AbstractPhenotypic robustness requires a process of developmental buffering that is largely not understood, but which can be disrupted by mutations. Here we show that in mef2cab1086 loss of function mutant embryos and early larvae, development of craniofacial hyoid bones, the opercle (Op) and branchiostegal ray (BR), becomes remarkably unstable; the large magnitude of the instability serves as a positive attribute to learn about features of this developmental buffering. The OpBR mutant phenotype variably includes bone expansion and fusion, Op duplication, and BR homeosis. Formation of a novel bone strut, or a bone bridge connecting the Op and BR together occurs frequently. We find no evidence that the phenotypic stability in the wild type i...
<p>(A–H) Wholemount RNA <i>in situ</i> hybridization of <i>bmp3</i> expression at 48 hpf (A,B), 72 h...
H6 family homeobox 1 (HMX1) regulates multiple aspects of craniofacial development, and mutations in...
AbstractMyogenic regulatory factors of the myod family (MRFs) are transcription factors essential fo...
AbstractPhenotypic robustness requires a process of developmental buffering that is largely not unde...
The response of individuals to novel or altered environments is defined as "phenotypic plasticity“. ...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
The zebrafish has emerged as an important model for vertebrate development as it relates to human he...
Forward genetic analyses can reveal important developmental regulatory genes, and how they function ...
H6 family homeobox 1 (HMX1) regulates multiple aspects of craniofacial development, and mutations in...
Introduction: Animal models for OI have proved indispensable for unraveling molecular mechanisms in ...
AbstractMef2 genes encode highly conserved transcription factors involved in somitic and cardiac mes...
MEF2C is a crucial transcription factor for cranial neural crest cells development. An abnormal expr...
Bruck syndrome, a disorder caused by recessive mutations in either PLOD2 or FKBP10, is characterized...
Fragile bone disorders (FBD) are characterized by increased fracture risks due to insufficient or fr...
<p>(A–H) Wholemount RNA <i>in situ</i> hybridization of <i>bmp3</i> expression at 48 hpf (A,B), 72 h...
H6 family homeobox 1 (HMX1) regulates multiple aspects of craniofacial development, and mutations in...
AbstractMyogenic regulatory factors of the myod family (MRFs) are transcription factors essential fo...
AbstractPhenotypic robustness requires a process of developmental buffering that is largely not unde...
The response of individuals to novel or altered environments is defined as "phenotypic plasticity“. ...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
Osteogenesis imperfecta (OI) is a hereditary brittle bone disorder that is mostly (>90%) caused by d...
The zebrafish has emerged as an important model for vertebrate development as it relates to human he...
Forward genetic analyses can reveal important developmental regulatory genes, and how they function ...
H6 family homeobox 1 (HMX1) regulates multiple aspects of craniofacial development, and mutations in...
Introduction: Animal models for OI have proved indispensable for unraveling molecular mechanisms in ...
AbstractMef2 genes encode highly conserved transcription factors involved in somitic and cardiac mes...
MEF2C is a crucial transcription factor for cranial neural crest cells development. An abnormal expr...
Bruck syndrome, a disorder caused by recessive mutations in either PLOD2 or FKBP10, is characterized...
Fragile bone disorders (FBD) are characterized by increased fracture risks due to insufficient or fr...
<p>(A–H) Wholemount RNA <i>in situ</i> hybridization of <i>bmp3</i> expression at 48 hpf (A,B), 72 h...
H6 family homeobox 1 (HMX1) regulates multiple aspects of craniofacial development, and mutations in...
AbstractMyogenic regulatory factors of the myod family (MRFs) are transcription factors essential fo...