Showing results (11-20 of 115) with videos related to
Sort By:
Pageof 12
Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology|September 7, 2014
Taking their breath away: metabolic responses to low-oxygen levels in anchialine shrimps (Crustacea: Atyidae and Alpheidae)Justin C Havird, Rebecca C Vaught, Jeffrey R Weeks, et al.Integrative and Comparative Biology|April 4, 2019
Sexually Antagonistic Mitonuclear Coevolution in Duplicate Oxidative Phosphorylation GenesJustin C Havird, Hunter J McConieMolecular Biology and Evolution|August 27, 2016
The Roles of Mutation, Selection, and Expression in Determining Relative Rates of Evolution in Mitochondrial versus Nuclear GenomesJustin C Havird, Daniel B SloanMolecular Phylogenetics and Evolution|April 13, 2010
The importance of taxon sampling in genomic studies: an example from the cyclooxygenases of teleost fishesJustin C Havird, Michael M MiyamotoIntegrative and Comparative Biology|June 10, 2022
Primary Microbial Succession in the Anchialine EcosystemJames J Sterling, Troy S Sakihara, Pamela M Brannock, et al.Molecular Ecology|December 21, 2016
The on-again, off-again relationship between mitochondrial genomes and species boundariesDaniel B Sloan, Justin C Havird, Joel SharbroughBiorxiv : the Preprint Server for Biology|February 24, 2025
Recombination and retroprocessing in broomrapes reveal a universal roadmap for mitochondrial evolution in heterotrophic plantsLiming Cai, Justin C Havird, Robert K JansenGenome Biology and Evolution|January 28, 2026
Recombination and retroprocessing in broomrapes reveal RNA-mediated gene transfer mechanism and a generalizable model for mitochondrial evolution in heterotrophic plantsLiming Cai, Justin C Havird, Robert K JansenEcology and Evolution|July 8, 2025
Altered Mitochondrial Respiration Is Associated With Loss of Nuclear-Encoded OXPHOS Genes in Parasitic BroomrapesLiming Cai, Robert K Jansen, Justin C HavirdBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|July 24, 2015
The evolution of sex: A new hypothesis based on mitochondrial mutational erosion: Mitochondrial mutational erosion in ancestral eukaryotes would favor the evolution of sex, harnessing nuclear recombination to optimize compensatory nuclear coadaptationJustin C Havird, Matthew D Hall, Damian K DowlingPageof 12