Genome Sequence of a 5,310-Year-Old Maize Cob Provides Insights into the Early Stages of Maize Domestication
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Jeffrey Ross-Ibarra | Bruce D. Smith | M. Thomas P. Gilbert | Shyam Gopalakrishnan | Nathan Wales | J. Víctor Moreno-Mayar | J. V. Moreno-Mayar | Jazmín Ramos-Madrigal | S. Gopalakrishnan | M. Gilbert | J. Ross‐Ibarra | N. Wales | Jazmín Ramos-Madrigal | J. Ross-Ibarra | Shyam Gopalakrishnan
[1] Peter L. Ralph,et al. Independent Molecular Basis of Convergent Highland Adaptation in Maize , 2015, Genetics.
[2] Enrique Martínez-Meyer,et al. Inferences from the Historical Distribution of Wild and Domesticated Maize Provide Ecological and Evolutionary Insight , 2012, PloS one.
[3] J. Doebley,et al. Genetic signals of origin, spread, and introgression in a large sample of maize landraces , 2010, Proceedings of the National Academy of Sciences.
[4] J. Doebley,et al. Evidence That the Origin of Naked Kernels During Maize Domestication Was Caused by a Single Amino Acid Substitution in tga1 , 2015, Genetics.
[5] Joseph K. Pickrell,et al. Inference of Population Splits and Mixtures from Genome-Wide Allele Frequency Data , 2012, PLoS genetics.
[6] J. Doebley,et al. A single domestication for maize shown by multilocus microsatellite genotyping , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[7] T. Greene,et al. Maize Endosperm ADP–Glucose Pyrophosphorylase SHRUNKEN2 and BRITTLE2 Subunit Interactions , 1998, Plant Cell.
[8] Yingrui Li,et al. Construction of the third-generation Zea mays haplotype map , 2015, bioRxiv.
[9] T. Sang. Genes and Mutations Underlying Domestication Transitions in Grasses , 2009, Plant Physiology.
[10] M. Hufford,et al. The Genomic Signature of Crop-Wild Introgression in Maize , 2012, PLoS genetics.
[11] Mattias Jakobsson,et al. The origin and evolution of maize in the Southwestern United States , 2015, Nature Plants.
[12] M. Slatkin,et al. Tracking the origins of Yakutian horses and the genetic basis for their fast adaptation to subarctic environments , 2015, Proceedings of the National Academy of Sciences.
[13] Yong Wang,et al. bammds: a tool for assessing the ancestry of low-depth whole-genome data using multidimensional scaling (MDS) , 2014, Bioinform..
[14] Swapan Mallick,et al. Ancient Admixture in Human History , 2012, Genetics.
[15] K. V. Flannery,et al. The earliest archaeological maize (Zea mays L.) from highland Mexico: new accelerator mass spectrometry dates and their implications. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[16] M. Meyer,et al. Single-stranded DNA library preparation for the sequencing of ancient or damaged DNA , 2013, Nature Protocols.
[17] S. Hake,et al. thick tassel dwarf1 encodes a putative maize ortholog of the Arabidopsis CLAVATA1 leucine-rich repeat receptor-like kinase , 2005, Development.
[18] J. Doebley,et al. The Genetic Architecture of Complex Traits in Teosinte (Zea mays ssp. parviglumis): New Evidence From Association Mapping , 2008, Genetics.
[19] R. Ward,et al. Informativeness of genetic markers for inference of ancestry. , 2003, American journal of human genetics.
[20] Peter J. Bradbury,et al. Maize HapMap2 identifies extant variation from a genome in flux , 2012, Nature Genetics.
[21] Philip L. F. Johnson,et al. A Draft Sequence of the Neandertal Genome , 2010, Science.
[22] T. Korneliussen,et al. Estimating Individual Admixture Proportions from Next Generation Sequencing Data , 2013, Genetics.
[23] K. Olsen. One gene's shattering effects , 2012, Nature Genetics.
[24] D. Piperno,et al. Starch grain and phytolith evidence for early ninth millennium B.P. maize from the Central Balsas River Valley, Mexico , 2009, Proceedings of the National Academy of Sciences.
[25] Love Dalén,et al. Ancient Wolf Genome Reveals an Early Divergence of Domestic Dog Ancestors and Admixture into High-Latitude Breeds , 2015, Current Biology.
[26] Xun Xu,et al. Comparative population genomics of maize domestication and improvement , 2012, Nature Genetics.
[27] J. Doebley,et al. The role of barren stalk1 in the architecture of maize , 2004, Nature.
[28] Samuel H. Vohr,et al. Genomic analysis of 6,000-year-old cultivated grain illuminates the domestication history of barley , 2016, Nature Genetics.
[29] Bruce D. Smith,et al. Early Allelic Selection in Maize as Revealed by Ancient DNA , 2003, Science.
[30] L. Girard,et al. Ectopic expression of the maize homeobox gene liguleless3 alters cell fates in the leaf. , 1999, Plant physiology.
[31] D. Piperno,et al. Late Pleistocene and Holocene environmental history of the Iguala Valley, Central Balsas Watershed of Mexico , 2007, Proceedings of the National Academy of Sciences.
[32] A. Myers,et al. Characterization of the maize gene sugary1, a determinant of starch composition in kernels. , 1995, The Plant cell.
[33] M. Hufford,et al. Teosinte as a model system for population and ecological genomics. , 2012, Trends in genetics : TIG.
[34] Christopher Bronk Ramsey,et al. Recent and Planned Developments of the Program OxCal , 2013, Radiocarbon.