafbb differentially regulate lymphatic endothelial cell migration in topographically distinct manners
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Phylogenetic analysis and embryonic expression of panarthropod Dmrt genes
Ingår i Frontiers in Zoology, 2019
- DOI för Phylogenetic analysis and embryonic expression of panarthropod Dmrt genes
- Ladda ner fulltext (pdf) av Phylogenetic analysis and embryonic expression of panarthropod Dmrt genes
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Ingår i BMC Evolutionary Biology, 2018
- DOI för Embryonic expression patterns and phylogenetic analysis of panarthropod sox genes: insight into nervous system development, segmentation and gonadogenesis
- Ladda ner fulltext (pdf) av Embryonic expression patterns and phylogenetic analysis of panarthropod sox genes: insight into nervous system development, segmentation and gonadogenesis
Artiklar, forskningsöversikt
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Ingår i Frontiers in Cell and Developmental Biology, 2022
- DOI för Epigenetic Regulation of Endothelial Cell Lineages During Zebrafish Development-New Insights From Technical Advances
- Ladda ner fulltext (pdf) av Epigenetic Regulation of Endothelial Cell Lineages During Zebrafish Development-New Insights From Technical Advances