Nadia D. Singh, Ph.D.

2006 Stanford University, Palo Alto, CA 
"Nadia Singh"


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Dmitri Petrov grad student 2006 Stanford
 (Molecular evolution in a genomic context: Patterns and processes.)
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Hunter CM, Huang W, Mackay TF, et al. (2016) The Genetic Architecture of Natural Variation in Recombination Rate in Drosophila melanogaster. Plos Genetics. 12: e1005951
Hunter CM, Robinson MC, Aylor DL, et al. (2016) Genetic Background, Maternal Age and Interaction Effects Mediate Rates of Crossing over in Drosophila melanogaster Females. G3 (Bethesda, Md.)
Dumont BL, Devlin AA, Truempy DM, et al. (2015) No Evidence that Infection Alters Global Recombination Rate in House Mice. Plos One. 10: e0142266
Singh ND, Criscoe DR, Skolfield S, et al. (2015) EVOLUTION. Fruit flies diversify their offspring in response to parasite infection. Science (New York, N.Y.). 349: 747-50
Jackson S, Nielsen DM, Singh ND. (2015) Increased exposure to acute thermal stress is associated with a non-linear increase in recombination frequency and an independent linear decrease in fitness in Drosophila Bmc Evolutionary Biology. 15
O'Shea KL, Singh ND. (2015) Tetracycline-exposed Drosophila melanogaster males produce fewer offspring but a relative excess of sons Ecology and Evolution. 5: 3130-3139
Adrion JR, Kousathanas A, Pascual M, et al. (2014) Drosophila suzukii: the genetic footprint of a recent, worldwide invasion. Molecular Biology and Evolution. 31: 3148-63
Singh ND, Koerich LB, Carvalho AB, et al. (2014) Positive and purifying selection on the Drosophila Y chromosome. Molecular Biology and Evolution. 31: 2612-23
Hunter CM, Singh ND. (2014) Do males matter? Testing the effects of male genetic background on female meiotic crossover rates in Drosophila melanogaster. Evolution; International Journal of Organic Evolution. 68: 2718-26
Robinson MC, Stone EA, Singh ND. (2014) Population genomic analysis reveals no evidence for GC-biased gene conversion in Drosophila melanogaster. Molecular Biology and Evolution. 31: 425-33
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