Identifying Epidermal Enriched Genes Required For Planarian Regeneration- Sp. Schmidtea Mediterranea,
2022
University of Kentucky
Identifying Epidermal Enriched Genes Required For Planarian Regeneration- Sp. Schmidtea Mediterranea, Pallob Barai
Theses and Dissertations--Biology
The outer epithelial layer covering an organism, commonly known as the epidermis, is crucial for maintaining homeostasis and for the wound healing processes after injury. The planarian epidermis allows flatworms to heal their wounds and virtually restore any missing tissues. Immediately after amputation, planarians contract their muscle and stretch their epidermis to heal the wound area. However, how the planarian epidermis coordinates with other tissues and mechanisms after the initial wound healing processes begins is not understood in detail. I hypothesized that epidermal cell stretching upon wound healing induces transcriptional changes that are required for effective regeneration. To test this …
Deoxyribose Phosphate Aldolase Is Required For Development Of Hematopoietic Stem Cells In The Zebrafish Embryo,
2022
Virginia Commonwealth University
Deoxyribose Phosphate Aldolase Is Required For Development Of Hematopoietic Stem Cells In The Zebrafish Embryo, Anubhav Thapaliya, Sanyam Patel, Teerth Y. Patel, Sivam J. Bhatt, Erich W. Damm
Undergraduate Research Posters
Hematopoietic stem cells (HSCs) are an integral part of modern biomedical research because they are precursors to all blood cell lineages in vertebrates. Further understanding of hematopoietic development will allow for improvements in the success of therapeutic bone marrow transplantation; which is a crucial treatment in management of both malignant and non-malignant blood disorders. Although HSC transplantation is curative for many blood disorders, finding compatible donors is difficult due to a need for immunologic compatibility. Consequently, recent research efforts have been directed towards generating HSCs for the patient, from the patient themselves through the directed differentiation of induced pluripotent stem …
Understanding The Cellular And Physiological Mechanisms Of Fertilization And Early-Stage Seed Development,
2022
University of Kentucky
Understanding The Cellular And Physiological Mechanisms Of Fertilization And Early-Stage Seed Development, Mohammad Foteh Ali
Theses and Dissertations--Plant and Soil Sciences
Flowering plants have evolved a unique double-fertilization process. Two sperm cells fuse with two female gametophytic cells, the egg and central cells within the ovule, giving rise to the embryo and endosperm, respectively. Sperm cells in flowering plants are nonmotile and delivered in close proximity to the egg and central cells by the pollen tube. Flowering plants have established filamentous actin (F-actin) based sperm nuclear migration system for successful fertilization. Prior to fertilization, the female gamete forms a mesh-like structure of F-actin that shows constant inward movement from the plasma membrane periphery to the center of the cell where the …
Elucidating The Role Of Hemodynamic Force In Regulating The Attachment Of Vascular Smooth Muscle Cells (Vsmcs) To Maturing Vessels During Mouse Embryonic Development,
2022
Missouri State University
Elucidating The Role Of Hemodynamic Force In Regulating The Attachment Of Vascular Smooth Muscle Cells (Vsmcs) To Maturing Vessels During Mouse Embryonic Development, Israt Jahan
Graduate Theses/Dissertations
Blood vessel maturation is characterized by the recruitment and attachment of vascular smooth muscle cells (vSMCs) around immature blood vessels, which ultimately form the tunica media. Improper maturation can lead to vascular birth defects ranging from minor birthmarks to lethal brain aneurysms. Previously, our lab demonstrated that hemodynamic force plays an important role to regulate vSMCs recruitment from neighboring low-flow to high-flow vessels followed by the attachment of these vSMCs to the high-flow vessels. To understand the reason for the preferred attachment of vSMCs to high-flow vessels, instead of low-flow vessels, I hypothesize that hemodynamic force modulates the expression of …
Nutrient Scarcity And Cellular Cooperation In A Clonal Hydroid,
2022
Northern Illinois University
Nutrient Scarcity And Cellular Cooperation In A Clonal Hydroid, Weam S. El Rahmany
Graduate Research Theses & Dissertations
Biological complexity forms when lower-level units (e.g., genes, cells, organisms) cooperatively band together. This complexity may be exemplified by multicellularity, the cooperation between the cells of the same species, or symbiosis, cooperation between the cells of different species. This cooperation is under continual threat, as defection, the opposite of cooperation, is favored by default by lower-level units (i.e., cells). Animal cancers may be the most well-known phenomena that exemplify the concept of cellular defection. Cancer cells have been shown to feature morphological and metabolic traits, developed through differential gene expression or mutations, that favor their growth at the cost of …
Genetic Underpinnings Of Novel Trait Development In A Euwallacea-Fusarium Mutualism,
2022
West Virginia University
Genetic Underpinnings Of Novel Trait Development In A Euwallacea-Fusarium Mutualism, Elaina J. Spahr
Graduate Theses, Dissertations, and Problem Reports (ETD)
Evolutionary Developmental Biology seeks to answer fundamental questions about the mechanisms underlying the evolution and innovation towards increasing structural complexity within the body plan. The ambrosia symbiosis, a polyphyletic group of xylem-feeding beetles, provides a wealth of diversity in novel pouch-like structures called mycangia. This diversity could serve as a rich model for understanding how mutualisms may prompt structural innovation and diversification in a host organism. The ambrosia symbiosis has become a fast-growing research subject in entomology and forest pathology but has yet to experience the same attention under the lens of evolutionary developmental genetics.
Development of mycangia was examined …
Modeling Jadera Haematoloma’S Phenotypic Variation In The Context Of Its Developmental Plasticity,
2022
Colby College
Modeling Jadera Haematoloma’S Phenotypic Variation In The Context Of Its Developmental Plasticity, Michael C. Yorsz
Honors Theses
Phenotypic plasticity is the ability of an organism to integrate information from environmental cues to inform the development of its phenotype and remains understudied in biology. Models of plasticity are needed because evolution in the presence of plasticity is poorly understood. Jadera haematoloma, a hemimetabolous true bug, is an excellent animal model of plasticity, exhibiting a non-linear plastic response to juvenile nutrition that biases adult development into groups with differences in flight capability, wing shape, and fecundity. However, there is a lack of literature consensus regarding the range of developmental outcomes in the species. Some publications report the presence …
The Transcription Factor Nfe2l2a Is Required For Development Of Hematopoietic Stem Cells In The Zebrafish Embryo,
2022
Virginia Commonwealth University
The Transcription Factor Nfe2l2a Is Required For Development Of Hematopoietic Stem Cells In The Zebrafish Embryo, Sivam Bhatt, Teerth Patel, Madeleine Seputro, Anubhav Thapaliya, Erich Damm
Undergraduate Research Posters
Hematopoietic Stem Cells (HSCs) are the self-renewing population of cells that generate all erythrocytes and leukocytes over the lifetime of a vertebrate organism. HSCs are also the therapeutic units of curative bone marrow transplants used in the treatment of blood malignancies and in gene therapy for genetic blood disorders. In all vertebrate embryos, HSCs originate from the floor of the embryonic dorsal aorta during the endothelial to hematopoietic transition. Nascent HSCs will bud into the blood vessel and be carried to maturation sites by the embryonic blood flow. Despite the curative potential of HSC transplants in blood disorders, this approach …
Getting To The Root Cause: The Genetic Underpinnings Of Root System Architecture And Rhizodeposition In Sorghum,
2022
West Virginia University
Getting To The Root Cause: The Genetic Underpinnings Of Root System Architecture And Rhizodeposition In Sorghum, Farren Smith
Graduate Theses, Dissertations, and Problem Reports (ETD)
Plants are some of the most diverse organisms on earth, consisting of more than 350,000 different species. To understand the underlying processes that contributed to plant diversification, it is fundamental to identify the genetic and genomic components that facilitated various adaptations over evolutionary history. Most studies to date have focused on the underlying controls of above-ground traits such as grain and vegetation; however, little is known about the “hidden half” of plants. Root systems comprise half of the total plant structure and provide vital functions such as anchorage, resource acquisition, and storage of energy reserves. The execution of these key …
Analysis Of Spore Shape Determination In Streptomyces,
2021
Duquesne University
Analysis Of Spore Shape Determination In Streptomyces, Ning Sun
Electronic Theses and Dissertations
Streptomycetes are Gram-positive, soil-dwelling bacteria that possess a complex life cycle with the alternation of vegetative mycelium, aerial mycelium, and spores. Streptomyces. coelicolor spore maturation is a complex process that involves spore shape metamorphosis from cylindrical pre-spores into ellipsoid spores, but the details of this process have remained enigmatic. Previously, our lab identified a novel gene ssdA that might play a role in spore shape determination using a transposon-based insertion mutagenesis in S. coelicolor. In this study, I isolated a S. coelicolor ssdA-null mutant that showed increased colony hydrophobicity and misshapen spores in sizes and shapes, confirming the …
The Effect Of Twist1b And Twist2 Knockdown On Tgf-Beta Signaling Expression In Tendon Progenitors,
2021
Belmont University
The Effect Of Twist1b And Twist2 Knockdown On Tgf-Beta Signaling Expression In Tendon Progenitors, Marinia N. Bishay
Honors Scholars Collaborative Projects
Somites are important mesoderm structures that form in regularly timed intervals from the anterior end of the paraxial mesoderm at the end of gastrulation during embryogenesis. Cells of the ventromedial portion of the somite, the sclerotome, undergo epithelial to mesenchymal transition, surround the notochord, and give rise to connective tissues of the axial skeleton including the vertebrae, tendons, and ligaments. We are interested in understanding how the sclerotome is compartmentalized into the region that makes tendons. Genes expressed in the sclerotome, twist1 and twist2, are likely involved in the downstream differentiation of sclerotome to tendon progenitors. Previous studies have shown …
The Effects Of Chronic Ethanol Exposure On Caenorhabditis Elegans Germline,
2021
Seton Hall University
The Effects Of Chronic Ethanol Exposure On Caenorhabditis Elegans Germline, Andrea Zegarra
Seton Hall University Dissertations and Theses (ETDs)
Ethanol is the most commonly abused drug in the world. Alcohol consumption increases a number of health risks, morbidity and mortality, and chronic and acute diseases. Some health risks include high blood pressure, stroke, liver disease, cancer, and can include mental health and social problems. Chronic alcohol consumption can lead to learning and memory problems, along with alcohol dependence. Additionally, alcohol consumption has an impact on ovarian reserve, steroid hormone production, sperm quality, fecundity, and fertility treatments. The purpose of this study was to analyze the effects of ethanol exposure on fertility of the N2 wild type as measured by …
Co-Option Of The Yolkless Oocyte Receptor For Crispr/Cas9 May Induce Transient Sterility In Female Drosophila Grimshawi Flies,
2021
University of New Orleans
Co-Option Of The Yolkless Oocyte Receptor For Crispr/Cas9 May Induce Transient Sterility In Female Drosophila Grimshawi Flies, Bronwyn Miller
LSU New Orleans Theses and Dissertations
Evolutionary developmental biology has historically used generalist model organisms like Drosophila melanogaster. The Hawaiian Drosophilidae radiation, which occurred just 25 million years ago, is an ideal lineage for work in Evo-Devo. Hawaiian flies make up 25% of the world’s Drosophila species and extreme diversity is seen throughout the group. D. grimshawi is a generalist Hawaiian picture-wing fly that has served as a model for the Hawaiian Drosophilidae radiation. However, D. grimshawi’s power and use as a model organism is constrained by our lack of ability to manipulate its genome. In this work, I attempted to edit the genome of …
(Non)Parallel Developmental Mechanisms In Vertebrate Appendage Reduction And Loss,
2021
University of Chicago
(Non)Parallel Developmental Mechanisms In Vertebrate Appendage Reduction And Loss, Samantha Swank, Thomas Sanger, Yoel E. Stuart
Biology: Faculty Publications and Other Works
Appendages have been reduced or lost hundreds of times during vertebrate evolution. This phenotypic convergence may be underlain by shared or different molecular mechanisms in distantly related vertebrate clades. To investigate, we reviewed the developmental and evolutionary literature of appendage reduction and loss in more than a dozen vertebrate genera from fish to mammals. We found that appendage reduction and loss was nearly always driven by modified gene expression as opposed to changes in coding sequences. Moreover, expression of the same genes was repeatedly modified across vertebrate taxa. However, the specific mechanisms by which expression was modified were rarely shared. …
Developing Inside A Layer Of Germs—A Potential Role For Multiciliated Surface Cells In Vertebrate Embryos,
2021
Gettysburg College
Developing Inside A Layer Of Germs—A Potential Role For Multiciliated Surface Cells In Vertebrate Embryos, Ryan R. Kerney
Biology Faculty Publications
This paper reviews current research on the microbial life that surrounds vertebrate embryos. Several clades are believed to develop inside sterile—or near-sterile—embryonic microhabitats, while others thrive within a veritable zoo of microbial life. The occurrence of embryo-associated microbes in some groups, but not others, is an under-appreciated transition (possibly transitions) in vertebrate evolution. A lack of comparable studies makes it currently impossible to correlate embryo-associated microbiomes with other aspects of vertebrate evolution. However, there are embryonic features that should instruct a more targeted survey. This paper concludes with a hypothesis for the role of multiciliated surface cells in amphibian and …
Regulatory Non-Coding Rnas Modulate Transcriptional Activation During B Cell Development,
2021
CUNY City College
Regulatory Non-Coding Rnas Modulate Transcriptional Activation During B Cell Development, Mary Attaway, Tzippora Chwat-Edelstein, Bao Q. Vuong
Publications and Research
B cells play a significant role in the adaptive immune response by secreting immunoglobulins that can recognize and neutralize foreign antigens. They develop from hematopoietic stem cells, which also give rise to other types of blood cells, such as monocytes, neutrophils, and T cells, wherein specific transcriptional programs define the commitment and subsequent development of these different cell lineages. A number of transcription factors, such as PU.1, E2A, Pax5, and FOXO1, drive B cell development. Mounting evidence demonstrates that non-coding RNAs, such as microRNAs (miRNAs) and long non-coding RNAs (lncRNAs), modulate the expression of these transcription factors directly by binding …
Analysis Of Tri-Lineage Collagen Reporter Mice Growth Plates Through Light Sheet Microscopy,
2021
University of Connecticut - Storrs
Analysis Of Tri-Lineage Collagen Reporter Mice Growth Plates Through Light Sheet Microscopy, Olivia Ferrigno
Holster Scholar Projects
The growth plate is an active area of cartilage in the long bones of children. Its main function is to enable limb lengthening, but is a relatively weak structure that is prone to fractures and injuries. These injuries can have severe long term ramifications, as they can create premature bone fusion, also known as a bony bridge, that causes stunted or crooked growth. Dr. Liisa Kuhn’s Lab has developed an accurate, reproducible animal model that mimics this same growth plate behavior and can be used to further analyze the growth plate structure, healing process, and new treatments. This animal model …
Insect Developmental Plasticity: The Role In A Changing Environment,
2021
University of Louisville
Insect Developmental Plasticity: The Role In A Changing Environment, Lindsey A. Barnes
The Cardinal Edge
Climate change has been recognized as a severe threat to biodiversity. In the rapidly growing collection of literature on the consequences of global change, researchers have recently noticed a dramatic decrease in insect populations in a wide range of habitats. Insects are extremely susceptible to climatic change, especially with regard to fluctuations in moisture and temperature. However, insects often exhibit phenotypic plasticity, where organisms will express different phenotypes when presented with a specific environmental stimulus. In developmental plasticity, environmental stimuli at the larval stage can determine adult phenotypes. This review focuses on case studies of developmental plasticity in insects, with …
A Literature Review On The Development Of Upper Limbs In Humans,
2021
University of Louisville
A Literature Review On The Development Of Upper Limbs In Humans, Anh T. Phan
The Cardinal Edge
The development of tetrapod upper limbs shares an evolutionary origin and has been adapted and specialized for different functions for different species, such as flight in birds, swimming and balance in sea mammals, and coordination and grabbing objects in humans. The basis of tetrapod limb development has common developmental patterns, starting with the formation of the limb bud via Sonic hedgehog (Shh) signaling, where later developmental steps are modified for specialized functions. This review covers the basic developmental patterns of mammalian tetrapod development seen in humans, beginning with the formation of the limb bud, to the axis development of the …
Dentinogenesis Imperfecta: The Genetic Causes And Outcomes,
2021
University of Louisville
Dentinogenesis Imperfecta: The Genetic Causes And Outcomes, Sydney P. Johnson Ms.
The Cardinal Edge
Dentinogenesis imperfecta (DI) is a genetic disorder characterized by dentin discoloration, tooth development irregularities, and decreased tooth strength. This autosomal dominant disorder is identified in individuals of all ages. There are three classifications of dentinogenesis imperfecta, each with varying presentations and causes. This report covers normal tooth development (odontogenesis), DI development, DI classifications, and the genes involved in this genetic disorder.
