Publications
Found 115 results
Author Title [ Type
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Cnidarians: Diversity and evolution of cnidarian visual systems. Distributed Vision: From Simple Sensors to Sophisticated Combination Eyes. :21–47.
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2023. .
2009. Phylogenetic relationships among the Salmoninae based on nuclear and mitochondrial DNA sequences.. Molecular systematics of fishes. Academic Press, London.
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1997. .
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2013.
An AluI fragment isolated from lake trout (Salvelinus namaycush), maps to the intergenic spacer region of the rDNA cistron. Gene. 186:7–11.
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1997. Bioluminescent Signals.
(2.98 MB)
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2018. 
Blue-light-receptive cryptochrome is expressed in a sponge eye lacking neurons and opsin. The Journal of experimental biology. 215:1278–1286.
(1.07 MB)
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2012. 
Blue-light-receptive cryptochrome is expressed in a sponge eye lacking neurons and opsin. The Journal of experimental biology. 215:1278–1286.
(1.07 MB)
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2012. 
Cnidocyte discharge is regulated by light and opsin-mediated phototransduction. BMC biology. 10:17.
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2012. Collecting and processing marine ostracods. Journal of Crustacean Biology. 37:347-352.
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2017. Collective synchrony of mating signals modulated by ecological cues and social signals in bioluminescent sea fireflies. Proceedings of the Royal Society B. 290:20232311.
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2023. The comb jelly opsins and the origins of animal phototransduction. Genome biology and evolution. 6:1964–1971.
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2014. CoMET: A Mesquite package for comparing models of continuous character evolution on phylogenies. Evolutionary Bioinformatics Online. 2:183.
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2006. Common Ancestry Is a Poor Predictor of Competitive Traits in Freshwater Green Algae. PloS one. 10:e0137085.
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2015. Comparative methods for the analysis of gene-expression evolution: an example using yeast functional genomic data. Molecular biology and evolution. 22:40–50.
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2005. Comparative tests of evolutionary trade-offs in a palinurid lobster acoustic system. Evolution. 57:2082–2100.
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2003. Context-dependent evolution of ostracod morphology along the ecogeographical gradient of ocean depth. Evolution.
(579.69 KB)
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2019. 
Deep diversity: extensive variation in the components of complex visual systems across animals. Cells. 11:3966.
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2022. Different phylogenomic methods support monophyly of enigmatic ‘Mesozoa’(Dicyemida+ Orthonectida, Lophotrochozoa). Proceedings of the Royal Society B. 289:20220683.
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2022. Differential expression of duplicated opsin genes in two eyetypes of ostracod crustaceans. Journal of molecular evolution. 59:239–249.
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2004. Dispersal between shallow and abyssal seas and evolutionary loss and regain of compound eyes in cylindroleberidid ostracods: conflicting conclusions from different comparative methods. Systematic biology. 61:314–336.
(1.27 MB)
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2012. 
The dynamic evolutionary history of pancrustacean eyes and opsins. Integrative and Comparative Biology. :icv100.
(5.07 MB)
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2015. 
Ecological engineering helps maximize function in algal oil production. Applied and environmental microbiology. :AEM–00953.
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2018.