Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Environmental Microbiology and Microbial Ecology (4)
- Genetics (4)
- Microbiology (4)
- Bioinformatics (3)
- Cell Biology (3)
-
- Cell and Developmental Biology (3)
- Computational Biology (3)
- Molecular Genetics (3)
- Biochemistry, Biophysics, and Structural Biology (2)
- Cancer Biology (2)
- Ecology and Evolutionary Biology (2)
- Evolution (2)
- Molecular Biology (2)
- Anatomy (1)
- Animal Experimentation and Research (1)
- Animal Structures (1)
- Biochemistry (1)
- Biodiversity (1)
- Biotechnology (1)
- Cells (1)
- Congenital, Hereditary, and Neonatal Diseases and Abnormalities (1)
- Developmental Biology (1)
- Developmental Neuroscience (1)
- Diseases (1)
- Embryonic Structures (1)
- Genetic Processes (1)
- Immunology and Infectious Disease (1)
- Keyword
-
- Bioinformatics (2)
- Genomics (2)
- Protein (2)
- Archaea (1)
- Atoh1 (1)
-
- BLAST (1)
- Bacteria (1)
- Biosensor (1)
- Cell (1)
- Cerebellum (1)
- Delftia (1)
- Development (1)
- Evolution (1)
- FISH (1)
- FRET (1)
- Feather (1)
- Fibrosis (1)
- Fluorescence in situ Hybridization (1)
- Fluorophore (1)
- Force (1)
- Fungus-growing ants (1)
- GFP (1)
- Gene knockdown (1)
- Genome (1)
- Genome Assembly (1)
- Glutamatergic neurons (1)
- Granule cells (1)
- Host-associated microbiomes (1)
- Hybridization buffer (1)
- Hybridization kinetics (1)
Articles 1 - 8 of 8
Full-Text Articles in Genomics
Testing Vivo-Morpholino Mediated Gene Knockdown Of Stat6, Spi1b, And Hnf4Α In Adult Threespine Stickleback, Stella Dipippo
Testing Vivo-Morpholino Mediated Gene Knockdown Of Stat6, Spi1b, And Hnf4Α In Adult Threespine Stickleback, Stella Dipippo
Honors Scholar Theses
The fibrotic immune response to the cestode parasite, Schistocephalus solidus, varies among threespine stickleback populations. Fibrosis suppresses parasite growth but has costly effects on the fish. Previous genomic studies in stickleback have suggested potential roles of Spi1b, STAT6, and HNF4α in modulating fibrosis severity, but there is presently no evidence for this in-vivo. We used antisense vivo-morpholino oligonucleotides (MOs) to attempt to knockdown the expression of each gene in the liver, spleen, and intestine of adult stickleback. Vivo-MOs have been proven effective in other species of teleost fish, as well as in mice and humans, but …
Archaeal Diversity In The Anna's Hummingbird Microbiome, Lauren E. Chance
Archaeal Diversity In The Anna's Hummingbird Microbiome, Lauren E. Chance
Honors Scholar Theses
The microbial communities that are present in and on vertebrates are collectively called the microbiome. The composition of a microbiome is dependent upon the host, the environment, and evolution. There has been extensive research on the bacterial composition of host-associated microbiomes, however, there has been much less work on the archaeal composition of host-associated microbiomes. Archaea have previously been assumed to primarily exist in extreme environments, but this may not be true and has been influenced by their generally low abundance and methodological difficulties in detection. It is possible they are consistent members of diverse host-associated microbiomes.
Archaea-specific PCR primers …
The Effects Of Mapk Signaling On The Development Of Cerebellar Granule Cells, Kerry Morgan
The Effects Of Mapk Signaling On The Development Of Cerebellar Granule Cells, Kerry Morgan
Honors Scholar Theses
The granule cells are the most abundant neuronal type in the human brain. Rapid proliferation of granule cell progenitors results in dramatic expansion and folding of the cerebellar cortex during postnatal development. Mis-regulation of this proliferation process causes medulloblastoma, the most prevalent childhood brain tumor. In the developing cerebellum, granule cells are derived from Atoh1-expressing cells, which arise from the upper rhombic lip (the interface between the roof plate and neuroepithelium). In addition to granule cells, the Atoh1 lineage also gives rise to different types of neurons including cerebellar nuclei neurons. In the current study, I have investigated the …
Single-Fluorophore Sensors For Mechanical Force In Living Cells, Sarah Kricheff
Single-Fluorophore Sensors For Mechanical Force In Living Cells, Sarah Kricheff
Honors Scholar Theses
Mechanotransduction is the process by which a mechanical stimulus is converted to a cellular signal. This process is heavily influential of cell morphology, differentiation, and behavior. However, altered levels of mechanical stimuli are also found in many pathological contexts. For example, cancerous cells have stiffer surrounding tissue than healthy cells, and research suggests that this alters cell behavior and promotes metastasis. Despite these findings, the cellular processes behind these signaling alterations remain widely unknown. Understanding these cascades is critical, as involved proteins can give us a deeper understanding of the role of mechanotransduction, and certain proteins can potentially be targeted …
Identification And Analysis Of Feather Degrading Bacteria: A Search For Keratinase Genes, Nehal Navali
Identification And Analysis Of Feather Degrading Bacteria: A Search For Keratinase Genes, Nehal Navali
Honors Scholar Theses
Over two million tons of feather waste is generated annually by the poultry industry, the majority of which goes into landfills due to the difficulty of degrading its major component keratin. Although a portion of feather waste is eliminated via incineration or chemical treatment, the use of Feather Degrading Bacteria (FDB) has been proposed as a cheap and eco-friendly alternative. FDBs have been consistently isolated from the feather microbiome of birds and contain genes coding for the specialized protein keratinase which is able to degrade feathers. By doing so, feather waste, which is rich in nutrients, can be repurposed as …
Characterizing Cultivable Bacteria From Trachymyrmex Septentrionalis Fungus Gardens, Hannah Beatty
Characterizing Cultivable Bacteria From Trachymyrmex Septentrionalis Fungus Gardens, Hannah Beatty
Honors Scholar Theses
The relationship between the fungus-growing ant Trachymyrmex septentrionalis, its symbiotic cultivar fungus, and the transient and residential community of microorganisms is a diverse and complex symbiosis that has evolved over space and time. The fungus garden, comprised primarily of the cultivar fungus belonging to the family Leucocoprineae,provides an environment that hosts many bacteria, which may also play an important role in this symbiosis. Although it is known that Pseudonocardia bacteria defend the ant host against fungal pathogens, other species of bacteria that are present in these fungus gardens also likely contribute to this symbiosis. Previous studies of this …
Validation Of A New Rapid Hybridization Buffer For Fluorescence In Situ Hybridization With A Review On The Kinetics Of Dna Hybridization, Christine O'Connor
Validation Of A New Rapid Hybridization Buffer For Fluorescence In Situ Hybridization With A Review On The Kinetics Of Dna Hybridization, Christine O'Connor
Honors Scholar Theses
Abbott Molecular recently developed the rapid Vysis IntelliFISH Hybridization Buffer for use in fluorescence in situ hybridization (FISH) assays. The hybridization step in a standard FISH assay requires an overnight incubation, thus the turnaround time for a patient result is at least 24 hours. The IntelliFISH buffer was designed to reduce hybridization time of probes to target DNA to about two hours, allowing the entire assay to be performed in a single day. A review of methodologies and commercial products has highlighted the importance of hybridization kinetics to a successful FISH assay. The purpose of the research was to investigate …
An Exploration Of The Phylogenetic Placement Of Recently Discovered Ultrasmall Archaeal Lineages, Jeffrey M. O'Brien
An Exploration Of The Phylogenetic Placement Of Recently Discovered Ultrasmall Archaeal Lineages, Jeffrey M. O'Brien
Honors Scholar Theses
In recent years, several new clades within the domain Achaea have been discovered. This is due in part to microbiological sampling of novel environments, and the increasing ability to detect and sequence uncultivable organisms through metagenomic analysis. These organisms share certain features, such as small cell size and streamlined genomes. Reduction in genome size can present difficulties to phylogenetic reconstruction programs. Since there is less genetic data to work with, these organisms often have missing genes in concatenated multiple sequence alignments. Evolutionary Biologists have not reached a consensus on the placement of these lineages in the archaeal evolutionary tree. There …