Reverse Evolution of Armor Plates in the Threespine Stickleback
暂无分享,去创建一个
Takanori Nakano | Michael M. Mazur | David A. Beauchamp | Daniel I. Bolnick | Catherine L. Peichel | Seiichi Mori | D. Bolnick | C. Peichel | D. Beauchamp | T. Nakano | J. Kitano | Jun Kitano | Seiichi Mori | M. M. Mazur | C. L. Peichel | T. Nakano
[1] M. Rose,et al. PERSPECTIVE: REVERSE EVOLUTION , 2001, Evolution; international journal of organic evolution.
[2] Jeremy Schmutz,et al. Widespread Parallel Evolution in Sticklebacks by Repeated Fixation of Ectodysplasin Alleles , 2005, Science.
[3] Mary K. Kuhner,et al. LAMARC 2.0: maximum likelihood and Bayesian estimation of population parameters , 2006, Bioinform..
[4] J. Felsenstein,et al. Maximum-likelihood estimation of migration rates and effective population numbers in two populations using a coalescent approach. , 1999, Genetics.
[5] S. Palumbi. The Evolution Explosion: How Humans Cause Rapid Evolutionary Change , 2001 .
[6] T. Reimchen. PREDATOR HANDLING FAILURES OF LATERAL PLATE MORPHS IN GASTEROSTEUS ACULEATUS: FUNCTIONAL IMPLICATIONS FOR THE ANCESTRAL PLATE CONDITION , 2000 .
[7] P. Nosil,et al. TEMPORAL VARIATION IN DIVERGENT SELECTION ON SPINE NUMBER IN THREESPINE STICKLEBACK , 2002, Evolution; international journal of organic evolution.
[8] P. Donnelly,et al. Inference of population structure using multilocus genotype data. , 2000, Genetics.
[9] David A. Beauchamp,et al. Estimating diel, depth-specific foraging opportunities with a visual encounter rate model for pelagic piscivores , 1999 .
[10] D. Reznick,et al. Experimental studies of evolution in guppies: a model for understanding the evolutionary consequences of predator removal in natural communities , 2008, Molecular ecology.
[11] Michael M. Mazur,et al. A comparison of Visual Prey Detection Among Species of Piscivorous Salmonids: Effects of Light and Low Turbidities , 2003, Environmental Biology of Fishes.
[12] J. True. Insect melanism: the molecules matter , 2003 .
[13] M. Heuts. EXPERIMENTAL STUDIES ON ADAPTIVE EVOLUTION IN GASTEROSTEUS ACULEATUS L. , 1947 .
[14] T. Quinn,et al. Ontogenetic Shifts in Habitat and Diet of Cutthroat Trout in Lake Washington, Washington , 2004 .
[15] R. Nielsen,et al. Distinguishing migration from isolation: a Markov chain Monte Carlo approach. , 2001, Genetics.
[16] G. Evanno,et al. Detecting the number of clusters of individuals using the software structure: a simulation study , 2005, Molecular ecology.
[17] S. Foster,et al. The Evolutionary biology of the threespine stickleback , 1995 .
[18] W. T. Edmondson. The uses of ecology , 1991 .
[19] P. Gienapp,et al. Climate change and evolution: disentangling environmental and genetic responses , 2008, Molecular ecology.
[20] D. Hagen,et al. Polymorphism for plate morphs in Gasterosteus aculeatus on the east coast of Canada and an hypothesis for their global distribution , 1982 .
[21] G. Turner. The Ecology of Adaptive Radiation , 2001, Heredity.
[22] D. Beauchamp,et al. Temporal, Spatial, and Size-Related Foraging of Wild Cutthroat Trout in Lake Washington , 1992 .
[23] C. Peichel,et al. Phenotypic divergence and reproductive isolation between sympatric forms of Japanese threespine sticklebacks , 2007 .
[24] D. Schluter,et al. Adaptation from standing genetic variation. , 2008, Trends in ecology & evolution.
[25] Daniel E. Schindler,et al. Effects of climatic variability on the thermal properties of Lake Washington , 2004 .
[26] Takanori Nakano,et al. Sulfur and strontium isotope geochemistry of tributary rivers of Lake Biwa: implications for human impact on the decadal change of lake water quality. , 2005, The Science of the total environment.
[27] The uses of ecology: Lake Washington and beyond , 1992 .
[28] D. Schluter,et al. The genetic architecture of divergence between threespine stickleback species , 2001, Nature.
[29] C. Schlötterer,et al. microsatellite analyser (MSA): a platform independent analysis tool for large microsatellite data sets , 2003 .
[30] M. Majerus. Melanism: Evolution in Action , 1998 .
[31] N. Buck,et al. TWELVE YEARS OF CONTEMPORARY ARMOR EVOLUTION IN A THREESPINE STICKLEBACK POPULATION , 2004, Evolution; international journal of organic evolution.
[32] Susan A. Foster,et al. The Evolutionary biology of the threespine stickleback , 1995 .
[33] A. Hendry,et al. The multifarious effects of dispersal and gene flow on contemporary adaptation , 2007 .
[34] D. J. Hall,et al. Phosphorus, Nitrogen, and Algae in Lake Washington after Diversion of Sewage , 1970, Science.
[35] D. Reznick,et al. Evolution on ecological time‐scales , 2007 .
[36] G E E Moodie,et al. Predation, natural selection and adaptation in an unusual threespine stickleback , 1972, Heredity.
[37] F. Huntingford,et al. Biology of the Three-Spined Stickleback , 2006 .
[38] A. Hendry,et al. Human influences on rates of phenotypic change in wild animal populations , 2008, Molecular ecology.
[39] L. Bernatchez,et al. Evolutionary change in human‐altered environments , 2008, Molecular ecology.
[40] D. Noakes,et al. Rapid divergence in a recently isolated population of threespine stickleback (Gasterosteus aculeatus L.) , 2002 .
[41] François Rousset,et al. GENEPOP (version 1.2): population genetic software for exact tests and ecumenicism , 1995 .
[42] D. Hagen,et al. GEOGRAPHIC VARIATION AND ENVIRONMENTAL SELECTION IN GASTEROSTEUS ACULEATUS L. IN THE PACIFIC NORTHWEST, AMERICA , 1972, Evolution; international journal of organic evolution.
[43] Andrew P. Hendry,et al. Contemporary evolution meets conservation biology , 2003 .
[44] Ian Mayer,et al. The Molecular Genetics of Evolutionary Change in Sticklebacks , 2006 .
[45] Michael M. Mazur,et al. Linking piscivory to spatial–temporal distributions of pelagic prey fishes with a visual foraging model , 2006 .
[46] D. Beauchamp. Spatial and Temporal Dynamics of Piscivory: Implications for Food Web Stability and the Transparency of Lake Washington , 1994 .
[47] D. Britt. Institutional Animal Care and Use Committees , 1986, ATLA abstracts.
[48] T. Reimchen. Trout foraging failures and the evolution of body size in stick-leback , 1991 .
[49] W. T. Edmondson. The Uses of Ecology: Lake Washington and Beyond, W.T. Edmonson. 1991. University of Washington Press, Seattle, WA. 352 pages. ISBN: 0-295-97024-3. $19.95 , 1993 .
[50] D. Schluter,et al. The Genetic Architecture of Parallel Armor Plate Reduction in Threespine Sticklebacks , 2004, PLoS biology.
[51] T. Reimchen. INJURIES ON STICKLEBACK FROM ATTACKS BY A TOOTHED PREDATOR (ONCORHYNCHUS) AND IMPLICATIONS FOR THE EVOLUTION OF LATERAL PLATES , 1992, Evolution; international journal of organic evolution.
[52] T. Klepaker. Morphological changes in a marine population of threespined stickleback, Gasterosteus aculeatus, recently isolated in fresh water , 1993 .