Mapping Transcriptional Changes Associated With The Maternal-To-Embryonic Transition In Bovine Embryos To Small Non-Coding Rna Profiles In Both In Vitro-Fertilized And Scnt Cattle Embryos,
2020
Utah State University
Mapping Transcriptional Changes Associated With The Maternal-To-Embryonic Transition In Bovine Embryos To Small Non-Coding Rna Profiles In Both In Vitro-Fertilized And Scnt Cattle Embryos, Abby D. Benninghoff, Jocelyn Cuthbert
Browse all Datasets
Supplementary File 1. Normalized reads for annotated mRNA transcripts. Microsoft Excel document providing normalized sequencing reads per sample.
Supplementary File 2. Results of DESeq2 analyses for annotated mRNAs. Microsoft Excel document with results of DESeq2 differential expression analysis comparing scNT vs IVF embryos at each developmental stage and sequential comparisons of developmental stage for both IVF and scNT embryos.
Supplementary File 3. Results of Metascape ontology analyses for differentially expressed mRNAs. Microsoft Excel document with results of Metascape ontology analyses for biological processes associated with predicted mRNA targets of differentially expressed miRNAs.
Supplementary File 4. Cytoscape networks for differentially expressed …
155— Analysis Of Her4.1 And Ascl1a In Gef Mutants,
2020
SUNY Geneseo
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 …
Hers And His: Silk Glands Used In Egg Sac Construction By Female Spiders Potentially Repurposed By A 'Modern' Male Spider,
2020
University of New Hampshire
Hers And His: Silk Glands Used In Egg Sac Construction By Female Spiders Potentially Repurposed By A 'Modern' Male Spider, Mark A. Townley, Danilo Harms
Biological Sciences
Cylindrical silk gland (CY) spigots distinguish a large clade of modern spiders, the CY spigot clade, which includes all entelegyne spiders and their closest relatives. Following a widespread paradigm, CYs and their spigots are only known to occur in female spiders and they produce silk used in the construction of egg sacs. Here we report the occurrence of a CY spigot or CY nubbin on each posterior median spinneret (PMS) in males (5th stadium and later) of the spider Australomimetus maculosus. Late juvenile males had a CY spigot on each PMS, whereas adult males either had a CY spigot or, …
Utilizing Crispr/Cas9 Gene Editing Determine The Role Of Cnr1 During Zebrafish Development,
2020
Belmont University
Utilizing Crispr/Cas9 Gene Editing Determine The Role Of Cnr1 During Zebrafish Development, Camme Sells
[Archive] Belmont University Research Symposium (BURS)
In a world where cannabinoids are being used more frequently as for medicinal purposes, the importance for research on cannabinoid biology is steadily increasing. The goal of this study was to gain a greater understanding of the effect cannabinoids have on developing zebrafish embryos. Work in this area of developmental biology could give way to an understanding of the safety of a human fetus during pregnancy with a mother who uses cannabis medicinal therapy. The CRISPR/Cas 9 system was utilized in this study to genetically edit the zebrafish embryo genome to remove the function of the Cannabinoid Receptor 1 ( …
Enhancement Of Nkx3.2 Expression After Twist1b And Twist2 Knockdown In Zebrafish,
2020
Belmont University
Enhancement Of Nkx3.2 Expression After Twist1b And Twist2 Knockdown In Zebrafish, Peyton Yearick
[Archive] Belmont University Research Symposium (BURS)
Somitogenesis is a developmental event patterned by cellular signaling during gastrulation, ending around 30-hours post fertilization. Somites are segmented regions of mesoderm along the dorsal side of the body which form paraxial mesoderm in Danio rerio, zebrafish. Somite development results in the formation of the subcompartment called sclerotome, which differentiates to form the axial skeleton and associated tendons (Stickney et al., 2000). Further differentiation allows for sclerotome progenitor cell to develop into bone, muscle, tendon, and cartilage through sclerotome migration along the mesoderm. A portion of sclerotome cells migrate anterior towards the neural tube, where they will form the …
Expression Of Tgf-Beta Ligands During Sclerotome Development,
2020
Belmont University
Expression Of Tgf-Beta Ligands During Sclerotome Development, Estela Williams
[Archive] Belmont University Research Symposium (BURS)
During early embryogenesis in vertebrates, somites are formed by the segmentation of the presomitic mesoderm (Gomez, Ozbudak, Wunderlich, Baumann. Lewis and Pourquie 2008). The somite possesses several domains within it and the ventral part of the somite is called the sclerotome. The sclerotome gives rise to the axial skeleton and tendons. Twist 1b and Twist 2 are genes that are expressed in the sclerotome during axial skeletal development. Our experiments were developed to help understand the roles of Twist1b and Twist2 in tendon development. By utilizing microinjection to alter gene expression, the Twist 1b and Twist 2 genes can be …
Using Crispr/Cas9 Gene Editing To Remove Twist2 To Determine Its Role During Somite Development In Zebrafish,
2020
Belmont University
Using Crispr/Cas9 Gene Editing To Remove Twist2 To Determine Its Role During Somite Development In Zebrafish, Caleb Holdener
[Archive] Belmont University Research Symposium (BURS)
Embryonic Mesoderm is a precursor to various types of tissues, such as the somatic mesoderm. Somites are a segmented tissue that gives rise to the sclerotome in vertebrates. This sclerotome further develops into the axial skeleton (Stickney, Barresi, and Devoto 2000). Somites are easily observable under low power microscopy during fish development. In fish, great strides have been made in studying the developmental fate of somites (Stoiber, Haslett, and Sänger 1999; Stickney, Barresi, and Devoto 2000). Zebrafish have been studied in many labs due to their similarities with higher vertebrates. These advantages include their inexpensive cost of care, external fertilization, …
Twist1b Knockout Generation In Zebrafish Using Crispr-Cas9,
2020
Belmont University
Twist1b Knockout Generation In Zebrafish Using Crispr-Cas9, Grace Hurley
[Archive] Belmont University Research Symposium (BURS)
The Twist gene is found in numerous organisms, including humans, mice and zebrafish (Yeo et al., 2009). It is a vital gene in development and is needed for the organism to survive (Yeo et al., 2009). Specifically, the Twist gene family aids in specialization and differentiation of mesodermal cells, telling somites, segmented blocks of mesoderm, what to become (Germanguz et al., 2007). Over time, the Twist gene has duplicated into paralogs, each having differences in their functions (Germanguz et al., 2007). Twist1b is a protein coding gene that is a paralog to the human Twist1 gene (ZFIN, 2020). In zebrafish, …
Scleraxis Expression Within The Axial Tendon Population In Zebrafish,
2020
Belmont University
Scleraxis Expression Within The Axial Tendon Population In Zebrafish, Jessica Bernaba
[Archive] Belmont University Research Symposium (BURS)
Zebrafish are a well-established model organism for vertebrate development. During embryonic development, a pattern of segmentation of mesoderm yields somites, which give rise to specific cell fates. Somites, bilateral blocks of mesoderm along the neural tube in developing vertebrate embryos, subdivide into sclerotome as the vertebrate matures. Depending on migratory position, sclerotome cells give rise to various components of the axial skeletal system, including bone, cartilage, and tendon. Each fate is determined by gene expressions within the sclerotome and occupy distinct domains of the body plan. By method of in situ hybridization, we studied the expression of the scleraxis ( …
Utilizing Crispr/Cas9 Gene Editing Determine The Role Of Cnr1 During Zebrafish Development,
2020
Belmont University
Utilizing Crispr/Cas9 Gene Editing Determine The Role Of Cnr1 During Zebrafish Development, Ellis Chase
[Archive] Belmont University Research Symposium (BURS)
The CRISPR-Cas 9 system is a process used to create mutations, insertions, or deletions within a desired gene. It can be used to create mutant organisms necessary to study the function and impact of a particular gene1. Cannabinoids are active chemicals found in cannabis, the most common of which being cannabinol (CBD)2. Cannabinoid receptors are an integral part of the endocannabinoid system, recognizing cannabinoid signals to promote physiological processes like pain sensation, memory, mood, and appetite3. Studying these cannabinoid receptors can provide insight into how cannabis can affect bodily processes.
Zebrafish are small translucent …
Exploring The Role Of Tgfbr2 During Zebrafish Sclerotome Development,
2020
Belmont University
Exploring The Role Of Tgfbr2 During Zebrafish Sclerotome Development, Nooralhuda Feron
[Archive] Belmont University Research Symposium (BURS)
Zebrafish, Danio rerio, are used as a source model organism for human development of the tendons, bones, and ligaments. The sclerotome is an embryonic structure known as the somite. The sclerotome gives rise to axial bones and tendons. During development, different genes are involved and affect how these skeletal tissues develop. Specifically, within this project, the effects of Twist1b and Twist2 were studied to see their effects on tendon formation, as they are expressed within the developing sclerotome tissue. Transforming growth factor beta receptor type-2 (Tgfbr2) has been shown to be involved in tendon formation (Subramanian, Kanzaki, Galloway and …
Arid1a Haploinsufficiency Initiates Neural Crest Transformation In A Mouse Model Of Mycn-Driven Neuroblastoma,
2020
University of Tennessee Health Science Center
Arid1a Haploinsufficiency Initiates Neural Crest Transformation In A Mouse Model Of Mycn-Driven Neuroblastoma, Kirby A. Wallace
Theses and Dissertations (ETD)
Mouse models of cancer are critical for developing therapeutic treatments for pediatric patients. Recent sequencing studies of neuroblastoma (NBL) patient tumors have uncovered precise deletions in the chromatin remodeler and tumor suppressor gene (TSG) ARID1A. Additional causal studies supported ARID1A’s candidacy as a putative 1p36 TSG in MYCN-driven NBL. This study aimed to causally test Arid1a loss during Mycn-driven NBL initiation through the development of a mouse model of high risk NBL.In this study, we modified a Mycn-driven mouse model of NBL to incorporate Cre mediated deletion of floxed Arid1a. Briefly, in freshly isolated embryonic day 9.5 primary trunk neural …
A Micro-Optic Stalk (Muos) System To Model The Collective Migration Of Retinal Neuroblasts,
2020
Binghamton University
A Micro-Optic Stalk (Muos) System To Model The Collective Migration Of Retinal Neuroblasts, Stephanie Zhang, Miles Markey, Caroline D. Pena, Tadmiri Venkatesh, Maribel Vasquez
Publications and Research
Contemporary regenerative therapies have introduced stem-like cells to replace damaged neurons in the visual system by recapitulating critical processes of eye development. The collective migration of neural stem cells is fundamental to retinogenesis and has been exceptionally well-studied using the fruit fly model of Drosophila Melanogaster. However, the migratory behavior of its retinal neuroblasts (RNBs) has been surprisingly understudied, despite being critical to retinal development in this invertebrate model. The current project developed a new microfluidic system to examine the collective migration of RNBs extracted from the developing visual system of Drosophila as a model for the collective motile processes …
Inferring Tunicate Relationships And The Evolution Of The Tunicate Hox Cluster With The Genome Of Corella Inflata,
2020
Swarthmore College
Inferring Tunicate Relationships And The Evolution Of The Tunicate Hox Cluster With The Genome Of Corella Inflata, M. B. Debiasse, William N. Colgan , '19, Lincoln J. Harris , '17, Bradley Justin Davidson , '91, J. F. Ryan
Biology Faculty Works
Tunicates, the closest living relatives of vertebrates, have served as a foundational model of early embryonic development for decades. Comparative studies of tunicate phylogeny and genome evolution provide a critical framework for analyzing chordate diversification and the emergence of vertebrates. Towards this goal, we sequenced the genome of Corella inflata (Ascidiacea, Phlebobranchia), so named for the capacity to brood self-fertilized embryos in a modified, “inflated” atrial chamber. Combining the new genome sequence for Co. inflata with publicly available tunicate data, we estimated a tunicate species phylogeny, reconstructed the ancestral Hox gene cluster at important nodes in the tunicate tree, and …
Variation In Brown Rat Cranial Shape Shows Directional Selection Over 120 Years In New York City,
2020
University of Memphis
Variation In Brown Rat Cranial Shape Shows Directional Selection Over 120 Years In New York City, Emily E. Puckett, Emma Sherratt, Matthew Combs, Elizabeth J. Carlen, William Harcourt-Smith, Jason Munshi-South
Publications and Research
Urbanization exposes species to novel environments and selection pressures that may change morphological traits within a population. We investigated how the shape and size of crania and mandibles changed over time within a population of brown rats (Rattus norvegicus) living in Manhattan, New York, USA, a highly urbanized environment. We measured 3D landmarks on the cranium and mandible of 62 adult individuals sampled in the 1890s and 2010s. Static allometry explained approximately 22% of shape variation in crania and mandible datasets, while time accounted for approximately 14% of variation. We did not observe significant changes in skull size through time …
Cysteine Dioxygenase Enzyme Activity And Gene Expression In The Dimorphic Pathogenic Fungus Histoplasma Capsulatum Is In Both The Mold And Yeast Morphotypes And Exhibits Substantial Strain Variation,
2020
Southwest MS Community College
Cysteine Dioxygenase Enzyme Activity And Gene Expression In The Dimorphic Pathogenic Fungus Histoplasma Capsulatum Is In Both The Mold And Yeast Morphotypes And Exhibits Substantial Strain Variation, Melissa Adams, Glen Shearer
Faculty Publications
In the dimorphism (mold/yeast) Histoplasma capsulatum (Hc) literature are reports that yeast (the so-called pathogenic form) uniquely expresses a cysteine dioxygenase (CDO, approx. 10,500 dal) activity which the mold morphotype (the so-called saprophytic soil form) does not express (C.F., Kumar et al., Biochem 22, 762, 1983). This yeast-specific CDO activity is postulated to play a critical role in the mold-to-yeast shift. A number of years ago, our lab isolated the gene encoding the Hc cysteine dioxygenase (CDO1, Genbank accession AY804144) and noted significant expression in the mold morphotype of several Histoplasma strains and also determined that the predicted protein would …
Gene Expression Pattern Analysis Of Anterior Hox Genes During Zebrafish (Danio Rerio) Embryonic Development Reveals Divergent Expression Patterns From Other Teleosts,
2020
University of North Georgia
Gene Expression Pattern Analysis Of Anterior Hox Genes During Zebrafish (Danio Rerio) Embryonic Development Reveals Divergent Expression Patterns From Other Teleosts, Adam Davis
Georgia Journal of Science
The regional identity of organs and organ systems along the anterior-posterior axis during embryonic development is patterned, in part, by Hox genes, which encode transcription factor proteins that activate or repress the expression of downstream target genes. Divergent nested Hox gene expression patterns may have had a role in facilitating morphological divergence of structures, such as the pharyngeal jaw apparatus, among evolutionarily divergent teleost fishes. Recent studies from several evolutionarily divergent teleosts, such as the Japanese Medaka (Oryzias latipes) and the Nile Tilapia (Oreochromis niloticus), have shown the presence of divergent expression patterns of several Hox …
The Bioethical Significance Of “The Origin Of Man’S Ethical Behavior” (October 1941, Unpublished) By Ernest Everett Just And Hedwig Anna Schnetzler Just,
2020
Southern Methodist University
The Bioethical Significance Of “The Origin Of Man’S Ethical Behavior” (October 1941, Unpublished) By Ernest Everett Just And Hedwig Anna Schnetzler Just, Theodore Walker Jr.
Journal of the South Carolina Academy of Science
Abstract –
E. E. Just (1883-1941) is an acknowledged “pioneer” in cell biology, and he is perhaps the pioneer in study of egg cell fertilization. Here we discover that Just also made pioneering contributions to general biology and evolutionary bioethics.
Within Just’s published contributions to observational cell biology, there are substantial fragments of his theory of ethical behavior, a theory with roots in cell biology. In addition to such previously available fragments, Just’s fully developed theory is now available. This recently discovered unpublished book-length manuscript argues for the biological origins of ethical behavior (evolving from cells to humans, within a …
Cellular And Developmental Insights Into The Early Evolution Of Muscle,
2020
University of Denver
Cellular And Developmental Insights Into The Early Evolution Of Muscle, Jeffrey J. Colgren
Electronic Theses and Dissertations
Whereas a great deal has been learned about the molecular underpinnings of morphological evolution in animals, much less is known about the origin of novel cell and tissue types. During the time in which the earliest animal lineages were diversifying, fundamental cell and tissue types, such as muscles, arose. Sponges are one of two animal lineages that lack muscles, yet they undergo coordinated full body contractions. Whereas the signaling processes have been studied, the physical mechanisms of contraction are completely uncharacterized. The main purpose of this work is to understand the primary contractile tissue of the sponge Ephydatia muelleri, …
Cis-Regulatory Analysis Of Onecut1 Expression In Fate-Restricted Retinal Progenitor Cells,
2020
CUNY City College
Cis-Regulatory Analysis Of Onecut1 Expression In Fate-Restricted Retinal Progenitor Cells, Sruti Patoori, Nathalie Jean-Charles, Ariana Gopal, Sacha Sulaiman, Sneha Gopal, Brian Wang, Benjamin Souferi, Mark Emerson
Publications and Research
Background: The vertebrate retina consists of six major classes of neuronal cells. During development, these cells are generated from a pool of multipotent retinal progenitor cells (RPCs) that express the gene Vsx2. Fate-restricted RPCs have recently been identified, with limited mitotic potential and cell fate possibilities compared to multipotent RPCs. One population of fate-restricted RPCs, marked by activity of the regulatory element ThrbCRM1, gives rise to both cone photoreceptors and horizontal cells. These cells do not express Vsx2, but co-express the transcription factors (TFs) Onecut1 and Otx2, which bind to ThrbCRM1. The components of the gene regulatory networks that control …
