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Articles 1 - 10 of 10
Full-Text Articles in Developmental Biology
Characterizing The Molecular Response Of Embryonic Zebra Finch To Acute Sound Playback, Saidat O. Adeniran-Obey Miss
Characterizing The Molecular Response Of Embryonic Zebra Finch To Acute Sound Playback, Saidat O. Adeniran-Obey Miss
All Theses
Auditory stimuli are important cues that influence developmental plasticity in animals and are important for development and adaptation to an ever-changing environment. In the zebra finch (Taeniopygia guttata), there is evidence of adaptive developmental reprogramming in response to a prenatal ‘heat call’. Embryos exposed to this heat call exhibit changes in growth rate post-hatch, increased heat resistance, and enhanced reproductive success at maturity. However, it has long been assumed that embryonic zebra finches cannot respond to sound due to the immaturity of their auditory system. These findings raise the critical question of whether late-stage zebra finch embryos can, …
Abnormal Trafficking And Processing Of Multiple Matrix Metalloproteinases Drive Cartilage Defects In Congenital Disorders Of Glycosylation, Chia-Lun Wu
All Dissertations
Congenital Disorders of Glycosylation (CDG) are rare metabolic diseases caused by defects in glycosylation. Despite identification of over 200 CDG types, the mechanisms linking glycosylation defects to diverse clinical phenotypes remain unclear. This dissertation uses zebrafish models of PMM2-CDG and STT3-CDG to redefine CDG pathogenesis, shifting from a simple glycan deficiency model to one involving disrupted cellular spatial organization.
We identify a protease-dependent pathway underlying craniofacial cartilage defects. Specifically, defective proteolytic processing of N-cadherin, a key adhesion molecule in chondrogenesis, is a central driver of pathology. We further uncover an unconventional trafficking mechanism in which ER stress and altered secretory …
Investigation Of Chondrogenesis, Myogenesis, And Osteogenesis After 2,4-Dtbp, 2-Bp, 4-Bp, 3,5-Dtbc Exposure In Zebrafish, Haley Brashears
Investigation Of Chondrogenesis, Myogenesis, And Osteogenesis After 2,4-Dtbp, 2-Bp, 4-Bp, 3,5-Dtbc Exposure In Zebrafish, Haley Brashears
All Theses
Synthetic phenolic antioxidants (SPAs) are used in personal care products, food packaging, and water pipes, common SPAs include 2,4-di-tert-butylphenol (2,4-DTBP), 2-tert-butyl phenol (2-BP), and 4-tert-butyl phenol (4-BP). These compounds are detected in the environment and in human biological samples. 2,4-DTBP has been detected in cord plasma, placenta, and breast milk samples. This drives the concern regarding developmental toxicity. In human iPS cells 2,4-DTBP impairs differentiation into somites and osteoblasts. Other SPAs, like 2,6-di-tert-butyl-hydroxytoluene caused increased rates of malformations including yolk and pericardial edema, and spinal curvature in 5-day post fertilization (dpf) zebrafish. …
Connecting Genotype And Phenotype: Investigating The Functional Morphology And Molecular Architecture That Influences Craniofacial Divergence Using Lake Malawi Cichlid Fishes, Leah Delorenzo
All Dissertations
Connecting genotype and phenotype to better understand how species evolve has been a goal of evolutionary developmental biologists over the last 50 years. This dissertation aims to connect genotype and phenotype of the craniofacial skeleton within the adaptive radiation of Lake Malawi cichlids to fortify our understanding of the functional, genetic, and epigenetic factors that contribute to craniofacial divergence. I start with a functional approach using 2D geometric morphometrics to assess craniofacial shape across the Lake Malawi cichlid radiation to bolster our knowledge of the bone phenotypes that are important to niche specialization and are functionally relevant. Next, I use …
Mirna Regulation Of Skeletal Muscle Hypertrophy, Maslyn Greene
Mirna Regulation Of Skeletal Muscle Hypertrophy, Maslyn Greene
All Dissertations
Muscle tissue is vital to animal survival and economically essential to livestock producers. Reduced muscle growth can occur from various reasons, including genetics, nutrition, and the pre and postnatal environment. Understanding the mechanisms behind muscle growth can aid in developing strategies to increase muscle mass. Several methods to increase muscle mass in livestock animals are currently being pursued, including nutrition, hormonal therapy, and genetic selection. One newly developing avenue is using miRNA technologies to change the expression of protein-coding genes. miRNA are a type of RNA that regulate over half of protein-coding gene expression. Here we evaluate muscle characteristics such …
Developmental Effects Of Chronic Low-Level Arsenic Exposure In Mouse Embryonic Stem Cells And In Human Induced Pluripotent Stem Cells, M. Chiara Perego
Developmental Effects Of Chronic Low-Level Arsenic Exposure In Mouse Embryonic Stem Cells And In Human Induced Pluripotent Stem Cells, M. Chiara Perego
All Dissertations
Arsenic is an environmental contaminant commonly found in food and drinking water. Exposure to arsenic during embryonic development has been linked to reduced muscle growth, disrupted muscle development and locomotor activity, impaired neurodevelopment, reduced IQ, impaired memory and learning deficits. While the mechanisms responsible for developmental changes following in utero exposure to arsenic are not well known, one possibility is that arsenic might disrupt proper cellular differentiation. Therefore, we aimed to investigate the mechanisms by which arsenic exposure could alter stem cell differentiation into neurons.
First, we continuously exposed P19 mouse embryonic stem (ES) cells to 0.1 μM (7.5 ppb) …
Investigations Into Avian Skeletal Adaptations And Spine Fusion Events, Tori Huey
Investigations Into Avian Skeletal Adaptations And Spine Fusion Events, Tori Huey
All Theses
Avian dinosaurs evolved skeletal adaptations resulting in numerous fused spinal structures, like the synsacrum, present in extant birds. The synsacrum is a highly fused region necessary for stiffening the spine, and it fuses the spine to the pelvic ilium. Conventional wisdom suggests that fusion occurred in ovo during embryonic development via the cartilage matrix that patterns the future vertebrae. We show that post hatch birds have intervertebral discs separating all vertebrae of the spine, leading us to re-examine this notion in chickens up to 10 weeks of age. Intervertebral discs undergo constant remodeling, then degenerate and undergo tissue clearance, followed …
A Novel Gain Of Function Of The Irx1 And Irx2 Genes Disrupts Axis Elongation In The Araucana Rumpless Chicken, Nowlan Freese
A Novel Gain Of Function Of The Irx1 And Irx2 Genes Disrupts Axis Elongation In The Araucana Rumpless Chicken, Nowlan Freese
All Dissertations
Caudal dysplasia describes a range of developmental disorders that affect normal development of the lumbar spinal column, sacrum and pelvis. An important goal of the congenital malformation field is to identify the genetic mechanisms leading to caudal deformities.
To identify the genetic cause(s) and subsequent molecular mechanisms I turned to an animal model, the rumpless Araucana chicken breed. Araucana fail to form vertebrae beyond the level of the hips. I performed a genome wide association study to identify candidate genomic regions associated with the rumpless phenotype, compared to tailed Araucana. A candidate region of chromosome 2 containing just two genes, …
Early Skeletal Morphogenesis: The Role Of Pharyngeal Endoderm Derived Signaling During Specification Of Craniofacial Skeleton And Interplay Of Mechanical Forces And Molecular Signaling During Skeletal Condensation, Poulomi Ray
All Dissertations
This study examines the fundamental principles governing the early
stages of skeletal morphogenesis. I specifically investigate the specification of mesenchymal progenitor cells to a skeletal fate. Using explant culture system, I determine that the pharyngeal endoderm was sufficient, but not necessary for specifying pre-chondrogenic identity. FGF signaling is both sufficient and required for specification of Sox9 expression and specification of prechondrogenic identity, as demonstrated by the addition of recombinant FGF protein or the FGF receptor inhibitor (SU5402) to explanted tissue, respectively. However, FGF signaling cannot maintain Sox9 expression or initiate the chondrogenic program as indicated by the absence of Col2a1 …
Specification Of The Neural Crest-Derived Pharyngeal Mesenchyme: The Role Of Pharyngeal Endoderm, Fgf And Bmp Signaling In The Establishment Of Prechondrogenic Identity And Initiation Of Chondrogenesis., Megha Kumar
All Dissertations
This study investigates the role of pharyngeal endoderm in the specification of prechondrogenic identity and initiation of chondrogenesis in the proximal mesenchyme of the second pharyngeal arch. The results show that pharyngeal endoderm is sufficient but not necessary for specification of prechondrogenic identity in the cranial neural crest derived arch mesenchyme. A number of Fgf genes - Fgf3, 4, 8 and 19 are expressed in the pharyngeal endoderm. Further, FGF signaling is sufficient and required for the specification of prechondrogenic identity, marked by Sox9 expression. However, FGF signaling is unable to maintain the Sox9 expression and initiate the chondrogenic program. …