Neural crest cells and the evolution of a phenotypic syndrome
Författare
Summary, in Swedish
wall lizard (Podarcis muralis) in Italy. Lizards with this syndrome show exaggerated expression of facial morphology (larger heads), coloration (extensive body melanization, bright green dorsal coloration, and enlarged UV-blue lateral spots) and behavior (aggressive and dominant behavior) relative to ancestral
phenotypes . A variety of approaches are applied – from single-cell transcriptomics to staining of individual genes in whole embryos – to trace the origination, migration and differentiation of NCCs in embryos of the common wall lizard. Building on this, I developed a methodology to isolate NCCs using
flow cytometry that does not require the use of transgenics or other manipulations. To test for differences in NCC biology associated with the nigriventris syndrome, I isolated NCCs from embryos of parents of nigriventris and ancestral origins and applied single-cell transcriptomics. I found that key
aspects of NCC biology such as total number, proliferation, migration, and gene expression are all found to be increased in embryos from parents with the nigriventris phenotype. This hyperfunction of NCCs in nigriventris embryos supports the idea that NCC biology facilitates the evolution of phenotypic syndromes.
Avdelning/ar
Publiceringsår
2025
Språk
Engelska
Fulltext
- Tillgänglig som PDF - 4 MB
Dokumenttyp
Doktorsavhandling (sammanläggning)
Förlag
Biologiska institutionen, Lunds universitet
Ämne
- Evolutionary Biology
- Bioinformatics and Computational Biology
- Developmental Biology
Nyckelord
- Evolution
- Developmental biology
- evo-devo
- Neural crest cells
- Stem cell
- Lizard
- Developmental bias
- scRNA-seq
- Utvecklingsbiologi
- neuralkammceller
- stamceller
- Ödla
- developmental bias
- stem cell
- evo-devo
- cell migration
- cell differentiation
- lizard
- gene expression patterns
- HNK-1
- cell migratory routes
- Squamata
- reptile
- fluorescence-activated cell sorting
- non-model organism
- cell type
- transcriptional prfiles
- single cell transcriptomics
- RNA velocity
- domestication syndrome
- flow cytometry
- scRNA-seq
- cell cycle
- devo-evo
Aktiv
Published
Projekt
- Can neural crest cell gene expression explain correlated trait evolution in wall lizards?
Handledare
ISBN/ISSN/Övrigt
- ISBN: 978-91-8104-571-0
- ISBN: 978-91-8104-572-7
Försvarsdatum
26 september 2025
Försvarstid
09:00
Försvarsplats
Blue Hall, Ecology Building. Join via zoom: https://lu-se.zoom.us/j/67411449026
Opponent
- Husby, Arild (Associate professor)