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Articles 1 - 19 of 19
Full-Text Articles in Genomics
Computational Tools For Tandem Repeat Detection Using Long-Read Sequencing, Qian Liu, Jincheng Li
Computational Tools For Tandem Repeat Detection Using Long-Read Sequencing, Qian Liu, Jincheng Li
Life Sciences Faculty Research
Tandem repeats (TRs) play essential roles in a variety of biological functions, and their abnormal expansions are significantly implicated in phenotypic variation and cause >60 human diseases. However, long TR regions cannot be reliably detected using short-read sequencing, and long-read sequencing enables accurate genome-wide detection of TRs. In recent years, various computational tools have been developed to detect and genotype TRs from long-read data. In this survey, we systematically categorize and review 39 computational tools designed for TR detection, visualization and functional interpretation. We discuss their strengths and limitations for TR detection from long-read sequencing data, highlighting current challenges and …
Disruption Of The Oswrky71 Transcription Factor Gene Results In Early Rice Seed Germination Under Normal And Cold Stress Conditions, Santiago Bataller, James A. Davis, Lingkun Gu, Sophia Baca, Gaelan Chen, Azeem Majid, Anne J. Villacastin, Dylan Barth, Mira V. Han, Paul J. Rushton, Qingxi J. Shen
Disruption Of The Oswrky71 Transcription Factor Gene Results In Early Rice Seed Germination Under Normal And Cold Stress Conditions, Santiago Bataller, James A. Davis, Lingkun Gu, Sophia Baca, Gaelan Chen, Azeem Majid, Anne J. Villacastin, Dylan Barth, Mira V. Han, Paul J. Rushton, Qingxi J. Shen
Life Sciences Faculty Research
Background
Early seed germination in crops can confer a competitive advantage against weeds and reduce the time to maturation and harvest. WRKY transcription factors regulate many aspects of plant development including seed dormancy and germination. Both positive and negative regulators of seed germination have been reported in many plants such as rice and Arabidopsis. Using a transient expression system, we previously demonstrated that OsWRKY71 is a negative regulator of gibberellin (GA) signaling in aleurone cells and likely forms a “repressosome” complex with other transcriptional repressors. Hence, it has the potential to impact seed germination properties.
Results
In this study, we …
Complete Genome Sequences Of Cluster A6 And Cluster G1 Mycobacterium Smegmatis Phages Hoot And Jolene, Jon Thompson, Asli Özdemir, Arsen M. Topchyan, Maxwell Torosian, Victoria Z. Thymianos, Angelica Eagle, Juliana Mccormick, Leon Kyle G. Boyles, Azucena A. Benito, Kurt Regner, Christy Strong, Philippos K. Tsourkas
Complete Genome Sequences Of Cluster A6 And Cluster G1 Mycobacterium Smegmatis Phages Hoot And Jolene, Jon Thompson, Asli Özdemir, Arsen M. Topchyan, Maxwell Torosian, Victoria Z. Thymianos, Angelica Eagle, Juliana Mccormick, Leon Kyle G. Boyles, Azucena A. Benito, Kurt Regner, Christy Strong, Philippos K. Tsourkas
Life Sciences Faculty Research
We present the complete genome sequences of Mycobacterium smegmatis phages Hoot and Jolene, isolated in Las Vegas, NV. The phages were isolated and annotated by students enrolled in an undergraduate research course at the University of Nevada, Las Vegas. Hoot is a cluster A6 mycobacteriophage, while Jolene is in cluster G1.
Genomics, Exometabolomics, And Metabolic Probing Reveal Conserved Proteolytic Metabolism Of Thermoflexus Hugenholtzii And Three Candidate Species From China And Japan, Scott C. Thomas, Devon Payne, Kevin O. Tamadonfar, Cale O. Seymour, Jian Yu Jiao, Senthil K. Murugapiran, Dengxun Lai, Rebecca Lau, Benjamin P. Bowen, Leslie P. Silva, Katherine B. Louie, Marcel Huntemann, Alicia Clum, Alex Spunde, Manoj Pillay, Krishnaveni Palaniappan, Neha Varghese, Natalia Mikhailova, I. Min Chen, Dimitrios Stamatis, T. B.K. Reddy, Ronan O’Malley, Chris Daum, Nicole Shapiro, Natalia Ivanova, Nikos C. Kyrpides, Tanja Woyke, Emiley Eloe-Fadrosh, Trinity L. Hamilton, Paul Dijkstra, Brian P. Hedlund
Genomics, Exometabolomics, And Metabolic Probing Reveal Conserved Proteolytic Metabolism Of Thermoflexus Hugenholtzii And Three Candidate Species From China And Japan, Scott C. Thomas, Devon Payne, Kevin O. Tamadonfar, Cale O. Seymour, Jian Yu Jiao, Senthil K. Murugapiran, Dengxun Lai, Rebecca Lau, Benjamin P. Bowen, Leslie P. Silva, Katherine B. Louie, Marcel Huntemann, Alicia Clum, Alex Spunde, Manoj Pillay, Krishnaveni Palaniappan, Neha Varghese, Natalia Mikhailova, I. Min Chen, Dimitrios Stamatis, T. B.K. Reddy, Ronan O’Malley, Chris Daum, Nicole Shapiro, Natalia Ivanova, Nikos C. Kyrpides, Tanja Woyke, Emiley Eloe-Fadrosh, Trinity L. Hamilton, Paul Dijkstra, Brian P. Hedlund
Life Sciences Faculty Research
Thermoflexus hugenholtzii JAD2 , the only cultured representative of the Chloroflexota order Thermoflexales, is abundant in Great Boiling Spring (GBS), NV, United States, and close relatives inhabit geothermal systems globally. However, no defined medium exists for T. hugenholtzii JAD2 and no single carbon source is known to support its growth, leaving key knowledge gaps in its metabolism and nutritional needs. Here, we report comparative genomic analysis of the draft genome of T. hugenholtzii JAD2 and eight closely related metagenome-assembled genomes (MAGs) from geothermal sites in China, Japan, and the United States, representing “Candidatus Thermoflexus japonica,” “Candidatus Thermoflexus tengchongensis,” and “Candidatus …
A Whole-Genome Scan For Association With Invasion Success In The Fruit Fly Drosophila Suzukii Using Contrasts Of Allele Frequencies Corrected For Population Structure, Laure Olazcuaga, Anne Loiseau, Hugues Parrinello, Mathilde Paris, Antoine Fraimout, Christelle Guedot, Lauren M. Diepenbrock, Marc Kenis, Jinping Zhang, Xiao Chen, Nicolas Borowiec, Benoit Facon, Heidrun Vogt, Donald K. Price, Heiko Vogel, Benjamin Prud'homme, Arnaud Estoup, Mathieu Gautier
A Whole-Genome Scan For Association With Invasion Success In The Fruit Fly Drosophila Suzukii Using Contrasts Of Allele Frequencies Corrected For Population Structure, Laure Olazcuaga, Anne Loiseau, Hugues Parrinello, Mathilde Paris, Antoine Fraimout, Christelle Guedot, Lauren M. Diepenbrock, Marc Kenis, Jinping Zhang, Xiao Chen, Nicolas Borowiec, Benoit Facon, Heidrun Vogt, Donald K. Price, Heiko Vogel, Benjamin Prud'homme, Arnaud Estoup, Mathieu Gautier
Life Sciences Faculty Research
Evidence is accumulating that evolutionary changes are not only common during biological invasions but may also contribute directly to invasion success. The genomic basis of such changes is still largely unexplored. Yet, understanding the genomic response to invasion may help to predict the conditions under which invasiveness can be enhanced or suppressed. Here, we characterized the genome response of the spotted wing drosophila Drosophila suzukii during the worldwide invasion of this pest insect species, by conducting a genome-wide association study to identify genes involved in adaptive processes during invasion. Genomic data from 22 population samples were analyzed to detect genetic …
A Genomic Catalog Of Earth’S Microbiomes, Brian Hedlund, More Than 200 Other International Authors
A Genomic Catalog Of Earth’S Microbiomes, Brian Hedlund, More Than 200 Other International Authors
Life Sciences Faculty Research
The reconstruction of bacterial and archaeal genomes from shotgun metagenomes has enabled insights into the ecology and evolution of environmental and host-associated microbiomes. Here we applied this approach to >10,000 metagenomes collected from diverse habitats covering all of Earth’s continents and oceans, including metagenomes from human and animal hosts, engineered environments, and natural and agricultural soils, to capture extant microbial, metabolic and functional potential. This comprehensive catalog includes 52,515 metagenome-assembled genomes representing 12,556 novel candidate species-level operational taxonomic units spanning 135 phyla. The catalog expands the known phylogenetic diversity of bacteria and archaea by 44% and is broadly available for …
Analysis Of Genomic Sequence Data Reveals The Origin And Evolutionary Separation Of Hawaiian Hoary Bat Populations, Corinna A. Pinzari, Lin Kang, Pawel Michalak, Lars S. Jermiin, Donald K. Price, Frank J. Bonaccorso
Analysis Of Genomic Sequence Data Reveals The Origin And Evolutionary Separation Of Hawaiian Hoary Bat Populations, Corinna A. Pinzari, Lin Kang, Pawel Michalak, Lars S. Jermiin, Donald K. Price, Frank J. Bonaccorso
Life Sciences Faculty Research
We examine the genetic history and population status of Hawaiian hoary bats (Lasiurus semotus), the most isolated bats on Earth, and their relationship to northern hoary bats (Lasiurus cinereus), through whole-genome analysis of single-nucleotide polymorphisms mapped to a de novo-assembled reference genome. Profiles of genomic diversity and divergence indicate that Hawaiian hoary bats are distinct from northern hoary bats, and form a monophyletic group, indicating a single ancestral colonization event 1.34 Ma, followed by substantial divergence between islands beginning 0.51 Ma. Phylogenetic analysis indicates Maui is central to the radiation across the archipelago, with the southward expansion to Hawai‘i and …
Genomic Diversity Of Bacteriophages Infecting Microbacterium Spp, Deborah Jacobs-Sera, Lawrence A. Abad, Richard M. Alvey, Kirk R. Anders, Haley G. Aull, Suparna S. Bhalla, Lawrence S. Blumer, David W. Bollivar, J. Alfred Bonilla, Kristen A. Butela, Roy J. Coomans, Steven G. Cresawn, Tom D'Elia, Arturo Diaz, Ashley M. Divens, Nicholas P. Edgington, Gregory D. Frederick, Maria D. Gainey, Rebecca A. Garlena, Kenneth W. Grant, Susan M.R. Gurney, Heather L. Hendrickson, Lee E. Hughes, Margaret A. Kenna, Karen K. Klyczek, Hari Kotturi, Travis Mavrich, Angela L. Mckinney, Evan C. Merkhofer, Jordan Moberg Parker, Sally D. Molloy
Genomic Diversity Of Bacteriophages Infecting Microbacterium Spp, Deborah Jacobs-Sera, Lawrence A. Abad, Richard M. Alvey, Kirk R. Anders, Haley G. Aull, Suparna S. Bhalla, Lawrence S. Blumer, David W. Bollivar, J. Alfred Bonilla, Kristen A. Butela, Roy J. Coomans, Steven G. Cresawn, Tom D'Elia, Arturo Diaz, Ashley M. Divens, Nicholas P. Edgington, Gregory D. Frederick, Maria D. Gainey, Rebecca A. Garlena, Kenneth W. Grant, Susan M.R. Gurney, Heather L. Hendrickson, Lee E. Hughes, Margaret A. Kenna, Karen K. Klyczek, Hari Kotturi, Travis Mavrich, Angela L. Mckinney, Evan C. Merkhofer, Jordan Moberg Parker, Sally D. Molloy
Life Sciences Faculty Research
The bacteriophage population is vast, dynamic, old, and genetically diverse. The genomics of phages that infect bacterial hosts in the phylum Actinobacteria show them to not only be diverse but also pervasively mosaic, and replete with genes of unknown function. To further explore this broad group of bacteriophages, we describe here the isolation and genomic characterization of 116 phages that infect Microbacterium spp. Most of the phages are lytic, and can be grouped into twelve clusters according to their overall relatedness; seven of the phages are singletons with no close relatives. Genome sizes vary from 17.3 kbp to 97.7 kbp, …
Microrna Profiling In The Weddell Seal Suggests Novel Regulatory Mechanisms Contributing To Diving Adaptation, Luca Penso-Dolfin, Wilfried Haerty, Allyson Hindle, Federica Di Palma
Microrna Profiling In The Weddell Seal Suggests Novel Regulatory Mechanisms Contributing To Diving Adaptation, Luca Penso-Dolfin, Wilfried Haerty, Allyson Hindle, Federica Di Palma
Life Sciences Faculty Research
Background:The Weddell Seal (Leptonychotes weddelli) represents a remarkable example of adaptation to diving among marine mammals. This species is capable of diving... (See full abstract in article).
Complete Genome Sequence Of Strain Bw-2, A Magnetotactic Gammaproteobacterium In The Family , Isolated From A Brackish Spring In Death Valley, California, Corey Geurink, Christopher T. Lefevre, Caroline L. Monteil, Viviana Morillo-Lopez, Fernanda Abreu, Dennis A. Bazylinski, Denis Trubitsyn
Complete Genome Sequence Of Strain Bw-2, A Magnetotactic Gammaproteobacterium In The Family , Isolated From A Brackish Spring In Death Valley, California, Corey Geurink, Christopher T. Lefevre, Caroline L. Monteil, Viviana Morillo-Lopez, Fernanda Abreu, Dennis A. Bazylinski, Denis Trubitsyn
Life Sciences Faculty Research
We report the complete 4.1-Mb genome sequence of strain BW-2, a magnetotactic, sulfur-oxidizing rod, belonging to the family Ectothiorhodospiraceae of the class Gammaproteobacteria, that biomineralizes membrane-bounded magnetite nanocrystals in its magnetosomes. This genome sequence, in comparison with those of other magnetotactic bacteria, is essential for understanding the origin and evolution of magnetotaxis and magnetosome biomineralization.
Complete Genome Sequences Of Mycobacterium Smegmatis Phages Nihilnomen And Carlyle, Isolated In Las Vegas, Nevada, Alicia Salisbury, Ryan Doss, Astha Mehta, Khadija Bhatti, Ciera Dapra, Audrey Huntsinger, Stephanie Rodriguez, Scott Yacek, Rylee Sandberg, Alexis Gildore, Jacinda Knudtson, Frances Tibayan, Tiannah Ohta, Neha Zafar, Guadalupe Mercado, Alan Le, Natalie Mekhaeel, Justin Willer, Edith Rodrich-Zuniga, Merissa Mcfarland, Kurt Regner, Christy Strong, Phillippos K. Tsourkas
Complete Genome Sequences Of Mycobacterium Smegmatis Phages Nihilnomen And Carlyle, Isolated In Las Vegas, Nevada, Alicia Salisbury, Ryan Doss, Astha Mehta, Khadija Bhatti, Ciera Dapra, Audrey Huntsinger, Stephanie Rodriguez, Scott Yacek, Rylee Sandberg, Alexis Gildore, Jacinda Knudtson, Frances Tibayan, Tiannah Ohta, Neha Zafar, Guadalupe Mercado, Alan Le, Natalie Mekhaeel, Justin Willer, Edith Rodrich-Zuniga, Merissa Mcfarland, Kurt Regner, Christy Strong, Phillippos K. Tsourkas
Life Sciences Faculty Research
We present the complete genomes of the Mycobacterium smegmatis phages Carlyle and NihilNomen, isolated from soil in Las Vegas, Nevada. The phages were isolated and annotated by undergraduate students enrolled in the Phage Discovery course offered by the School of Life Sciences at the University of Nevada Las Vegas.
Paired-End Mappability Of Transposable Elements In The Human Genome, Corinne E. Sexton, Mira V. Han
Paired-End Mappability Of Transposable Elements In The Human Genome, Corinne E. Sexton, Mira V. Han
Life Sciences Faculty Research
Though transposable elements make up around half of the human genome, the repetitive nature of their sequences makes it difficult to accurately align conventional sequencing reads. However, in light of new advances in sequencing technology, such as increased read length and paired-end libraries, these repetitive regions are now becoming easier to align to. This study investigates the mappability of transposable elements with 50 bp, 76 bp and 100 bp paired-end read libraries. With respect to those read lengths and allowing for 3 mismatches during alignment, over 68, 85, and 88% of all transposable elements in the RepeatMasker database are uniquely …
A Method For Improving The Accuracy And Efficiency Of Bacteriophage Genome Annotation, Alicia Salisbury, Philippos K. Tsourkas
A Method For Improving The Accuracy And Efficiency Of Bacteriophage Genome Annotation, Alicia Salisbury, Philippos K. Tsourkas
Life Sciences Faculty Research
Bacteriophages are the most numerous entities on Earth. The number of sequenced phage genomes is approximately 8000 and increasing rapidly. Sequencing of a genome is followed by annotation, where genes, start codons, and functions are putatively identified. The mainstays of phage genome annotation are auto-annotation programs such as Glimmer and GeneMark. Due to the relatively small size of phage genomes, many groups choose to manually curate auto-annotation results to increase accuracy. An additional benefit of manual curation of auto-annotated phage genomes is that the process is amenable to be performed by students, and has been shown to improve student recruitment …
Position-Specific Metabolic Probing And Metagenomics Of Microbial Communities Reveal Conserved Central Carbon Metabolic Network Activities At High Temperatures, Scott C. Thomas, Kevin O. Tamadonfar, Cale O. Seymour, Dengxun Lai, Jeremy A. Dodsworth, Senthil K. Murugapiran, Emiley A. Eloe-Fadrosh, Paul Dijkstra, Brian P. Hedlund
Position-Specific Metabolic Probing And Metagenomics Of Microbial Communities Reveal Conserved Central Carbon Metabolic Network Activities At High Temperatures, Scott C. Thomas, Kevin O. Tamadonfar, Cale O. Seymour, Dengxun Lai, Jeremy A. Dodsworth, Senthil K. Murugapiran, Emiley A. Eloe-Fadrosh, Paul Dijkstra, Brian P. Hedlund
Life Sciences Faculty Research
Temperature is a primary driver of microbial community composition and taxonomic diversity; however, it is unclear to what extent temperature affects characteristics of central carbon metabolic pathways (CCMPs) at the community level. In this study, 16S rRNA gene amplicon and metagenome sequencing were combined with 13C-labeled metabolite probing of the CCMPs to assess community carbon metabolism along a temperature gradient (60–95°C) in Great Boiling Spring, NV. 16S rRNA gene amplicon diversity was inversely proportional to temperature, and Archaea were dominant at higher temperatures. KO richness and diversity were also inversely proportional to temperature, yet CCMP genes were similarly represented across …
Novel Algorithms For Ldd Motif Search, Peng Xiao, Martin Schiller, Sanguthevar Rajasekaran
Novel Algorithms For Ldd Motif Search, Peng Xiao, Martin Schiller, Sanguthevar Rajasekaran
Life Sciences Faculty Research
Background: Motifs are crucial patterns that have numerous applications including the identification of transcription factors and their binding sites, composite regulatory patterns, similarity between families of proteins, etc. Several motif models have been proposed in the literature. The (l,d)-motif model is one of these that has been studied widely. However, this model will sometimes report too many spurious motifs than expected. We interpret a motif as a biologically significant entity that is evolutionarily preserved within some distance. It may be highly improbable that the motif undergoes the same number of changes in each of the species. To address this issue, …
Complete Genome Sequences Of 18 Paenibacillus Larvae Phages From The Western United States, Bryan D. Merrill, Christopher P. Fajardo, Jared A. Hilton, Ashley M. Payne, Andy T. Ward, Jamison K. Walker, Aziza Dhalai, Cameron Imahara, James Mangohig, Josh Monk, Cristian Pascacio, Padmani Rai, Alicia Salisbury, Kathie Velez, Travis J. Bloomfield, Brett Buhler, Steven G. Duncan, David A. Fuhriman, Josil George, Kiel Graves, Karli Graves, Hunter L. Hill, Michelle Kim, Bradley K. Knabe, Devin B. Ririe, Spencer L. Rogers, Casey Stamereilers, Michael B. Stephenson, Brittian K. Usher, Colton S. Ward, Jacob M. Withers
Complete Genome Sequences Of 18 Paenibacillus Larvae Phages From The Western United States, Bryan D. Merrill, Christopher P. Fajardo, Jared A. Hilton, Ashley M. Payne, Andy T. Ward, Jamison K. Walker, Aziza Dhalai, Cameron Imahara, James Mangohig, Josh Monk, Cristian Pascacio, Padmani Rai, Alicia Salisbury, Kathie Velez, Travis J. Bloomfield, Brett Buhler, Steven G. Duncan, David A. Fuhriman, Josil George, Kiel Graves, Karli Graves, Hunter L. Hill, Michelle Kim, Bradley K. Knabe, Devin B. Ririe, Spencer L. Rogers, Casey Stamereilers, Michael B. Stephenson, Brittian K. Usher, Colton S. Ward, Jacob M. Withers
Life Sciences Faculty Research
We present here the complete genomes of 18 phages that infect Paenibacillus larvae, the causative agent of American foulbrood in honeybees. The phages were isolated between 2014 and 2016 as part of an undergraduate phage discovery course at Brigham Young University. The phages were isolated primarily from bee debris and lysogens.
Complete Genome Sequences Of Paenibacillus Larvae Phages Halcyone, Heath, Scottie, And Unity From Las Vegas, Nevada, Diane G. Yost, Carolyn Chang, Lucy Leblanc, Erin Cassin, Ceara Peterman, Padmani Rai, Alicia Salisbury, Nicolas Barroga, Ramiro Cisneros, Joseph Fersini, Jonathan Juste, Juvie Ines, Gabriel Leyva, Dyanne Macalinao, Spencer Muscelli, Gustavo S. Reyes, Heather Rhoden, Rodney Tan, Erika Torres, Krystal Tran, Georgette Uriarte-Valle, Christopher Wallace, Simon Wong, Kevin Ayala-Pineda, Vanessa Cadiz, Tiffany Jeanite, Sophia Nhan, Julianne H. Grose, Christy Strong, Penny S. Amy, Philippos K. Tsourkas
Complete Genome Sequences Of Paenibacillus Larvae Phages Halcyone, Heath, Scottie, And Unity From Las Vegas, Nevada, Diane G. Yost, Carolyn Chang, Lucy Leblanc, Erin Cassin, Ceara Peterman, Padmani Rai, Alicia Salisbury, Nicolas Barroga, Ramiro Cisneros, Joseph Fersini, Jonathan Juste, Juvie Ines, Gabriel Leyva, Dyanne Macalinao, Spencer Muscelli, Gustavo S. Reyes, Heather Rhoden, Rodney Tan, Erika Torres, Krystal Tran, Georgette Uriarte-Valle, Christopher Wallace, Simon Wong, Kevin Ayala-Pineda, Vanessa Cadiz, Tiffany Jeanite, Sophia Nhan, Julianne H. Grose, Christy Strong, Penny S. Amy, Philippos K. Tsourkas
Life Sciences Faculty Research
We present the complete genome sequences of four phages that infect Paenibacillus larvae, the causative agent of American foulbrood disease in honeybees. The phages were isolated from beehives and beeswax products from Las Vegas, Nevada. The genomes are 50 to 55 kbp long and use the “direct terminal repeats” DNA-packaging strategy.
Genomic Analysis Of 48 Paenibacillus Larvae Bacteriophages, Casey Stamereilers, Christopher P. Fajardo, Jamison K. Walker, Katterinne N. Mendez, Eduardo Castro-Nallar, Julianne H. Grose, Sandra Hope, Philippos K. Tsourkas
Genomic Analysis Of 48 Paenibacillus Larvae Bacteriophages, Casey Stamereilers, Christopher P. Fajardo, Jamison K. Walker, Katterinne N. Mendez, Eduardo Castro-Nallar, Julianne H. Grose, Sandra Hope, Philippos K. Tsourkas
Life Sciences Faculty Research
The antibiotic-resistant bacterium Paenibacillus larvae is the causative agent of American foulbrood (AFB), currently the most destructive bacterial disease in honeybees. Phages that infect P. larvae were isolated as early as the 1950s, but it is only in recent years that P. larvae phage genomes have been sequenced and annotated. In this study we analyze the genomes of all 48 currently sequenced P. larvae phage genomes and classify them into four clusters and a singleton. The majority of P. larvaephage genomes are in the 38–45 kbp range and use the cohesive ends (cos) DNA-packaging strategy, while a minority have genomes …
Complete Genome Sequences Of Paenibacillus Larvae Phages Bn12, Dragolir, Kiel007, Leyra, Likha, Pagassa, Pbl1c, And Tadhana, Jamison K. Walker, Bryan D. Merrill, Jordan A. Berg, Aziza Dhalai, Douglas W. Dingman, Chris P. Fajardo, Kiel Graves, Hunter L. Hill, Jared A. Hilton, Cameron Imahara, Bradley K. Knabe, James Mangohig, Josh Monk, Heejin Mun, Ashley M. Payne, Alicia Salisbury, Casey Stamereilers, Kathie Velez, Andy T. Ward, Donald P. Breakwell, Julianne H. Grose, Sandra Hope, Philippos K. Tsourkas
Complete Genome Sequences Of Paenibacillus Larvae Phages Bn12, Dragolir, Kiel007, Leyra, Likha, Pagassa, Pbl1c, And Tadhana, Jamison K. Walker, Bryan D. Merrill, Jordan A. Berg, Aziza Dhalai, Douglas W. Dingman, Chris P. Fajardo, Kiel Graves, Hunter L. Hill, Jared A. Hilton, Cameron Imahara, Bradley K. Knabe, James Mangohig, Josh Monk, Heejin Mun, Ashley M. Payne, Alicia Salisbury, Casey Stamereilers, Kathie Velez, Andy T. Ward, Donald P. Breakwell, Julianne H. Grose, Sandra Hope, Philippos K. Tsourkas
Life Sciences Faculty Research
We present here the complete genomes of eight phages that infect Paenibacillus larvae, the causative agent of American foulbrood in honeybees. Phage PBL1c was originally isolated in 1984 from a P. larvae lysogen, while the remaining phages were isolated in 2014 from bee debris, honeycomb, and lysogens from three states in the USA.