Open Access. Powered by Scholars. Published by Universities.®

Genetics Commons

Open Access. Powered by Scholars. Published by Universities.®

Clemson University

Discipline
Keyword
Publication Year
Publication
Publication Type

Articles 1 - 30 of 51

Full-Text Articles in Genetics

Sorghum Grain Secondary Metabolites And Underlying Genetics To Reduce Foodborne Pathogens In Poultry, Maria A. Conti May 2026

Sorghum Grain Secondary Metabolites And Underlying Genetics To Reduce Foodborne Pathogens In Poultry, Maria A. Conti

All Dissertations

The rise in antibiotic-resistant pathogens poses a threat to the poultry industry's ability to maintain animal health, prompting growing interest in alternatives to synthetic antibiotics. The use of non-tannin sorghum [Sorghum bicolor (L.) Moench] in poultry rations offers a valuable alternative, as this cereal grain has a high bioactive profile that can provide health benefits, including antimicrobial (AM) activity. The scope of this study was to examine the AM potential of non-tannin sorghum grain against Clostridium perfringens, a major foodborne pathogen that negatively impacts poultry health and production. To that end, the inhibitory effects of a non-tannin sorghum …


Precursor Rna Properties Driving Cryptic 3’ Splice Site Selection In Sf3b1 Mutant Malignancies, Austin A. Herbert May 2026

Precursor Rna Properties Driving Cryptic 3’ Splice Site Selection In Sf3b1 Mutant Malignancies, Austin A. Herbert

All Dissertations

SF3B1 is a core component of the spliceosome involved in branch point recognition and 3’ splice site selection. SF3B1 is commonly mutated in myelodysplastic syndromes and other blood cancers with the K700E mutation being the most frequent. This mutation of SF3B1 induces cryptic 3’ splice site activation in hundreds of genes. Introduction of such cryptic 3’ splice sites can shift the reading frame of protein coding transcripts, causing the transcript to be tagged for nonsense-mediated decay or resulting in the production of a truncated protein. Both these scenarios can lead to down-regulated protein expression. Sequence and structural properties of precursor …


Abnormal Trafficking And Processing Of Multiple Matrix Metalloproteinases Drive Cartilage Defects In Congenital Disorders Of Glycosylation, Chia-Lun Wu May 2026

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 …


Purple Tomatoes Boost Nutrition Crop Value And Create New Opportunities For United States (U.S) Agriculture, Tariq Alam Oct 2025

Purple Tomatoes Boost Nutrition Crop Value And Create New Opportunities For United States (U.S) Agriculture, Tariq Alam

Agronomic Crops

The agricultural landscape in the United States is continually evolving, with growers and the tomato industry seeking innovative ways to meet consumer demands while enhancing profitability. The introduction of both bioengineered and classically bred anthocyanins-enriched purple tomatoes presents a unique opportunity for U.S. growers to cultivate a high-value crop that appeals to niche markets and commands premium pricing. Bioengineered purple tomatoes achieve high anthocyanin levels through the introduction of snapdragon transcription factors, while classically bred 'Indigo Rose' purple tomatoes are developed via classical breeding methods, providing an alternative for consumers who prefer traditionally bred products. Specifically, the purple tomato holds …


A Review On Treatment, Prevention, And Research Of Worldwide Parasitic Disease: Toxoplasmosis, Hannah Skinner May 2025

A Review On Treatment, Prevention, And Research Of Worldwide Parasitic Disease: Toxoplasmosis, Hannah Skinner

All Theses

Toxoplasmosis is a worldwide, yet often overlooked, parasitic disease caused by the protozoan parasite, Toxoplasma gondii. The parasite is capable of infecting humans and almost all warm-blooded vertebrates. Over a million people are infected in the United States with toxoplasmosis each year. Most infections are asymptomatic but severe cases can lead to vision impairment, neurological disorders, and congenital birth defects. T. gondii is transmitted through undercooked meat, infected feline feces, or contaminated water and soil. The burden of T. gondii infection is most notable in livestock, felines, and immunocompromised humans. Despite being a widespread disease, toxoplasmosis is neglected in …


A Drosophila Model Of Mucopolysacchridosis Iiia, Rebecca Bishop Dec 2024

A Drosophila Model Of Mucopolysacchridosis Iiia, Rebecca Bishop

All Theses

Mucopolysaccharidosis IIIA (MPS IIIA) is a rare lysosomal storage disorder that arises from inability to break down heparan sulfate (HS) because of mutations in the N-sulfoglucosamine sulfohydrolase (SGSH) gene. We used a deletion mutant of the Drosophila melanogaster Sgsh gene along with three point mutations analogous to mutations observed in patients (S64W, L89P, S301P) to show an increase in the average percent of area with lysosomal puncta in the fly brains of our mutants using Lysotracker. RNA sequencing of brains of mutant and control flies showed 441 (Knockout), 337 (S64W), 155 (L89P), and 96 (S301P) differentially expressed …


Bap1: Genotype-Phenotype Correlation, Variant Classification, And Treatment Efficacy, Elizabeth Hobbs Dec 2024

Bap1: Genotype-Phenotype Correlation, Variant Classification, And Treatment Efficacy, Elizabeth Hobbs

All Dissertations

BRCA1-associated protein 1 (BAP1) is a tumor suppressor gene located on chromosome 3p21.3 and encodes a deubiquitinase enzyme (DUB) involved in DNA repair, cell cycle and metabolism, and apoptosis. BAP1 pathogenic germline variants are primarily associated with a familial cancer syndrome, Tumor Predisposition Syndrome 1 (TPDS1), but new missense variants have been linked to a neurodevelopmental disorder known as Kury-Isidor Syndrome (KURIS). Patients with TPDS1 variants have an increased risk for developing cancers, such as uveal and cutaneous melanomas, mesothelioma, and renal cell carcinoma, at an earlier age with lower thresholds for environmental exposures, mainly UV rays and asbestos, compared …


Behavior In Phelan-Mcdermid Syndrome: Clinical Characteristics, Genetic And Metabolic Contributions, And Evaluation Of Behavioral Assessment Tools, Emily Payne Dec 2024

Behavior In Phelan-Mcdermid Syndrome: Clinical Characteristics, Genetic And Metabolic Contributions, And Evaluation Of Behavioral Assessment Tools, Emily Payne

All Dissertations

Phelan-McDermid syndrome (PMS) is characterized by genetic and phenotypic variability with varying levels of developmental delay, intellectual disability (ID), autism spectrum disorder (ASD), speech delay, minor dysmorphic features, and behavioral issues. Genetic causes of PMS involve deletions in the 22q13.3 region or pathogenic/likely pathogenic variants in SHANK3. Due to the significant heterogeneity and complexities seen in individuals with PMS, there are numerous challenges surrounding research, accurate diagnoses, assessments, and the creation of treatments. Behavioral issues are present in the majority of individuals with PMS, including lower levels of adaptive behavioral skills needed for daily functioning, disruptive behaviors, restricted and …


Drosophila Model Of Cocaine Use Disorder, Jeffrey Hatfield Dec 2024

Drosophila Model Of Cocaine Use Disorder, Jeffrey Hatfield

All Dissertations

Cocaine use disorder (CUD) is a major public health challenge. While the primary mechanism of action of cocaine has been well characterized, and family studies have identified a strong genetic component, the specific genetic factors that influence susceptibility to development of CUD remain poorly understood. Genetic studies of cocaine use disorder are difficult in humans, but can be readily performed in Drosophila, where environment, genetic background, and cocaine exposure can be controlled. Drosophila exhibit behavioral and transcriptomic responses to cocaine, which binds to the dopamine transporter in fruit flies as it does in humans. Here, we use Drosophila to …


Regulation Of Serpina1 Mrna Expression By Environmental Conditions In Hepatocyte Cells, Fnu Jiamutai Aug 2024

Regulation Of Serpina1 Mrna Expression By Environmental Conditions In Hepatocyte Cells, Fnu Jiamutai

All Theses

The SERPINA1 gene encodes the critical protease inhibitor α-1-antitrypsin (A1AT). A1AT represses neutrophil elastase activity to protect lung tissue from inflammatory damage. A deficiency in α-1-antitrypsin can lead to chronic obstructive pulmonary disease (COPD). Pathogenic genetic variants in SERPINA1 are also associated with A1AT protein misfolding and liver cirrhosis. The regulatory mechanisms of SERPINA1 expression are not well understood, but previous studies suggest that alternative polyadenylation in the 3' untranslated region (3'UTR) affects A1AT protein expression. In this study, we used the liver cancer cell line HepG2 to determine how environmental conditions influence SERPINA1 mRNA expression and post-transcriptional regulation. We …


Genomic Data Science Approaches For Understanding Human Diseases, Snehal Shah Aug 2024

Genomic Data Science Approaches For Understanding Human Diseases, Snehal Shah

All Dissertations

The intricate interplay of genetic predisposition, environmental influences, and lifestyle acts as the multifactorial landscape of diseases. Understanding this complexity presents a significant challenge. Molecular insights into disease mechanisms, particularly the interactions of DNA, RNA, and proteins with environmental and lifestyle factors, have revolutionized disease diagnosis, prognosis, and treatment. High-throughput technologies, such as next-generation sequencing, generate large amounts of molecular data, holding a wealth of knowledge. These datasets unveil the roles of genes and their interactions with various factors through analysis, shedding light on previously unknown molecular mechanisms underlying disease pathogenesis. Furthermore, they facilitate the discovery of biomarkers crucial for …


A Systems Genetics Approach To Drosophila Melanogaster Models Of Rare And Common Neurodevelopmental Disorders, Rebecca Macpherson Aug 2023

A Systems Genetics Approach To Drosophila Melanogaster Models Of Rare And Common Neurodevelopmental Disorders, Rebecca Macpherson

All Dissertations

Fetal Alcohol Spectrum Disorders are a group of disorders resulting from prenatal alcohol exposure, presenting with neurodevelopmental and facial abnormalities of varying severity. SSRIDDs and CdLS are rare disorders of chromatin modification, resulting in patients with a wide range of craniofacial, digit and/or neurodevelopmental abnormalities. All of these disorders have a wide range of clinical phenotypes and disease severity, yet the role of potential genetic modifiers and gene-gene or gene-environment interactions in disease pathogenesis is largely unknown and cannot be studied in humans. Insufficient numbers of patients with a single rare disorder prevent investigation of genetic factors beyond the focal …


An Overview Of Risk Factors For Neural Tube Defects And An Investigation Within South Carolina, Lucy Pulliam Aug 2023

An Overview Of Risk Factors For Neural Tube Defects And An Investigation Within South Carolina, Lucy Pulliam

All Dissertations

Neural tube defects (NTDs) are congenital anomalies that affect both the morbidity and mortality of infants worldwide. Inadequate levels of the vitamin folate in women during early pregnancy have been shown to be a risk factor for NTDs. Recent efforts to ensure adequate folate intake in mothers have been helpful in reducing but not eliminating NTDs. This dissertation examines additional risk factors for NTDs as possible focus areas for decreasing NTD occurrence.

Chapter Two and Chapter Three are literature reviews conducted to explore select factors associated with an increased risk of NTDs and how these factors may affect folate availability …


Elucidating Acetate Metabolism: Identification Of Transporters And Enzymes Required For Acetate Utilization In The Fungal Pathogen Cryptococcus Neoformans, Perry L. Kezh Aug 2023

Elucidating Acetate Metabolism: Identification Of Transporters And Enzymes Required For Acetate Utilization In The Fungal Pathogen Cryptococcus Neoformans, Perry L. Kezh

All Dissertations

Cryptococcus neoformans is the leading cause of fungal meningitis world-wide. While exposure to this environmental sporophyte is common during childhood, those who are immune compromised are at risk of infection. Following inhalation, this basidiomycetous fungus subsequently colonizes other organs though hematogenous dissemination, eventually crossing the blood brain barrier and colonizing the brain where it causes as cryptococcal meningitis. Changes in the availability of carbon sources stemming from the movement from soil to the lungs induce changes in fungal metabolism. Specifically, alveolar macrophages, which present a first line of defense against infection, provide a glucose-/amino acid-poor environment. As such, the use …


Assesment Of Structure, Function, And Microevolutionary Dynamics Of Extrachromosomal Circular Dna In Chinese Hamster Ovary Cells, Dylan Chitwood May 2023

Assesment Of Structure, Function, And Microevolutionary Dynamics Of Extrachromosomal Circular Dna In Chinese Hamster Ovary Cells, Dylan Chitwood

All Dissertations

Chinese hamster ovary (CHO) cell lines are among the most popular expression hosts used in biopharmaceutical manufacturing due to relative ease of culture, capacity to perform human-like post-translational modifications, and non-susceptibility to viruses. However, the intrinsic plasticity of the CHO genome can lead to undesired genetic rearrangements, phenotypic shifts, reduced product quality, and early culture termination that prevents continuous biomanufacturing. A characteristic of plastic and unstable genomes that is poorly understood in CHO cells is extrachromosomal circular DNA (eccDNA). EccDNAs are focal amplifications of the genome that reside in the extranuclear space. These plasmid-like entities are structurally complex and are …


Mapping The Sos204 ( Suppressor Of Sunn-1 204) Gene In Medicago Truncatula, Rakshya Shah May 2023

Mapping The Sos204 ( Suppressor Of Sunn-1 204) Gene In Medicago Truncatula, Rakshya Shah

All Theses

Nodules in legumes allow the plant to form a symbiotic interaction with bacteria, providing access to the inert N2 in the atmosphere. The Autoregulation of Nodulation Pathway (AON), a negative regulatory feedback mechanism, is a long-distance signaling system which controls the nodule numbers formed on roots, helping the plant conserve energy by not hosting bacterial symbionts beyond those needed by the plant. A forward genetic screen of the EMS mutagenized supernodulating sunn-1 mutant, a weak allele of SUNN in Medicago truncatula, identified 6 lines of heritable suppressor mutants that reduced the nodulating phenotype from supernodulating to wild-type. We used …


Integrating Omim And Intact Data For The Analysis Of Gene-Phenotype Interactions In Complex Diseases: A Linux-Based Computational Tool For Network Analysis, Devin Keane May 2023

Integrating Omim And Intact Data For The Analysis Of Gene-Phenotype Interactions In Complex Diseases: A Linux-Based Computational Tool For Network Analysis, Devin Keane

All Theses

The field of genetics is constantly evolving. New advances in bioinformatics and computational approaches are leading to exciting new developments in our ability to treat and prevent diseases. Computational genetics provides valuable insights into the complex mechanisms and layers of biological communication that shape an organism's phenotype. Understanding these mechanisms is critical to advancing human health.

The study of diseases in genetics requires a comprehensive understanding of the interactions between various biological processes, including gene expression, protein synthesis, RNA, metabolism, and cell-cell communication. To effectively address the root causes of such diseases, multi-disciplinary approaches that integrate information from different levels …


Acetate Metabolism In The Fungal Pathogen Cryptococcus Neoformans, Oly Ahmed May 2023

Acetate Metabolism In The Fungal Pathogen Cryptococcus Neoformans, Oly Ahmed

All Dissertations

Cryptococcus neoformans is an environmental basidiomycetous fungus with a worldwide distribution and a wide range of habitats. Inhalation of the desiccated yeasts or spores of C. neoformans often leads to opportunistic pulmonary infections in immunocompromised individuals, and in severe cases causes lethal meningitis following hematogenous dissemination. During infection, depending on the tissue and disease state, the invading fungi experience a range of nutrient microenvironments within the host body. As a result, rapid metabolic adaptations geared towards efficient utilization of carbon sources alternative to glucose become one of the prime determinants of survival and growth for the pathogen. Incidentally, cryptococcal infection …


Diagnosis Of Urinary Tract Infections And Rapid Molecular Characterization Of Antibiotic Resistance, Mohammed Harris May 2023

Diagnosis Of Urinary Tract Infections And Rapid Molecular Characterization Of Antibiotic Resistance, Mohammed Harris

All Dissertations

Urinary tract infections (UTIs) are one of the most common infectious clinical entities in both community and hospital settings. They have a broad range of clinical severity yet inflict large epidemiological burden of morbidity and mortality on patients and the healthcare system with billions of dollars in cost of treatment. Understanding what methods are optimal for diagnosing UTIs are critical to mitigate the marked impact and cost of these infections.

Chapter 1 and 2 in this work surveys the broad array of diagnostic modalities for UTIs and highlights their advantages and limitations in the context of the current standard of …


Investigating The Biochemical Properties Of A Novel Mutation, A194v, In Human Rad51, Briana Vollbeer Aug 2022

Investigating The Biochemical Properties Of A Novel Mutation, A194v, In Human Rad51, Briana Vollbeer

All Theses

DNA double-strand breaks (DSB) are one of the most serious DNA lesions because improper repair of a DSB can lead to loss of heterozygosity, aneuploidy, and cancer. One of the primary pathways to repair DSBs is homologous recombination (HR). HR resects the DNA around the DSB and then uses homologous DNA as a template to restore the broken sequence. RAD51 has a vital function in this pathway by forming a nucleoprotein filament on a resected end of the DSB. The nucleoprotein filament searches for homology within the homologous DNA. Once homology is located, strand invasion followed by strand exchange occurs. …


Deciphering Medicago Truncatula Nodulation Using Time-Series Transcriptomic Data At Multiple Levels Of Resolution: Organ, Tissue, And Single-Cell, Yueyao Gao Aug 2022

Deciphering Medicago Truncatula Nodulation Using Time-Series Transcriptomic Data At Multiple Levels Of Resolution: Organ, Tissue, And Single-Cell, Yueyao Gao

All Dissertations

Use of chemical nitrogen fertilizers has environmental repercussions such as global warming, soil contamination, and aquatic eutrophication. Legumes form a symbiotic association with nitrogen-fixing bacteria (rhizobia sp.) to obtain atmospheric nitrogen through the formation of a specialized root structure called a nodule. Understanding the transcriptional reprogramming during nodulation is a powerful approach to decipher the genetic control of nodulation, with the goal of engineering nitrogen-fixing symbiosis into non-leguminous crops. This dissertation focuses on the analytics of bulk, tissue-specific, and single-cell RNA-seq technologies and how I utilized them to discover a collection of genes to aid in deciphering nodulation mechanisms in …


Heat Stress Response And Excystation In Entamoeba Histolytica, Irem Bastuzel Aug 2022

Heat Stress Response And Excystation In Entamoeba Histolytica, Irem Bastuzel

All Dissertations

Entamoeba histolytica is a water- and food-borne intestinal protozoan parasite that causes amoebiasis and liver abscess and is responsible for symptomatic disease in approximately 100 million people each year leading to ~ 100,000 deaths. The most common disease transmission follows the oral-fecal route, but it can also be transmitted by mechanical vectors such as animals carrying the amoeba from contaminated sources to water systems. In rare cases, disease transmission has been recorded in some patients in which men-to-men sexual practices were preferred.

The life cycle of E. histolytica starts through ingestion of infectious cysts, which are non-dividing, quadri-nucleated structures surrounded …


Genetics And Genomics Education Among Physician Assistants, Wesley Patterson Aug 2022

Genetics And Genomics Education Among Physician Assistants, Wesley Patterson

All Dissertations

This dissertation comprises five chapters to describe genetics and genomics education among physician assistant/associate (PA) students and practicing PAs. Chapter I introduces the gap in supply and demand of genetic services, the need for non-genetics healthcare providers to fill the gap, and the PA profession as a solution.

Chapter II is a rapid literature review that summarizes the available literature regarding genetics and genomics education for PAs. A paucity of literature exists to describe the current state of PA genetics-genomics education. The few studies retrieved describe content being taught in PA programs, the number of genetics-genomics contact hours PA students …


Identification Of Genetic Variants Underlying Maxillary Canine-Tooth Mesioversion And Small Body Size In Shetland Sheepdogs, Sydney R. Abrams May 2022

Identification Of Genetic Variants Underlying Maxillary Canine-Tooth Mesioversion And Small Body Size In Shetland Sheepdogs, Sydney R. Abrams

All Theses

The domesticated dog (Canis lupus familiaris) exhibits a unique population structure, with high levels of genetic homogeneity within breeds due to selective breeding. These closed breeding populations can result in breed-specific inherited disorders. Maxillary canine-tooth mesioversion (MCM) is a genetically complex dental anomaly observed nearly exclusively in the small Shetland Sheepdog breed. Here, we utilized a genome-wide approach to discover a locus of major effect on chromosome 9. Using whole-genome resequencing data from a bilaterally affected dog, we identified variants in two genes: FTSJ3, encoding an RNA methyltransferase, and GH1, encoding growth hormone. Independent genome-wide association …


Characterization Of A Potential Glucose Transporter In Trypanosoma Brucei, Matthew Morgan May 2022

Characterization Of A Potential Glucose Transporter In Trypanosoma Brucei, Matthew Morgan

All Theses

Trypanosoma brucei, the African trypanosome, is an organism heavily dependent on glucose for ATP production during the infectious stage of its life cycle. Here, we have explored the role of an uncharacterized protein designated “novel glucose transporter” (NGT) as a potential glucose transporter. Sequence analyses suggests that NGT shares similarities (either at the primary sequence level or structurally) with Trypanosome Hexose Transporters 1 (TbTHT1), and human GLUT3, both of which are membrane sugar transporters. NGT was localized by fluorescence microscopy to subcellular structures consistent with lysosomes. Silencing NGT expression with RNA interference in parasites resulted in a growth defect …


Characterization Of Mef2c-Related Disorders: Genotype, Phenotype, And Gene Pathway Dysregulation, Jessica Ann Cooley Coleman May 2022

Characterization Of Mef2c-Related Disorders: Genotype, Phenotype, And Gene Pathway Dysregulation, Jessica Ann Cooley Coleman

All Dissertations

MEF2C­-related disorders are characterized by intellectual disability, developmental delay, lack of speech, seizures, stereotypic movements, hypotonia, and brain abnormalities and are caused by pathogenic alterations involving the MEF2C gene. Despite published cases, MEF2C­-related disorders are difficult to recognize clinically. These studies sought to further characterize MEF2C­-related disorders by investigating the genotypes, phenotypes, and gene functions (or dysfunctions) associated with the disorder.

Tremors have been reported in some patients with MEF2C­-related disorders, but the concept of tremors has been complicated by vague definitions and numerous categorization methods. We performed a concept analysis following the Walker and Avant …


Identification Of Genetic Factors Underlying Megaesophagus And Startle Disease In Dogs, Sarah M. Bell May 2022

Identification Of Genetic Factors Underlying Megaesophagus And Startle Disease In Dogs, Sarah M. Bell

All Dissertations

Dogs provide an excellent model for human hereditary disease research; thus, the development of canine genomic tools has been prioritized in recent years. Today, SNP arrays, multiple genome assemblies, and multi-breed reference panels containing whole genome resequencing (WGS) data from hundreds of canids are available to facilitate genome-wide genotyping in the dog. Herein, a variety of genome-wide techniques are employed to identify the genetic factors underlying congenital idiopathic megaesophagus (CIM) in two breeds, German shepherd dogs (GSDs) and Great Danes, and startle disease in Spanish greyhounds.

CIM is a complex canine esophageal motility disorder characterized by ineffective peristalsis and esophageal …


Unraveling The Genetic Architecture Of Somatic Embryogenesis In Upland Cotton, Adam M. Canal May 2022

Unraveling The Genetic Architecture Of Somatic Embryogenesis In Upland Cotton, Adam M. Canal

All Theses

Somatic embryogenesis is the de novo development of asexual embryos because of the plasticity of the plant cell. In tissue culture, the biochemical and genetic mechanisms of dedifferentiated callus tissues can be reprogrammed to transdifferentiate into developed, polarized embryos, which can ultimately regenerate into whole plants. Although this rarely occurs in nature, scientists have exploited this process for decades to regenerate whole plants following gene transformation or for micropropagation. While some species are amenable to in vitro regeneration, upland cotton is particularly recalcitrant, with regenerative potential being confined to only several genotypes. The lack of elite, regenerable genotypes greatly restricts …


Identification Of Biomarker Systems Of Autism Spectrum Disorder And Uterine Cancer, Allison Hickman Dec 2021

Identification Of Biomarker Systems Of Autism Spectrum Disorder And Uterine Cancer, Allison Hickman

All Dissertations

Complex diseases and disorders pose a challenge to scientists due to their variable and often inconsistent genetic and environmental underpinnings across affected individuals. Because of this variability, large condition-specific datasets and corresponding analytical tools and approaches are being curated as resources to investigate potential genetic trends in complex diseases and disorders. In this Dissertation, I used DNA- and RNA-based resources to discover polygenic biosignatures associated with Autism Spectrum Disorder (ASD) or uterine cancer. To explore the intersection of small-effect common DNA variants and regulation in ASD, I discovered and analyzed trends in allelic associations at eQTLs within ASD-affected individuals. Association …


Genetic And Mirna Transcriptomic Analysis Of Autoregulation Of Nodulation Signaling In Medicago Truncatula, Diptee Chauligain Dec 2020

Genetic And Mirna Transcriptomic Analysis Of Autoregulation Of Nodulation Signaling In Medicago Truncatula, Diptee Chauligain

All Dissertations

Legumes can source nitrogen from the air through biological nitrogen fixation inside root nodules formed in a symbiosis with rhizobia. A complex root-to-shoot-to-root signaling pathway called Autoregulation of Nodulation (AON) controls the number of nodules formed depending on the plant’s nitrogen requirements. In Medicago truncatula, the MtSUNN receptor complex in the shoot binds to the root-generated AON signals, peptides called MtCLEs, resulting in downregulation of miR2111 expression in the shoot, with the effect of decreased transport of miR2111 to the roots. Decreased miR2111 levels in the roots then cause an increase in transcript levels of the miR2111 targets MtTML1 …