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Full-Text Articles in Developmental Biology

Tardigrade Bio-Exploration Reproduction Research Payload, Natalie Brattain, Chloe Nissen, Kylie Nager, Peter Ulrich, Enoch Tonkine Aug 2026

Tardigrade Bio-Exploration Reproduction Research Payload, Natalie Brattain, Chloe Nissen, Kylie Nager, Peter Ulrich, Enoch Tonkine

Discovery Day - Daytona Beach

The Tardigrade Bio-ExplorAtion Reproduction Research Payload (tBEARR) is an external International Space Station (ISS) standardized laboratory payload module mission under development by the Embry-Riddle Orbital Research Association (ERORA), an undergraduate research organization at Embry-Riddle Aeronautical University (ERAU) in Daytona Beach, Florida. As a club-driven mission, tBEARR provides undergraduate students with hands-on experience across all phases of space research, including payload design, biological experimentation, systems integration, and mission operations. The mission is supported by a biology research team focused on stress-response biology, experimental design, and biological validation throughout ground testing, high-altitude balloon flights, and orbital operations.   The primary objective of tBEARR …


Pediatric Glioblastoma Molecular Mechanisms, Ariana Trabachino, Joshua Owens Dec 2025

Pediatric Glioblastoma Molecular Mechanisms, Ariana Trabachino, Joshua Owens

Student Scholar Symposium

Powerpoint presentation


Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry May 2025

Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry

Research Days

This abstract describes our work regarding the differentiation of human inducible pluripotent stem cells into hematopoietic stem and progenitor cells as the groundwork for the development of a genomics driven inducible pluripotent stem cell model of KMT2A rearranged infant acute lymphoblastic leukemia.


Mesoderm-Specific Transcript Has A Role In The Systemic Regulation Of Obesity, Maria J. Orellana Rosales May 2025

Mesoderm-Specific Transcript Has A Role In The Systemic Regulation Of Obesity, Maria J. Orellana Rosales

Thinking Matters Symposium

Mesoderm specific transcript (Mest) expression in white adipose tissue (WAT) is variable in genetically identical mice. Previous studies have shown a connection between Mest high expression and propensity for fat mass expansion. WAT and liver crosstalk has been well documented with hormone-like peptides signaling and regulating important metabolic pathways. The aim of this study is to investigate the correlation between these circulating factors and Mest expression in mice after exposure to a high fat diet (HFD). A group of 120 C57B6/J mice, males and females, were exposed to a HFD (Western Diet, 40 kcal% fat) for 4 weeks (8-12 weeks …


Investigating The Ability Of Foxo1 To Maintain Stem Cells, Stella A. Rios, Megan E. Keniry Mar 2025

Investigating The Ability Of Foxo1 To Maintain Stem Cells, Stella A. Rios, Megan E. Keniry

Research Symposium

Background: Our group discovered that FOXO transcription factors drive stem gene expression in cancer to promote aggressiveness. Work by our group and others demonstrated that FOXO factors universally maintain stem cells including in cancer, embryonic, hematogenic and neuronal contents. Our current efforts are delineating the molecular underpinnings by which FOXO factors halt differentiation to maintain stem cells.

In this project, we are employing myoblasts as a valuable model to examine how Foxo1 maintains stem cells. Foxo1-regulated genes in myoblasts closely parallel its targets in glioblastoma and basal breast cancer stem cells, including targets such as Leukemia Inhibitory Factor, …


Ultrabithorax, Abdominal-A And Abdominal-B Form Heterodimers And Homodimers In Living Cells By Bifc, Rubén Montalvo Méndez, Gustavo Jiménez-Mejía, Diana Reséndez-Pérez Mar 2024

Ultrabithorax, Abdominal-A And Abdominal-B Form Heterodimers And Homodimers In Living Cells By Bifc, Rubén Montalvo Méndez, Gustavo Jiménez-Mejía, Diana Reséndez-Pérez

Research Symposium

Background: Hox genes encode transcriptional factors that regulate the expression of specific target genes along the anterior-posterior axis determining the segment identity during embryonic development. These master genes are expressed in the same order in which are located in the third chromosome of Drosophila melanogaster. As it was previously reported the interaction of neighboring Hox proteins as Scr-Antp and Antp-Ubx and one of the mechanisms for Hox protein regulation is protein-protein interaction, we determined the heterodimer formation of Ubx with AbdA and AbdB as well as the homodimer formation of these proteins in living cells which in turn could …


Trimeric Complex Interactions Of Antp-Tbp With Tfiieb And Exd Are Involved In The Genetic Control Of Drosophila Melanogaster, Gustavo Jiménez Mejía, Ruben De Jesus Montalvo Mendez, Claudia Dalila Altamirano Torres, Diana Reséndez Pérez Sep 2023

Trimeric Complex Interactions Of Antp-Tbp With Tfiieb And Exd Are Involved In The Genetic Control Of Drosophila Melanogaster, Gustavo Jiménez Mejía, Ruben De Jesus Montalvo Mendez, Claudia Dalila Altamirano Torres, Diana Reséndez Pérez

Research Symposium

Background: Homeoproteins are transcriptional factors (TFs) that shape animal body axes during development. These TFs are highly conserved and represent one of the most fascinating groups of regulatory molecules. Reports shown the multiplicity of interactions in hox proteins, as complexes trimeric involved to transcriptional activity. The study of trimeric complexes in Hox interactome will allow the better understanding of Hox genetic regulation during embryonic development.

Methodology: Using a new combination BiFCFRET approach performed in HEK293, the quantification was performed by FRETTY of ImageJ. Fly crosses were incubated at 25ºC on standard yeast-agar-cornmeal medium. Embryo cuticle preparations were carried out according …


Tata-Box Binding Protein Interacts With Antp, Scr, Ubx And Abdb Through Their N-Terminal Domains, Rubén Montalvo Méndez, Gustavo Jiménez Mejía, Diana Reséndez Pérez Sep 2023

Tata-Box Binding Protein Interacts With Antp, Scr, Ubx And Abdb Through Their N-Terminal Domains, Rubén Montalvo Méndez, Gustavo Jiménez Mejía, Diana Reséndez Pérez

Research Symposium

Background: Hox proteins are transcriptional factors (TFs) that define segment identity during embryonic development regulating specific target genes. These TFs interact with cofactors for DNA specificity and other TFs to regulate gene expression, which include basal transcriptional machinery members like BIP2, Med19, TFIIEβ, M1BP and TBP. Since TBP glutamine homopeptide (PolyQ) act as an interaction domain involved transcriptional regulation, we analyzed if TBP interact with Antp, Scr, Ubx and AbdB through its PolyQ region.

Methods: We used Bimolecular Fluorescent Complementation (BiFC) to determine TBP interaction with Antp, Scr, Ubx and AbdB as well as the implication of their homeodomain (HD) …


Trimeric Interaction Of Antp-Ubx With Tbp And Homeoprotein Exd In The Genetic Control Of Development In D. Melanogaster, Alely Cecilia Villarreal-Puente, Claudia Dalila Altamirano-Torres, Diana Resendez-Perez Sep 2023

Trimeric Interaction Of Antp-Ubx With Tbp And Homeoprotein Exd In The Genetic Control Of Development In D. Melanogaster, Alely Cecilia Villarreal-Puente, Claudia Dalila Altamirano-Torres, Diana Resendez-Perez

Research Symposium

Homeoproteins specify body segments along the anteroposterior axis during embryo development; they bind DNA through the homeodomain (HD). Homeoproteins bind to similar and repetitive target sequences on DNA, raising the question of how they achieve functional specificity. Homeoproteins form complexes with proteins through the HDs or other regions. Antennapedia (Antp) and Ultrabithorax (Ubx) have an important role in conferring thorax identity; also they are involved in a repression transcriptional mechanism: Ubx binds to Antp promoter repressing its expression. We analyzed if Ubx and Antp perform protein-protein interaction as a regulation mechanism and if the complex Antp-Ubx are involved in trimeric …


Canine Testes Thin Sections Culture​, Nguyen Khoi Nguyen, Ramanpreet Singh Sep 2023

Canine Testes Thin Sections Culture​, Nguyen Khoi Nguyen, Ramanpreet Singh

2023 Symposium

Canine testes thin section culture

Testes tissue culture systems would provide a tool to elucidate spermatogenesis mechanisms, with the aim of genetic preservation of mammals, especially endangered species. Our experiment aims to develop a culture system capable of producing viable mammalian sperm cells in vitro.

Dogs were chosen as the model organism because testes are readily available. Canine testes were obtained from a local veterinary clinic. Thin sections were generated using a commercial electric slicer. They then were cleaned using Dulbecco’s Phosphate-Buffered Saline (DPBS) supplemented with antibiotics then cultured in a modified Tissue Culture Medium 199 (TCM-199). Sections were …


Canine Testes Thin Sections Culture, Nguyen Khoi Nguyen, Ramanpreet Singh Sep 2023

Canine Testes Thin Sections Culture, Nguyen Khoi Nguyen, Ramanpreet Singh

2023 Symposium

Canine testes thin section culture

Testes tissue culture systems would provide a tool to elucidate spermatogenesis mechanisms, with the aim of genetic preservation of mammals, especially endangered species. Our experiment aims to develop a culture system capable of producing viable mammalian sperm cells in vitro.

Dogs were chosen as the model organism because testes are readily available. Canine testes were obtained from a local veterinary clinic. Thin sections were generated using a commercial electric slicer. They then were cleaned using Dulbecco’s Phosphate-Buffered Saline (DPBS) supplemented with antibiotics then cultured in a modified Tissue Culture Medium 199 (TCM-199). Sections were …


Examining The Reproductive Ecology Of Terrapene Ornata In Western Nebraska, Katie Brighton, Keetan Munsell Apr 2023

Examining The Reproductive Ecology Of Terrapene Ornata In Western Nebraska, Katie Brighton, Keetan Munsell

2023 Midwest Ecology & Evolution Conference

Understanding the reproductive ecology of any species is vital for determining intraspecific variation in individual fitness, modeling population growth or persistence potential, and developing effective conservation strategies. The reproductive ecology of many species has been extensively studied (particularly in mammals); however, other taxonomic groups including many ectotherms has not been well documented. One such ectotherm is the ornate box turtle (Terrapene ornata), which, to our knowledge, has never had its reproductive ecology extensively examined, especially in the field. In this study, we examined the reproductive ecology of ornate box turtles over a six-week period in a mixed shortgrass prairie in …


Effect Of Soil Microbes On The Growth Of Two Santa Monica Mountain Fern Species During Early Gametophyte Development, Chase Kerstein, Kaitlin Gartrell, Donna Nofziger Mar 2023

Effect Of Soil Microbes On The Growth Of Two Santa Monica Mountain Fern Species During Early Gametophyte Development, Chase Kerstein, Kaitlin Gartrell, Donna Nofziger

Seaver College Research And Scholarly Achievement Symposium

The fern life cycle alternates between two distinct phases: a diploid sporophyte phase and a haploid gametophyte phase. The mature gametophyte is an independent, single-cell layer structure that is photosynthetic. Much of the research on the early development of gametophytes takes place in sterile conditions while research into the effects of the soil microbiome on gametophyte development has not been well characterized. This study examines the interaction between the soil microbiome and early development of two Santa Monica Mountain fern species, Woodwardia fimbriata (Wf) found in riparian streams and Dryopteris arguta (Da) which grow in the chaparral understory. Spores from …


Intellectual Disability Related To De Novo Germline Loss Of The Distal End Of The P-Arm Of Chromosome 17: A Case Report, Eden Pope, Matthew Huertas, Amar Paul, Braden Cunningham, Matthew Jennings, Ryan Perry, Stephanie Chavez, John A. Kriak, Kyle B. Bills, David W. Sant Feb 2023

Intellectual Disability Related To De Novo Germline Loss Of The Distal End Of The P-Arm Of Chromosome 17: A Case Report, Eden Pope, Matthew Huertas, Amar Paul, Braden Cunningham, Matthew Jennings, Ryan Perry, Stephanie Chavez, John A. Kriak, Kyle B. Bills, David W. Sant

Annual Research Symposium

Hypothesis/Purpose: In this report we present a case of a 20-year-old female with congenital intellectual disability, stunted growth, and hypothyroidism. Competitive genetic hybridization (CHG) revealed a loss of 17p13.3, and the deletion was not present in either parent. This deletion has not previously been characterized, but mutations on the p-arm of chromosome 17 are responsible for Miller-Dieker Syndrome and Isolated Lissencephaly Sequence, both of which share symptoms in common with the patient.

Methods: Peripheral mononuclear cells (PBMCs) were used for karyotyping and competitive genetic hybridization (CHG). Bioinformatic analysis was carried out using the Genome Data Viewer (ncbi.nlm.nih.gov/genome/gdv).

Results: Karyotype was …


The Role Of Akirin/Nurd Interactions During Heart Development, Mia Jones Nov 2022

The Role Of Akirin/Nurd Interactions During Heart Development, Mia Jones

Symposium of Student Scholars

Congenital heart defects are often identified during pregnancy or infancy and are the most common birth defect presented in humans, affecting blood circulation resultant from small holes in a blood chamber to deformity-inducing missing structures. Recent advancements in medicine have allowed those affected to live healthier, longer lives. Gene combinations and chromosomal changes play pivotal roles in congenital heart defects, but the specific genes involved remain unknown. The Nowak Lab has discovered several novel regulatory proteins that are critical for embryonic heart development and is studying them for a potential link to congenital heart defects.

During embryogenesis, the heart of …


Genetically Explicit Model May Explain Multigenerational Control Of Emergent Turing Patterns In Hybrid Mimulus, Emily Simmons May 2022

Genetically Explicit Model May Explain Multigenerational Control Of Emergent Turing Patterns In Hybrid Mimulus, Emily Simmons

Biology and Medicine Through Mathematics Conference

No abstract provided.


Structure-Function Characterization Of Zebrafish Gadd34 And Crep, Alice Thuc Truong, Ciera Wroten, Jessica Woo, Jey Kim, Joshua Tao, Kleo Hong, Twisha Patel Apr 2022

Structure-Function Characterization Of Zebrafish Gadd34 And Crep, Alice Thuc Truong, Ciera Wroten, Jessica Woo, Jey Kim, Joshua Tao, Kleo Hong, Twisha Patel

Pacific Undergraduate Research and Creativity Conference (PURCC)

No abstract provided.


Computational Analysis Of Myxococcus Xanthus Gliding Motility With Varying Cellular Growth Rate, Laura Batista, Akeisha Belgrave Apr 2022

Computational Analysis Of Myxococcus Xanthus Gliding Motility With Varying Cellular Growth Rate, Laura Batista, Akeisha Belgrave

Harrisburg University Research Symposium: Highlighting Research, Innovation, & Creativity

This project focuses on determining the effects of varying growth rates on bacteria motility. Cell growth has been shown to affect peptidoglycan biosynthesis, interacting indirectly with the motility complex that spans across the bacteria. This complex adheres to the external surface via focal adhesion complexes that exert a mechanical force to push the cell forward. Affecting bacteria growth rate, affects peptidoglycan biosynthesis, & should therefore affect M. xanthus motility. (Independent Research)


Spr-5; Met-2 Maternal Reprogramming Cooperates With The Dream Complex To Regulate Developmental Cell Fates, Jazmin Dozier, Sandra Nguyen, Brandon Carpenter Apr 2022

Spr-5; Met-2 Maternal Reprogramming Cooperates With The Dream Complex To Regulate Developmental Cell Fates, Jazmin Dozier, Sandra Nguyen, Brandon Carpenter

Symposium of Student Scholars

Histone methylation is a post-transcriptional modification to the N-terminal tails of histone core proteins that regulates DNA accessibility, and consequently, gene expression. Like DNA, histone methylation can be inherited between generations, and is highly regulated during embryonic development. At fertilization, histone methylation must undergo maternal reprogramming to reset the epigenetic landscape in the new zygote. During maternal reprogramming of histone methylation in the nematode, C. elegans, H3K4me (a modification associated with active transcription) is removed by the H3K4 demethylase, SPR-5, and H3K9me (a modification associated with transcriptional repression) is subsequently added by the histone methyltransferase, MET-2. Recently, it was …


Developmental Staging And Morphological Comparisons Of Four Fern Gametophyte Species From The Santa Monica Mountains, Tristan Furlong Mar 2022

Developmental Staging And Morphological Comparisons Of Four Fern Gametophyte Species From The Santa Monica Mountains, Tristan Furlong

Seaver College Research And Scholarly Achievement Symposium

The fern life cycle alternates between two distinct phases: a diploid sporophyte phase consisting of the “adult” fern, and a haploid gametophyte phase. Early events and changes in gametophyte development can have considerable consequences in the morphologies of these different fern species and may facilitate the various adaptive strategies employed by the gametophytes in their different habitats. This study investigates early developmental events in the gametophytes of four different fern species found in the Santa Monica Mountains, Adiantum jordanii (chaparral understory, summer deciduous sporophyte), Woodwardia fimbriata (riparian stream), Dryopteris arguta (chaparral understory, evergreen), and Pentagramma triangularis (chaparral understory, resurrection sporophyte). …


Mutations Linked To Rare Diseases Can Be Generated And Tested In Zebrafish, Brianna Jansen, Luke Schipper, Valeria Lacroix, Amy Wilstermann, Rachael Baker Jan 2022

Mutations Linked To Rare Diseases Can Be Generated And Tested In Zebrafish, Brianna Jansen, Luke Schipper, Valeria Lacroix, Amy Wilstermann, Rachael Baker

Summer Research

  • BCS1L is important for cellular respiration and located in the mitochondria.
  • Mutations in BCS1L cause a wide variety of symptoms leading to 3 rare diseases.


Identification Of Phenotypic Defects In The Zinc Finger Transcription Factor Ztf-29, Trae Dunn Aug 2021

Identification Of Phenotypic Defects In The Zinc Finger Transcription Factor Ztf-29, Trae Dunn

Symposium of Student Scholars

Aging and many aging-associated diseases such as Alzheimer’s disease and cancer are characterized by a progressive decline in physiological functions and a decline in the ability to respond to stress. The underlying causes for many aging-associated diseases are unknown. Identifying genes that control normal aging will advance our understanding of the molecular changes that underlie the aging process and might help treat age-associated diseases. In order to get a better understanding of the molecular mechanisms behind these diseases, we utilize the nematode Caenorhabditis elegans as a model organism to examine defects in physiology and aging.

The human PRDM genes code …


Temperature Changes Seen In Lower Extremities After Cpn Local Anesthetic Block, Lora Asberry Aug 2021

Temperature Changes Seen In Lower Extremities After Cpn Local Anesthetic Block, Lora Asberry

Symposium of Student Scholars

Many older patients often suffer from walking issues such as Drop Foot. Drop Foot is caused by the malfunction of nerves in the foot, resulting in the loss of control of the front foot muscle. Within all of our patients, there has been a common fibular palsy, caused by the entrapment of the peroneal nerve. Due to this, they cannot lift up their foot. Some cases are permanent, while others are temporary. In the temporary cases, we have indicated a Phoenix Sign. The Phoenix Sign indicates that a nerve, presumed to be dead, has the capability to be recessed back …


Creating A Protein Chimera To Study Regulation Of Muscle Diversity, Shannon Scarboro May 2021

Creating A Protein Chimera To Study Regulation Of Muscle Diversity, Shannon Scarboro

Symposium of Student Scholars

Creating a protein chimera to study regulation of muscle diversity.

Body muscles are made of many individual super-cells, called muscle fibers, that have distinct properties and determine every individual’s strength and endurance. Initially all muscle fibers have identical characteristics, but become differentiated into specific types in adults. The mechanism of such transition is not well understood, despite its obvious importance for shaping human physicality.

Remarkable conservation of the muscle tissue enables us to use fruit flies to study the mechanisms of muscle fiber diversity. We hypothesized that the transcription factor Mef2 acts as a molecular switch that activates structural genes …


216— Loss Of Function Mutation For Tp53 Does Not Rescue The Chaf1bNt2 Small-Eye Phenotype In Danio Rerio, Alex Parks Apr 2021

216— Loss Of Function Mutation For Tp53 Does Not Rescue The Chaf1bNt2 Small-Eye Phenotype In Danio Rerio, Alex Parks

GREAT Day Posters

In Zebrafish, the chromosome assembly factor 1b (chaf1b) gene is in part responsible for the development of the eye. In homozygous chaf1bt24412 mutants retinal cell death is promoted through cell-death promoting activity of the gene, tumor suppressor protein p53 (tp53), resulting in a small-eye phenotype. Another allele chaf1bnt2, was found to also result in the small-eye phenotype when in a homozygous state. We found that knockdown of Tp53 protein via morpholino antisense oligonucleotide injection of 1-2 cell stage embryos failed to rescue retinal cell death of chaf1bnt2 homozygous mutants as detected by TUNEL labeling. Because morpholinos may fail to fully …


Mammalian Sec Proteins Expression And Purification, Elizabeth Bolton, Braden North, Brayden Vanderweide Jan 2021

Mammalian Sec Proteins Expression And Purification, Elizabeth Bolton, Braden North, Brayden Vanderweide

Summer Research

Sec23 and Sec24 mammalian proteins assist in the transport of cargo proteins from the endoplasmic reticulum to the Golgi apparatus. These COP II coat proteins trap cargo proteins for transport, potentially with direct binding to cargo protein GLUT1.


Spreading Mechanics And Differentiation Of Astrocytes During Retinal Development, Tracy Stepien, Timothy W. Secomb May 2020

Spreading Mechanics And Differentiation Of Astrocytes During Retinal Development, Tracy Stepien, Timothy W. Secomb

Biology and Medicine Through Mathematics Conference

No abstract provided.


Emergence, Mechanics, And Development: How Behavior And Geometry Underlie Cowrie Seashell Form, Michael G. Levy, Michael R. Deweese May 2020

Emergence, Mechanics, And Development: How Behavior And Geometry Underlie Cowrie Seashell Form, Michael G. Levy, Michael R. Deweese

Biology and Medicine Through Mathematics Conference

No abstract provided.


155— Analysis Of Her4.1 And Ascl1a In Gef Mutants, Rico Amato, Tessa Beiter, Christopher Lepore Apr 2020

155— Analysis Of Her4.1 And Ascl1a In Gef Mutants, Rico Amato, Tessa Beiter, Christopher Lepore

GREAT Day Posters

Zebrafish are a model organism for studying developmental abnormalities, especially in the eye. The good effort (gef) mutant zebrafish have smaller eyes than wild-type embryos due to rapid retinal degeneration that becomes apparent only after two days post fertilization. The genetic problem arises from a deletion of intronic DNA sequence which leads to the loss of an exon and disrupts the coding region of the Cha1b protein. Chaf1b is a subunit of the Chromosome assembly factor 1 (CAF-1), a complex of three proteins which has a role in histone loading and chromatin regulation. This small eye phenotype has been hypothesized …


Modeling Collective Migration Of Neural Crest Cells With A Cucker-Smale Velocity Alignment Process, Claire Evensen Oct 2019

Modeling Collective Migration Of Neural Crest Cells With A Cucker-Smale Velocity Alignment Process, Claire Evensen

Annual Symposium on Biomathematics and Ecology Education and Research

No abstract provided.