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Evolutionary Changes in the Developmental Origin of Hatching Gland Cells in Basal Ray-Finned Fishes
- Source :
- Zoological science. 33(3)
- Publication Year :
- 2016
-
Abstract
- Hatching gland cells (HGCs) originate from different germ layers between frogs and teleosts, although the hatching enzyme genes are orthologous. Teleostei HGCs differentiate in the mesoendodermal cells at the anterior end of the involved hypoblast layer (known as the polster) in late gastrula embryos. Conversely, frog HGCs differentiate in the epidermal cells at the neural plate border in early neurula embryos. To infer the transition in the developmental origin of HGCs, we studied two basal ray-finned fishes, bichir (Polypterus) and sturgeon. We observed expression patterns of their hatching enzyme (HE) and that of three transcription factors that are critical for HGC differentiation: KLF17 is common to both teleosts and frogs; whereas FoxA3 and Pax3 are specific to teleosts and frogs, respectively. We then inferred the transition in the developmental origin of HGCs. In sturgeon, the KLF17, FoxA3, and HE genes were expressed during the tailbud stage in the cell mass at the anterior region of the body axis, a region corresponding to the polster in teleost embryos. In contrast, the bichir was suggested to possess both teleost- and amphibian-type HGCs, i.e. the KLF17 and FoxA3 genes were expressed in the anterior cell mass corresponding to the polster, and the KLF17, Pax3 and HE genes were expressed in dorsal epidermal layer of the head. The change in developmental origin is thought to have occurred during the evolution of basal ray-finned fish, because bichir has two HGCs, while sturgeon only has the teleost-type.
- Subjects :
- 0301 basic medicine
Fish Proteins
animal structures
Embryo, Nonmammalian
03 medical and health sciences
Sturgeon
Animals
Bichir
Phylogeny
Neural Plate
biology
Hatching
Endoderm
Fishes
Gene Expression Regulation, Developmental
Metalloendopeptidases
Cell Differentiation
Anatomy
biology.organism_classification
Biological Evolution
Cell biology
Gastrulation
030104 developmental biology
Hypoblast
Neurula
embryonic structures
Animal Science and Zoology
Anura
Neural plate
Polypterus
Transcription Factors
Subjects
Details
- ISSN :
- 02890003
- Volume :
- 33
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Zoological science
- Accession number :
- edsair.doi.dedup.....b338b0876df6b1611cf06ab954c3ae10