Diversification, Introgression, and Rampant Cytonuclear Discordance in Rocky Mountains Chipmunks (Sciuridae: Tamias) is a research paper published in Systematic Biology (2020). On theSindex it has a DataRank of 0. It has been cited 41 times.
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National Science Foundation
Grant: 0939454
BEACON: An NSF Center for the Study of Evolution in Action
National Institutes of Health
Grant: 5R01GM098536-02
Evolutionary and Functional Genetics of Male Reproduction using Wild Mice as a Mo
National Institutes of Health
Grant: 1P20RR016448-01
Core--Structural Biology Core Facility
National Science Foundation
Grant: 1736249
RII Track-2 FEC: Using Natural Variation to Educate, Innovate, and Lead (UNVEIL): A Collaborative Research Network to Advance Genome-to-Phenome Connections in the Wild
National Institutes of Health
Grant: 1P20RR016454-01
BIOMEDICAL RESEARCH INFRASTRUCTURE NETWORK IN IDAHO
National Science Foundation
Grant: 9720634
Idaho EPSCoR Cooperative Agreement
National Science Foundation
Grant: 0716200
Collaborative Research: A Comprehensive Multigene Phylogeny of Chipmunks (Rodentia: Tamias): Testing Divergence with Gene Flow
National Science Foundation
Grant: 0717426
Collaborative Research: A Comprehensive Multigene Phylogeny of Chipmunks (Rodentia: Tamias): Testing Divergence with Gene Flow
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Sustainable Development Goals
Additional file 1 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 1 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 2 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 2 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 3 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 3 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 8 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 7 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
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Additional file 4 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 4 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 5 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 6 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 8 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 9 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 6 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 7 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats
Additional file 5 of Mitonuclear mismatch alters nuclear gene expression in naturally introgressed Rhinolophus bats