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"The Reality of Imagination" is short animated film about a young girl name Isabel who, with her sketchbook and box of crayons, demonstrates the power of imagination through her drawings. From her own bedroom, her simple sketches transform into more complicated, realistic drawings, bringing her artistic creation to life. From

"The Reality of Imagination" is short animated film about a young girl name Isabel who, with her sketchbook and box of crayons, demonstrates the power of imagination through her drawings. From her own bedroom, her simple sketches transform into more complicated, realistic drawings, bringing her artistic creation to life. From a bouncing red ball, to flying on a plane, to a thunderstorm, her world extends beyond her sketchbook. The overall message is to demonstrate the importance of art and the power of imagination, especially seen from the perspective of a young child where much of that development is evident. In addition, further exploration of the film industry and learning about the production process was conducted to continue exercising my interest for film editing and graphic designing. This involved devising the script, selecting the appropriate actors, planning the production set, purchasing the tools and equipment, putting together a production crew, and applying the concepts learned about editing to create a short film that was approximately 3 minutes long. The editing software application used for this production was Final Cut Pro X distributed by Apple while the camera used was a Canon EOS Rebel T6. At least three different editing techniques were applied in the film and included stop-motion, keying, and split-screening. Furthermore, other concepts such as transforming and resizing video clips were applied along with learning to use the audio and visual effect resources available from Final Cut Pro X to enhance the quality of the film. An in-depth analysis of the entire process is also given in detailed.
ContributorsReyes, Diana (Author) / Ganssle, Gene (Thesis director) / Giner, Oscar (Committee member) / Computer Science and Engineering Program (Contributor) / Barrett, The Honors College (Contributor)
Created2017-05
Description

Agassiz’s desert tortoise (Gopherus agassizii) is a long-lived species native to the Mojave Desert and is listed as threatened under the US Endangered Species Act. To aid conservation efforts for preserving the genetic diversity of this species, we generated a whole genome reference sequence with an annotation based on dee

Agassiz’s desert tortoise (Gopherus agassizii) is a long-lived species native to the Mojave Desert and is listed as threatened under the US Endangered Species Act. To aid conservation efforts for preserving the genetic diversity of this species, we generated a whole genome reference sequence with an annotation based on deep transcriptome sequences of adult skeletal muscle, lung, brain, and blood. The draft genome assembly for G. agassizii has a scaffold N50 length of 252 kbp and a total length of 2.4 Gbp. Genome annotation reveals 20,172 protein-coding genes in the G. agassizii assembly, and that gene structure is more similar to chicken than other turtles. We provide a series of comparative analyses demonstrating (1) that turtles are among the slowest-evolving genome-enabled reptiles, (2) amino acid changes in genes controlling desert tortoise traits such as shell development, longevity and osmoregulation, and (3) fixed variants across the Gopherus species complex in genes related to desert adaptations, including circadian rhythm and innate immune response. This G. agassizii genome reference and annotation is the first such resource for any tortoise, and will serve as a foundation for future analysis of the genetic basis of adaptations to the desert environment, allow for investigation into genomic factors affecting tortoise health, disease and longevity, and serve as a valuable resource for additional studies in this species complex.

Data Availability: All genomic and transcriptomic sequence files are available from the NIH-NCBI BioProject database (accession numbers PRJNA352725, PRJNA352726, and PRJNA281763). All genome assembly, transcriptome assembly, predicted protein, transcript, genome annotation, repeatmasker, phylogenetic trees, .vcf and GO enrichment files are available on Harvard Dataverse (doi:10.7910/DVN/EH2S9K).

ContributorsTollis, Marc (Author) / DeNardo, Dale F (Author) / Cornelius, John A (Author) / Dolby, Greer A (Author) / Edwards, Taylor (Author) / Henen, Brian T. (Author) / Karl, Alice E. (Author) / Murphy, Robert W. (Author) / Kusumi, Kenro (Author)
Created2017-05-31