Notochord development in Atlantic salmon (Salmo salar L.): exploring molecular pathways and putative mechanism of segmentation
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Summary
This document summarizes current capabilities, research and operational priorities, and plans for further studies that were established at the 2015 USGS workshop on quantitative hazard assessments of earthquake-triggered landsliding and liquefaction in the Central American region.
- Type
- dissertation
- Published
- 2014-03-07
- Cited by
- 0
- References
- 162
- Access
- Open access
- OpenAlex
- https://openalex.org/W957042216
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:55285628
Keywords
Salmo, Mechanism (biology), Notochord, Biology, Fishery
References
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- Vertebrates: Comparative Anatomy, Function, Evolution
- Diversity of intervertebral disc cells: phenotype and function
- Parallel expression of Sox9 and Col2a1 in cells undergoing chondrogenesis
- The generation of vertebral segmental patterning in the chick embryo
- Notochord to endoderm signaling is required for pancreas development.
- Interrelationship and modularity of notochord and somites: a comparative view on zebrafish and chicken vertebral body development
- Mutations affecting development of the notochord in zebrafish.
- Control of dorsoventral pattern in vertebrate neural development: induction and polarizing properties of the floor plate.
- Sox9 directly promotes Bapx1 gene expression to repress Runx2 in chondrocytes
- Notochord vacuoles are lysosome-related organelles that function in axis and spine morphogenesis
- Fetuin-B, a second member of the fetuin family in mammals.
- Craniofacial cartilage morphogenesis requires zebrafish col11a1 activity.
- The salmon vertebral body develops through mineralization of two preformed tissues that are encompassed by two layers of bone
- Molecular characterization of Calymmin, a novel notochord sheath‐associated extracellular matrix protein in the zebrafish embryo
- Analyzing notochord segmentation and intervertebral disc formation using the twhh:gfp transgenic zebrafish model
- Collagen type XI α1 may be involved in the structural plasticity of the vertebral column in Atlantic salmon (Salmo salar L.)
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