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G3 (Bethesda, Md.)
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January 23, 2020
The Tempo and Mode of Angiosperm Mitochondrial Genome Divergence Inferred from Intraspecific Variation in <i>Arabidopsis thaliana</i>
Zhiqiang Wu, Gus Waneka, Daniel B Sloan
Biorxiv : the Preprint Server for Biology
|
February 14, 2024
Investigating low frequency somatic mutations in <i>Arabidopsis</i> with Duplex Sequencing
Gus Waneka, Braden Pate, J Grey Monroe, et al.
Genome Biology and Evolution
|
October 4, 2024
Exploring the Relationship Between Gene Expression and Low-Frequency Somatic Mutations in Arabidopsis with Duplex Sequencing
Gus Waneka, Braden Pate, J Grey Monroe, et al.
Genome Biology and Evolution
|
December 4, 2020
Mutational Pressure Drives Differential Genome Conservation in Two Bacterial Endosymbionts of Sap-Feeding Insects
Gus Waneka, Yumary M Vasquez, Gordon M Bennett, et al.
Genetics
|
December 1, 2021
Mitochondrial mutations in Caenorhabditis elegans show signatures of oxidative damage and an AT-bias
Gus Waneka, Joshua M Svendsen, Justin C Havird, et al.
Genetics
|
March 11, 2021
Detecting de novo mitochondrial mutations in angiosperms with highly divergent evolutionary rates
Amanda K Broz, Gus Waneka, Zhiqiang Wu, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
July 1, 2020
<i>MSH1</i> is required for maintenance of the low mutation rates in plant mitochondrial and plastid genomes
Zhiqiang Wu, Gus Waneka, Amanda K Broz, et al.
Genome Biology and Evolution
|
October 20, 2023
Chromosome-Level Genome Assembly for the Angiosperm Silene conica
Peter D Fields, Melody M Weber, Gus Waneka, et al.
Biorxiv : the Preprint Server for Biology
|
September 21, 2023
Chromosome-level genome assembly for the angiosperm <i>Silene conica</i>
Peter D Fields, Melody M Weber, Gus Waneka, et al.
G3 (Bethesda, Md.)
|
February 13, 2025
Disruption of recombination machinery alters the mutational landscape in plant organellar genomes
Gus Waneka, Amanda K Broz, Forrest Wold-McGimsey, et al.
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Search research articles
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Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
G3 (Bethesda, Md.)
|
January 23, 2020
The Tempo and Mode of Angiosperm Mitochondrial Genome Divergence Inferred from Intraspecific Variation in <i>Arabidopsis thaliana</i>
Zhiqiang Wu, Gus Waneka, Daniel B Sloan
Biorxiv : the Preprint Server for Biology
|
February 14, 2024
Investigating low frequency somatic mutations in <i>Arabidopsis</i> with Duplex Sequencing
Gus Waneka, Braden Pate, J Grey Monroe, et al.
Genome Biology and Evolution
|
October 4, 2024
Exploring the Relationship Between Gene Expression and Low-Frequency Somatic Mutations in Arabidopsis with Duplex Sequencing
Gus Waneka, Braden Pate, J Grey Monroe, et al.
Genome Biology and Evolution
|
December 4, 2020
Mutational Pressure Drives Differential Genome Conservation in Two Bacterial Endosymbionts of Sap-Feeding Insects
Gus Waneka, Yumary M Vasquez, Gordon M Bennett, et al.
Genetics
|
December 1, 2021
Mitochondrial mutations in Caenorhabditis elegans show signatures of oxidative damage and an AT-bias
Gus Waneka, Joshua M Svendsen, Justin C Havird, et al.
Genetics
|
March 11, 2021
Detecting de novo mitochondrial mutations in angiosperms with highly divergent evolutionary rates
Amanda K Broz, Gus Waneka, Zhiqiang Wu, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
July 1, 2020
<i>MSH1</i> is required for maintenance of the low mutation rates in plant mitochondrial and plastid genomes
Zhiqiang Wu, Gus Waneka, Amanda K Broz, et al.
Genome Biology and Evolution
|
October 20, 2023
Chromosome-Level Genome Assembly for the Angiosperm Silene conica
Peter D Fields, Melody M Weber, Gus Waneka, et al.
Biorxiv : the Preprint Server for Biology
|
September 21, 2023
Chromosome-level genome assembly for the angiosperm <i>Silene conica</i>
Peter D Fields, Melody M Weber, Gus Waneka, et al.
G3 (Bethesda, Md.)
|
February 13, 2025
Disruption of recombination machinery alters the mutational landscape in plant organellar genomes
Gus Waneka, Amanda K Broz, Forrest Wold-McGimsey, et al.
Page
of 2