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Michael S Barker

Showing results (1-10 of 75) with videos related to

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Nature Plants|January 31, 2018
A Gneato nuclear genomeMichael S Barker
Current Opinion in Plant Biology|April 7, 2012
Rarely successful polyploids and their legacy in plant genomesNils Arrigo, Michael S Barker
Gigascience|February 12, 2020
Inferring putative ancient whole-genome duplications in the 1000 Plants (1KP) initiative: access to gene family phylogenies and age distributionsZheng Li, Michael S Barker
Molecular Ecology|April 7, 2025
The Role of Meiotic Drive in Chromosome Number Disparity Between Heterosporous and Homosporous PlantsSylvia P Kinosian, Michael S Barker
Annals of Botany|June 26, 2010
Ancient genome duplications during the evolution of kiwifruit (Actinidia) and related EricalesTao Shi, Hongwen Huang, Michael S Barker
Methods in Molecular Biology (Clifton, N.J.)|January 31, 2023
Applying Machine Learning to Classify the Origins of Gene DuplicationsMichael T W McKibben, Michael S Barker
Systematic Biology|June 8, 2010
Probabilistic models of chromosome number evolution and the inference of polyploidyItay Mayrose, Michael S Barker, Sarah P Otto
Genome Biology and Evolution|March 25, 2010
Paleopolyploidy in the Brassicales: analyses of the Cleome transcriptome elucidate the history of genome duplications in Arabidopsis and other BrassicalesMichael S Barker, Heiko Vogel, M Eric Schranz
Genome Biology and Evolution|May 19, 2016
The Small Nuclear Genomes of Selaginella Are Associated with a Low Rate of Genome Size EvolutionAnthony E Baniaga, Nils Arrigo, Michael S Barker
Science (New York, N.Y.)|March 24, 2007
Gene co-inheritance and gene transferYaniv Brandvain, Michael S Barker, Michael J Wade
Pageof 8

Showing results (1-10 of 75) with videos related to

Sort By:
Pageof 8
Nature Plants|January 31, 2018
A Gneato nuclear genomeMichael S Barker
Current Opinion in Plant Biology|April 7, 2012
Rarely successful polyploids and their legacy in plant genomesNils Arrigo, Michael S Barker
Gigascience|February 12, 2020
Inferring putative ancient whole-genome duplications in the 1000 Plants (1KP) initiative: access to gene family phylogenies and age distributionsZheng Li, Michael S Barker
Molecular Ecology|April 7, 2025
The Role of Meiotic Drive in Chromosome Number Disparity Between Heterosporous and Homosporous PlantsSylvia P Kinosian, Michael S Barker
Annals of Botany|June 26, 2010
Ancient genome duplications during the evolution of kiwifruit (Actinidia) and related EricalesTao Shi, Hongwen Huang, Michael S Barker
Methods in Molecular Biology (Clifton, N.J.)|January 31, 2023
Applying Machine Learning to Classify the Origins of Gene DuplicationsMichael T W McKibben, Michael S Barker
Systematic Biology|June 8, 2010
Probabilistic models of chromosome number evolution and the inference of polyploidyItay Mayrose, Michael S Barker, Sarah P Otto
Genome Biology and Evolution|March 25, 2010
Paleopolyploidy in the Brassicales: analyses of the Cleome transcriptome elucidate the history of genome duplications in Arabidopsis and other BrassicalesMichael S Barker, Heiko Vogel, M Eric Schranz
Genome Biology and Evolution|May 19, 2016
The Small Nuclear Genomes of Selaginella Are Associated with a Low Rate of Genome Size EvolutionAnthony E Baniaga, Nils Arrigo, Michael S Barker
Science (New York, N.Y.)|March 24, 2007
Gene co-inheritance and gene transferYaniv Brandvain, Michael S Barker, Michael J Wade
Pageof 8