Dysregulation of expression correlates with rare-allele burden and fitness loss in maize
Karl A. G. Kremling (),
Shu-Yun Chen,
Mei-Hsiu Su,
Nicholas K. Lepak,
M. Cinta Romay,
Kelly L. Swarts,
Fei Lu,
Anne Lorant,
Peter J. Bradbury and
Edward S. Buckler ()
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Karl A. G. Kremling: Section of Plant Breeding and Genetics, 175 Biotechnology Building, Cornell University
Shu-Yun Chen: Institute for Genomic Diversity, 175 Biotechnology Building, Cornell University
Mei-Hsiu Su: Institute for Genomic Diversity, 175 Biotechnology Building, Cornell University
Nicholas K. Lepak: USDA-ARS, R. W. Holley Center, Cornell University
M. Cinta Romay: Institute for Genomic Diversity, 175 Biotechnology Building, Cornell University
Kelly L. Swarts: Section of Plant Breeding and Genetics, 175 Biotechnology Building, Cornell University
Fei Lu: Institute for Genomic Diversity, 175 Biotechnology Building, Cornell University
Anne Lorant: University of California Davis
Peter J. Bradbury: USDA-ARS, R. W. Holley Center, Cornell University
Edward S. Buckler: Section of Plant Breeding and Genetics, 175 Biotechnology Building, Cornell University
Nature, 2018, vol. 555, issue 7697, 520-523
Abstract:
A multi-tissue gene expression resource representative of the genotypic and phenotypic diversity of modern inbred maize reveals the effect of rare alleles and evolutionary history on the regulation of gene expression.
Date: 2018
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Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:555:y:2018:i:7697:d:10.1038_nature25966
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DOI: 10.1038/nature25966
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