Kreitman:Publications: Difference between revisions
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==Drosophila== | ==Drosophila== | ||
* He et al. 2013 Effect of Genetic Variation in a Drosophila Model of Diabetes-Associated Misfolded Human Proinsulin. | * He et al. 2013 Effect of Genetic Variation in a Drosophila Model of Diabetes-Associated Misfolded Human Proinsulin. ''submitted'' [http://arxiv.org/abs/1305.5319 arXiv] [[Media:Data_He_2013_Genetics.txt|Supplementary Data]] | ||
* Park et al. 2013 Genetic Complexity in a Drosophila Model of Diabetes-Associated Misfolded Human Proinsulin. | * Park et al. 2013 Genetic Complexity in a Drosophila Model of Diabetes-Associated Misfolded Human Proinsulin. ''submitted'' [http://arxiv.org/abs/1306.0025 arXiv] | ||
* Manu, Ludwig, M. Z. & Kreitman, M. Sex-specific pattern formation during early drosophila development. Genetics 194, 163-173 (2013). [http://www.ncbi.nlm.nih.gov/pubmed/23410834 pubmed] | * Manu, Ludwig, M. Z. & Kreitman, M. Sex-specific pattern formation during early drosophila development. ''Genetics'' '''194''', 163-173 (2013). [http://www.ncbi.nlm.nih.gov/pubmed/23410834 pubmed] | ||
* Ludwig, M. Z., Manu, Kittler, R., White, K. P. & Kreitman, M. Consequences of eukaryotic enhancer architecture for gene expression dynamics, development, and fitness. PLoS genetics 7, e1002364+ (2011). [http://www.ncbi.nlm.nih.gov/pubmed/22102826 pubmed] | * Ludwig, M. Z., Manu, Kittler, R., White, K. P. & Kreitman, M. Consequences of eukaryotic enhancer architecture for gene expression dynamics, development, and fitness. ''PLoS genetics'' '''7''', e1002364+ (2011). [http://www.ncbi.nlm.nih.gov/pubmed/22102826 pubmed] | ||
* Cheung, D., Miles, C., Kreitman, M. & Ma, J. Scaling of the bicoid morphogen gradient by a volume-dependent production rate. Development | * Cheung, D., Miles, C., Kreitman, M. & Ma, J. Scaling of the bicoid morphogen gradient by a volume-dependent production rate. ''Development'' '''138''', 2741-2749 (2011). [http://www.ncbi.nlm.nih.gov/pubmed/21613328 pubmed] | ||
* He, B. Z., Holloway, A. K., Maerkl, S. J. & Kreitman, M. Does positive selection drive transcription factor binding site turnover? a test with drosophila cis-regulatory modules. PLoS genetics 7, e1002053+ (2011). [http://www.ncbi.nlm.nih.gov/pubmed/21572512 pubmed] | * He, B. Z., Holloway, A. K., Maerkl, S. J. & Kreitman, M. Does positive selection drive transcription factor binding site turnover? a test with drosophila cis-regulatory modules. ''PLoS genetics'' '''7''', e1002053+ (2011). [http://www.ncbi.nlm.nih.gov/pubmed/21572512 pubmed] | ||
* Lott, S. E., Ludwig, M. Z. & Kreitman, M. Evolution and inheritance of early embryonic patterning in drosophila simulans and d. sechellia. Evolution | * Lott, S. E., Ludwig, M. Z. & Kreitman, M. Evolution and inheritance of early embryonic patterning in drosophila simulans and d. sechellia. ''Evolution'' '''65''', 1388-1399 (2011). [http://www.ncbi.nlm.nih.gov/pubmed/21121913 pubmed] | ||
* Miles, C. M. et al. Artificial selection on egg size perturbs early pattern formation in drosophila melanogaster. Evolution | * Miles, C. M. et al. Artificial selection on egg size perturbs early pattern formation in drosophila melanogaster. ''Evolution'' '''65''', 33-42 (2011). [http://www.ncbi.nlm.nih.gov/pubmed/20636356 pubmed] | ||
* Carl, S. Naturally occurring genetic variation influences the severity of drosophila eye degeneration induced by expression of a mutant human insulin gene (2013). | * Carl, S. Naturally occurring genetic variation influences the severity of drosophila eye degeneration induced by expression of a mutant human insulin gene (2013). Undergraduate thesis [http://arxiv.org/abs/1303.0396 arXiv] | ||
* Lott, S. E., Kreitman, M., Palsson, A., Alekseeva, E. & Ludwig, M. Z. Canalization of segmentation and its evolution in drosophila. Proceedings of the National Academy of Sciences of the United States of America 104, 10926-10931 (2007). [http://www.ncbi.nlm.nih.gov/pubmed/17569783 pubmed] | * Lott, S. E., Kreitman, M., Palsson, A., Alekseeva, E. & Ludwig, M. Z. Canalization of segmentation and its evolution in drosophila. ''Proceedings of the National Academy of Sciences of the United States of America'' '''104''', 10926-10931 (2007). [http://www.ncbi.nlm.nih.gov/pubmed/17569783 pubmed] | ||
* Ludwig, M. Z. et al. Functional evolution of a cis-regulatory module. PLoS biology 3, e93+ (2005). [http://www.ncbi.nlm.nih.gov/pubmed/15757364 pubmed] | * Ludwig, M. Z. et al. Functional evolution of a cis-regulatory module. ''PLoS biology'' '''3''', e93+ (2005). [http://www.ncbi.nlm.nih.gov/pubmed/15757364 pubmed] | ||
==Other== | ==Other== | ||
* Tian, D. et al. Single-nucleotide mutation rate increases close to insertions/deletions in eukaryotes. Nature 455, 105-108 (2008). [http://www.ncbi.nlm.nih.gov/pubmed/18641631 pubmed] | * Tian, D. et al. Single-nucleotide mutation rate increases close to insertions/deletions in eukaryotes. Nature 455, 105-108 (2008). [http://www.ncbi.nlm.nih.gov/pubmed/18641631 pubmed] |
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