Christopher Wheat
Christopher Wheat
Population Genetics, Stockholm University
Verified email at - Homepage
Cited by
Cited by
Rapid transcriptome characterization for a nonmodel organism using 454 pyrosequencing
JC Vera, CW Wheat, HW Fescemyer, MJ Frilander, DL Crawford, I Hanski, ...
Molecular ecology 17 (7), 1636-1647, 2008
Genomic outposts serve the phylogenomic pioneers: designing novel nuclear markers for genomic DNA extractions of Lepidoptera
N Wahlberg, CW Wheat
Systematic biology 57 (2), 231-242, 2008
Genomics and the challenging translation into conservation practice
ABA Shafer, JBW Wolf, PC Alves, L Bergström, MW Bruford, I Brännström, ...
Trends in ecology & evolution 30 (2), 78-87, 2015
The butterfly plant arms-race escalated by gene and genome duplications
PP Edger, HM Heidel-Fischer, M Bekaert, J Rota, G Glöckner, AE Platts, ...
Proceedings of the National Academy of Sciences 112 (27), 8362-8366, 2015
The genetic basis of a plant–insect coevolutionary key innovation
CW Wheat, H Vogel, U Wittstock, MF Braby, D Underwood, ...
Proceedings of the National Academy of Sciences 104 (51), 20427-20431, 2007
Timing and patterns in the taxonomic diversification of Lepidoptera (butterflies and moths)
N Wahlberg, CW Wheat, C Peña
PLOS one 8 (11), e80875, 2013
Bioinformatic processing of RAD‐seq data dramatically impacts downstream population genetic inference
ABA Shafer, CR Peart, S Tusso, I Maayan, A Brelsford, CW Wheat, ...
Methods in Ecology and Evolution 8 (8), 907-917, 2017
The Glanville fritillary genome retains an ancient karyotype and reveals selective chromosomal fusions in Lepidoptera
V Ahola, R Lehtonen, P Somervuo, L Salmela, P Koskinen, P Rastas, ...
Nature communications 5 (1), 1-9, 2014
Immune system responses and fitness costs associated with consumption of bacteria in larvae of Trichoplusia ni
D Freitak, CW Wheat, DG Heckel, H Vogel
Bmc Biology 5 (1), 1-13, 2007
Short read Illumina data for the de novo assembly of a non-model snail species transcriptome (Radix balthica, Basommatophora, Pulmonata), and a comparison of assembler performance
B Feldmeyer, CW Wheat, N Krezdorn, B Rotter, M Pfenninger
BMC genomics 12 (1), 1-12, 2011
Rapidly developing functional genomics in ecological model systems via 454 transcriptome sequencing
CW Wheat
Genetica 138 (4), 433-451, 2010
Genetics of dispersal
M Saastamoinen, G Bocedi, J Cote, D Legrand, F Guillaume, CW Wheat, ...
Biological Reviews 93 (1), 574-599, 2018
Integrating evolutionary and functional approaches to infer adaptation at specific loci
JF Storz, CW Wheat
Evolution: International Journal of Organic Evolution 64 (9), 2489-2509, 2010
Quantitative RNA-Seq analysis in non-model species: assessing transcriptome assemblies as a scaffold and the utility of evolutionary divergent genomic reference species
EA Hornett, CW Wheat
BMC genomics 13 (1), 1-16, 2012
Strong phenotypic plasticity limits potential for evolutionary responses to climate change
V Oostra, M Saastamoinen, BJ Zwaan, CW Wheat
Nature communications 9 (1), 1-11, 2018
Adaptation at specific loci. VII. Natural selection, dispersal and the diversity of molecular–functional variation patterns among butterfly species complexes (Colias …
WB Watt, CW Wheat, EH Meyer, JF Martin
Molecular Ecology 12 (5), 1265-1275, 2003
From DNA to Fitness Differences: Sequences and Structures of Adaptive Variants of Colias Phosphoglucose Isomerase (PGI)
CW Wheat, WB Watt, DD Pollock, PM Schulte
Molecular biology and evolution 23 (3), 499-512, 2006
Mechanisms of macroevolution: polyphagous plasticity in butterfly larvae revealed by RNA‐S eq
M de la Paz Celorio‐Mancera, CW Wheat, H Vogel, L Söderlind, N Janz, ...
Molecular ecology 22 (19), 4884-4895, 2013
Functional genomics of life history variation in a butterfly metapopulation
CW Wheat, HW Fescemyer, J Kvist, EVA Tas, JC Vera, MJ Frilander, ...
Molecular ecology 20 (9), 1813-1828, 2011
Fitness differences associated with Pgi SNP genotypes in the Glanville fritillary butterfly (Melitaea cinxia)
L Orsini, CW Wheat, CR Haag, J Kvist, MJ Frilander, I Hanski
Journal of evolutionary biology 22 (2), 367-375, 2009
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