{"id":{"repo_id":"uiuc","oai_identifier":"oai:www.ideals.illinois.edu:2142/110854"},"canonical_url":"https://search.dev.ndltd.org/etd/uiuc/oai:www.ideals.illinois.edu:2142/110854","repository":{"repo_id":"uiuc","name":"University of Illinois - Urbana-Champaign","base_url":"https://www.ideals.illinois.edu/oai-pmh"},"display":{"title":"Improving the genome assembly and annotation of the white-tailed deer (Odocoileus virginianus borealis)","abstract":"Widely distributed in North America, the white-tailed deer (Odocoileus virginianus) has recreational and commercial value and is a food source for many communities. The impacts that deer impose on agriculture, conservation, and public health are rising. They are responsible for deer-vehicle collisions and damage to crops and natural areas. The species is affected by infectious diseases such as chronic wasting disease, epizootic hemorrhagic disease, and bovine tuberculosis. Genomic resources facilitate the study of pathogens, host-pathogen interactions, host genetic variation, and behavior. Repetitive elements are ubiquitous within mammalian genomes, and long single-molecule reads produced by third-generation sequencing can span these regions. I present a genome produced with DNA from a single white-tailed deer sequenced on the PacBio Sequel II platform and assembled using Redbean (WTDBG2) long-read assembly software. Post-assembly, long and short reads from the same animal were used for error-correcting and polishing the assembly. Gene models were predicted with the BRAKER annotation pipeline using RNA and protein sequences as extrinsic evidence. The final assembly was highly contiguous, with 90% of the total length represented by 134 contigs. The largest contig was 108 million base pairs. Functional annotation was performed using reciprocal best hits with cattle protein sequences. Protein function was able to be assigned to 16,125 coding sequences. The locations of genes related to CWD, EHD, and bTB were also identified. An analysis using the sequentially Markovian coalescent was used to infer population diversity of white-tailed deer for the past 2 million years. This accurate and more complete assembly will support future genomic studies on white-tailed deer and permit the use of chromatin-contact information to construct a chromosome-level assembly of the genome.","abstract_html":"Widely distributed in North America, the white-tailed deer (Odocoileus virginianus) has recreational and commercial value and is a food source for many communities. The impacts that deer impose on agriculture, conservation, and public health are rising. They are responsible for deer-vehicle collisions and damage to crops and natural areas. The species is affected by infectious diseases such as chronic wasting disease, epizootic hemorrhagic disease, and bovine tuberculosis. Genomic resources facilitate the study of pathogens, host-pathogen interactions, host genetic variation, and behavior. Repetitive elements are ubiquitous within mammalian genomes, and long single-molecule reads produced by third-generation sequencing can span these regions. I present a genome produced with DNA from a single white-tailed deer sequenced on the PacBio Sequel II platform and assembled using Redbean (WTDBG2) long-read assembly software. Post-assembly, long and short reads from the same animal were used for error-correcting and polishing the assembly. Gene models were predicted with the BRAKER annotation pipeline using RNA and protein sequences as extrinsic evidence. The final assembly was highly contiguous, with 90% of the total length represented by 134 contigs. The largest contig was 108 million base pairs. Functional annotation was performed using reciprocal best hits with cattle protein sequences. Protein function was able to be assigned to 16,125 coding sequences. The locations of genes related to CWD, EHD, and bTB were also identified. An analysis using the sequentially Markovian coalescent was used to infer population diversity of white-tailed deer for the past 2 million years. This accurate and more complete assembly will support future genomic studies on white-tailed deer and permit the use of chromatin-contact information to construct a chromosome-level assembly of the genome.","abstract_has_math":false,"creators":["London, Evan W."],"institution":"University of Illinois at Urbana-Champaign","degree_name":"M.S.","degree_level":"Thesis","degree_discipline":"Bioinformatics","degree_department":null,"school":null,"contributors":["Mateus-Pinilla, Nohra E","Novakofski, Jan E","Roca, Alfred L","Catchen, Julian M"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2021,"date_issued":"2021-09-17T04:06:52Z","date_published":"2021-09-17T04:06:52Z","updated_at":"2026-07-22T22:24:52Z","subjects":["Genomic resource","PacBio sequencing, Wildlife disease"],"languages":["en"],"rights":["© 2021 Evan W. 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Repetitive elements are ubiquitous within mammalian genomes, and long single-molecule reads produced by third-generation sequencing can span these regions. I present a genome produced with DNA from a single white-tailed deer sequenced on the PacBio Sequel II platform and assembled using Redbean (WTDBG2) long-read assembly software. Post-assembly, long and short reads from the same animal were used for error-correcting and polishing the assembly. Gene models were predicted with the BRAKER annotation pipeline using RNA and protein sequences as extrinsic evidence. The final assembly was highly contiguous, with 90% of the total length represented by 134 contigs. The largest contig was 108 million base pairs. Functional annotation was performed using reciprocal best hits with cattle protein sequences. Protein function was able to be assigned to 16,125 coding sequences. The locations of genes related to CWD, EHD, and bTB were also identified. An analysis using the sequentially Markovian coalescent was used to infer population diversity of white-tailed deer for the past 2 million years. This accurate and more complete assembly will support future genomic studies on white-tailed deer and permit the use of chromatin-contact information to construct a chromosome-level assembly of the genome.","Submission published under a 24 month embargo labeled 'Closed Access', the embargo will last until 2023-05-01","The student, Evan London, accepted the attached license on 2021-04-26 at 11:25.","The student, Evan London, submitted this Thesis for approval on 2021-04-26 at 12:07.","This Thesis was approved for publication on 2021-04-27 at 16:20.","DSpace SAF Submission Ingestion Package generated from Vireo submission #16539 on 2021-09-16 at 20:14:12","Made available in DSpace on 2021-09-17T04:06:52Z (GMT). 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The final assembly was highly contiguous, with 90% of the total length represented by 134 contigs. The largest contig was 108 million base pairs. Functional annotation was performed using reciprocal best hits with cattle protein sequences. Protein function was able to be assigned to 16,125 coding sequences. The locations of genes related to CWD, EHD, and bTB were also identified. An analysis using the sequentially Markovian coalescent was used to infer population diversity of white-tailed deer for the past 2 million years. This accurate and more complete assembly will support future genomic studies on white-tailed deer and permit the use of chromatin-contact information to construct a chromosome-level assembly of the genome.","Submission published under a 24 month embargo labeled 'Closed Access', the embargo will last until 2023-05-01","The student, Evan London, accepted the attached license on 2021-04-26 at 11:25.","The student, Evan London, submitted this Thesis for approval on 2021-04-26 at 12:07.","This Thesis was approved for publication on 2021-04-27 at 16:20.","DSpace SAF Submission Ingestion Package generated from Vireo submission #16539 on 2021-09-16 at 20:14:12","Made available in DSpace on 2021-09-17T04:06:52Z (GMT). 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