The problem of pattern and scale in ecology: what have we learned in 20 years?
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[1] Guy Woodward,et al. Reconciling the temperature dependence of respiration across timescales and ecosystem types , 2012, Nature.
[2] A. Paytan,et al. Rapid Variability of Seawater Chemistry Over the Past 130 Million Years , 2012, Science.
[3] T. Smith,et al. A Trans-Amazonian Screening of mtDNA Reveals Deep Intraspecific Divergence in Forest Birds and Suggests a Vast Underestimation of Species Diversity , 2012, PloS one.
[4] P. Taberlet,et al. Towards next‐generation biodiversity assessment using DNA metabarcoding , 2012, Molecular ecology.
[5] I. Couzin,et al. Inferring the structure and dynamics of interactions in schooling fish , 2011, Proceedings of the National Academy of Sciences.
[6] B. Grant,et al. How and Why Species Multiply: The Radiation of Darwin's Finches , 2011 .
[7] S. Schreiber,et al. Why intraspecific trait variation matters in community ecology. , 2011, Trends in ecology & evolution.
[8] Peter R Grant,et al. Two developmental modules establish 3D beak-shape variation in Darwin's finches , 2011, Proceedings of the National Academy of Sciences.
[9] T. Schoener. The Newest Synthesis: Understanding the Interplay of Evolutionary and Ecological Dynamics , 2011, Science.
[10] N. Goldenfeld,et al. Life is Physics: Evolution as a Collective Phenomenon Far From Equilibrium , 2010, 1011.4125.
[11] Carlos J. Melián,et al. Eco-evolutionary Dynamics of Individual-Based Food Webs , 2011 .
[12] James Rosindell,et al. Unified neutral theory of biodiversity and biogeography , 2010, Scholarpedia.
[13] J. Stamps,et al. Do consistent individual differences in metabolic rate promote consistent individual differences in behavior? , 2010, Trends in ecology & evolution.
[14] Dariusz Stramski,et al. Phytoplankton class‐specific primary production in the world's oceans: Seasonal and interannual variability from satellite observations , 2010 .
[15] Joshua S Weitz,et al. An integrative approach to understanding microbial diversity: from intracellular mechanisms to community structure , 2010, Ecology letters.
[16] D. Baldocchi,et al. Multiscale analysis of temporal variability of soil CO2 production as influenced by weather and vegetation , 2010 .
[17] S. Wofsy,et al. Responses of terrestrial ecosystems and carbon budgets to current and future environmental variability , 2010, Proceedings of the National Academy of Sciences.
[18] Marcel Salathé,et al. Dynamics and Control of Diseases in Networks with Community Structure , 2010, PLoS Comput. Biol..
[19] Scott C. Doney,et al. Detection of anthropogenic climate change in satellite records of ocean chlorophyll and productivity , 2010 .
[20] John F. B. Mitchell,et al. The next generation of scenarios for climate change research and assessment , 2010, Nature.
[21] A. P. Abaimov,et al. Mixed-power scaling of whole-plant respiration from seedlings to giant trees , 2010, Proceedings of the National Academy of Sciences.
[22] O. Atkin. F1000Prime Recommendation of [Mori S et al , 2010 .
[23] R. Varga. Multiscale analysis of temporal variability of soil CO 2 production as influenced by weather and vegetation , 2010 .
[24] S. Redner,et al. A Kinetic View of Statistical Physics , 2010 .
[25] Corinne Le Quéré,et al. Trends in the sources and sinks of carbon dioxide , 2009 .
[26] Jason A. Papin,et al. Applications of genome-scale metabolic reconstructions , 2009, Molecular systems biology.
[27] J. Silvertown. A new dawn for citizen science. , 2009, Trends in ecology & evolution.
[28] J. Kirby,et al. Deciphering the hunting strategy of a bacterial wolfpack. , 2009, FEMS microbiology reviews.
[29] J. Gershenzon,et al. Protective perfumes: the role of vegetative volatiles in plant defense against herbivores. , 2009, Current opinion in plant biology.
[30] J. Cavender-Bares,et al. The merging of community ecology and phylogenetic biology. , 2009, Ecology letters.
[31] Neil Rooney,et al. The more food webs change, the more they stay the same , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[32] Michael C. Marshall,et al. Experimental evaluation of evolution and coevolution as agents of ecosystem change in Trinidadian streams , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[33] John Parkinson,et al. The conservation and evolutionary modularity of metabolism , 2009, Genome Biology.
[34] Chris J. Johnson,et al. Factors limiting our understanding of ecological scale , 2009 .
[35] Jonathan M. Chase,et al. Evolutionary diversification in stickleback affects ecosystem functioning , 2009, Nature.
[36] C. McClain. A decade of satellite ocean color observations. , 2009, Annual review of marine science.
[37] J. Elith,et al. Species Distribution Models: Ecological Explanation and Prediction Across Space and Time , 2009 .
[38] J. Bascompte,et al. Ecological networks : beyond food webs Ecological networks – beyond food webs , 2008 .
[39] Nicolas Galtier,et al. The erratic mitochondrial clock: variations of mutation rate, not population size, affect mtDNA diversity across birds and mammals , 2009, BMC Evolutionary Biology.
[40] B. Emerson,et al. Phylogenetic analysis of community assembly and structure over space and time. , 2008, Trends in ecology & evolution.
[41] Nathan J B Kraft,et al. Functional Traits and Niche-Based Tree Community Assembly in an Amazonian Forest , 2008, Science.
[42] D. Rabosky. How and Why Species Multiply , 2008 .
[43] J. Losos. Phylogenetic niche conservatism, phylogenetic signal and the relationship between phylogenetic relatedness and ecological similarity among species. , 2008, Ecology letters.
[44] M. Feldman,et al. Large-scale reconstruction and phylogenetic analysis of metabolic environments , 2008, Proceedings of the National Academy of Sciences.
[45] Eric J. Deeds,et al. Sizing Up Allometric Scaling Theory , 2008, PLoS Comput. Biol..
[46] D. Vaulot,et al. The diversity of small eukaryotic phytoplankton (< or =3 microm) in marine ecosystems. , 2008, FEMS microbiology reviews.
[47] I. Lovette,et al. Explosive Evolutionary Radiations: Decreasing Speciation or Increasing Extinction Through Time? , 2008, Evolution; international journal of organic evolution.
[48] James H Brown,et al. A latitudinal diversity gradient in planktonic marine bacteria , 2008, Proceedings of the National Academy of Sciences.
[49] E. Delong,et al. The Microbial Engines That Drive Earth's Biogeochemical Cycles , 2008, Science.
[50] P. Gienapp,et al. Climate change and evolution: disentangling environmental and genetic responses , 2008, Molecular ecology.
[51] Hans-Hermann Gerdes,et al. Functional Traits and Niche-Based Tree Community Assembly in an Amazonian Forest , 2008 .
[52] T. Knürr,et al. Gene Flow and Local Adaptation in Trees , 2007 .
[53] Markus Reichstein,et al. CO2 balance of boreal, temperate, and tropical forests derived from a global database , 2007 .
[54] G. Wagner,et al. The road to modularity , 2007, Nature Reviews Genetics.
[55] A. Griffin,et al. Cooperation and conflict in quorum-sensing bacterial populations , 2007, Nature.
[56] M. Keeling,et al. Modeling Infectious Diseases in Humans and Animals , 2007 .
[57] A. M. Edwards,et al. Revisiting Lévy flight search patterns of wandering albatrosses, bumblebees and deer , 2007, Nature.
[58] U. Alon,et al. Environmental variability and modularity of bacterial metabolic networks , 2007, BMC Evolutionary Biology.
[59] S. Carpenter,et al. Stability and Diversity of Ecosystems , 2007, Science.
[60] Michel Loreau,et al. Eco‐evolutionary dynamics of communities and ecosystems , 2007 .
[61] Nancy Knowlton,et al. Evolution and the latitudinal diversity gradient: speciation, extinction and biogeography. , 2007, Ecology letters.
[62] Sallie W. Chisholm,et al. Emergent Biogeography of Microbial Communities in a Model Ocean , 2007, Science.
[63] D. Schluter,et al. The Latitudinal Gradient in Recent Speciation and Extinction Rates of Birds and Mammals , 2007, Science.
[64] D. Stahl,et al. Metabolic modeling of a mutualistic microbial community , 2007, Molecular systems biology.
[65] Teja Tscharntke,et al. Habitat modification alters the structure of tropical host–parasitoid food webs , 2007, Nature.
[66] Taro Takahashi,et al. Constraints on the Global Atmospheric CO 2 Budget , 2007 .
[67] C. Maley,et al. Cancer is a disease of clonal evolution within the body1–3. This has profound clinical implications for neoplastic progression, cancer prevention and cancer therapy. Although the idea of cancer as an evolutionary problem , 2006 .
[68] C. Parmesan. Ecological and Evolutionary Responses to Recent Climate Change , 2006 .
[69] J. W. Valentine,et al. Out of the Tropics: Evolutionary Dynamics of the Latitudinal Diversity Gradient , 2006, Science.
[70] Ran Nathan. Long-Distance Dispersal of Plants , 2006, Science.
[71] Peter R. Grant,et al. Evolution of Character Displacement in Darwin's Finches , 2006, Science.
[72] Xabier Irigoien,et al. Scaling the metabolic balance of the oceans. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[73] Andrew J. Watson,et al. Ecosystem dynamics based on plankton functional types for global ocean biogeochemistry models , 2005 .
[74] S. Ellner,et al. Rapid evolution and the convergence of ecological and evolutionary time , 2005 .
[75] T. Dayan,et al. Ecological and community‐wide character displacement: the next generation , 2005 .
[76] James H. Brown,et al. Linking the global carbon cycle to individual metabolism , 2005 .
[77] C. McClain,et al. Recent trends in global ocean chlorophyll , 2005 .
[78] A. Herrel,et al. Bite performance and morphology in a population of Darwin's finches: implications for the evolution of beak shape , 2005 .
[79] E. Ostrom. Understanding Institutional Diversity , 2005 .
[80] M. Donoghue,et al. Historical biogeography, ecology and species richness. , 2004, Trends in ecology & evolution.
[81] Jonathan M. Chase,et al. The metacommunity concept: a framework for multi-scale community ecology , 2004 .
[82] James H. Brown,et al. Toward a metabolic theory of ecology , 2004 .
[83] Maosheng Zhao,et al. A Continuous Satellite-Derived Measure of Global Terrestrial Primary Production , 2004 .
[84] Daniel Simberloff,et al. Community Ecology: Is It Time to Move On? , 2004, The American Naturalist.
[85] Carlos Melián,et al. FOOD WEB COHESION , 2004 .
[86] Helmut Hillebrand,et al. On the Generality of the Latitudinal Diversity Gradient , 2004, The American Naturalist.
[87] T. Tyrrell,et al. Emiliania huxleyi: bloom observations and the conditions that induce them , 2004 .
[88] G. J. Velicer,et al. Evolution of novel cooperative swarming in the bacterium Myxococcus xanthus , 2003, Nature.
[89] F. Woodward,et al. The role of stomata in sensing and driving environmental change , 2003, Nature.
[90] S. Ellner,et al. Rapid evolution drives ecological dynamics in a predator–prey system , 2003, Nature.
[91] M. Vanderklift,et al. Sources of variation in consumer-diet δ15N enrichment: a meta-analysis , 2003, Oecologia.
[92] Evan P. Economo,et al. Scaling metabolism from organisms to ecosystems , 2003, Nature.
[93] D. Baldocchi. Assessing the eddy covariance technique for evaluating carbon dioxide exchange rates of ecosystems: past, present and future , 2003 .
[94] Armand M. Leroi,et al. Cancer selection , 2003, Nature Reviews Cancer.
[95] Jérôme Chave,et al. Cluster Analysis of Spatial Patterns in Malaysian Tree Species , 2002, The American Naturalist.
[96] Jérôme Chave,et al. A Spatially Explicit Neutral Model of β-Diversity in Tropical Forests , 2002 .
[97] Neo D. Martinez,et al. Network structure and biodiversity loss in food webs: robustness increases with connectance , 2002, Ecology Letters.
[98] Taro Takahashi,et al. Towards robust regional estimates of CO2 sources and sinks using atmospheric transport models , 2002, Nature.
[99] Jérôme Chave,et al. A spatially explicit neutral model of beta-diversity in tropical forests. , 2002, Theoretical population biology.
[100] D. Baldocchi. Assessing the Eddy Covariance Technique for Evaluating the Carbon Balance of Ecosystems , 2002 .
[101] James H. Brown,et al. Effects of Size and Temperature on Metabolic Rate , 2001, Science.
[102] E. Boyle,et al. The global carbon cycle: a test of our knowledge of earth as a system. , 2000, Science.
[103] R. Albert,et al. The large-scale organization of metabolic networks , 2000, Nature.
[104] Campbell O. Webb,et al. Exploring the Phylogenetic Structure of Ecological Communities: An Example for Rain Forest Trees , 2000, The American Naturalist.
[105] J. Hopfield,et al. From molecular to modular cell biology , 1999, Nature.
[106] D. Baldocchi,et al. The carbon balance of tropical, temperate and boreal forests , 1999 .
[107] E. Ostrom,et al. Revisiting the commons: local lessons, global challenges. , 1999, Science.
[108] D. Grünbaum,et al. From individuals to aggregations: the interplay between behavior and physics. , 1999, Journal of theoretical biology.
[109] J. Lawton. Are there general laws in ecology , 1999 .
[110] G. F.,et al. From individuals to aggregations: the interplay between behavior and physics. , 1999, Journal of theoretical biology.
[111] J. Randerson,et al. Primary production of the biosphere: integrating terrestrial and oceanic components , 1998, Science.
[112] George C. Hurtt,et al. Reid's Paradox of Rapid Plant Migration Dispersal theory and interpretation of paleoecological records , 1998 .
[113] B. Bolker,et al. Using Moment Equations to Understand Stochastically Driven Spatial Pattern Formation in Ecological Systems , 1997, Theoretical population biology.
[114] N. Pace. A molecular view of microbial diversity and the biosphere. , 1997, Science.
[115] James H. Brown,et al. A General Model for the Origin of Allometric Scaling Laws in Biology , 1997, Science.
[116] F. H. Rodd,et al. Evaluation of the Rate of Evolution in Natural Populations of Guppies (Poecilia reticulata) , 1997, Science.
[117] P. Falkowski,et al. Photosynthetic rates derived from satellite‐based chlorophyll concentration , 1997 .
[118] Pa Abrams,et al. Prey evolution as a cause of predator-prey cycles , 1997 .
[119] P. Driessche,et al. Dispersal data and the spread of invading organisms. , 1996 .
[120] D. Antoine,et al. Oceanic primary production: 1. Adaptation of a spectral light‐photosynthesis model in view of application to satellite chlorophyll observations , 1996 .
[121] Eörs Szathmáry,et al. The Major Transitions in Evolution , 1997 .
[122] J. D. van der Laan,et al. Predator—prey coevolution: interactions across different timescales , 1995, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[123] R. Durrett,et al. The Importance of Being Discrete (and Spatial) , 1994 .
[124] L. Slobodkin,et al. A history of the ecosystem concept in ecology: More than the sum of the parts , 1994 .
[125] J. Lloyd,et al. On the temperature dependence of soil respiration , 1994 .
[126] F. Golley. A History of the Ecosystem Concept in Ecology: More Than the Sum o f the Parts , 1993 .
[127] S. Levin. The problem of pattern and scale in ecology , 1992 .
[128] M Slatkin,et al. Fisher's fundamental theorem of natural selection. , 1992, Trends in ecology & evolution.
[129] G. Polis,et al. Complex Trophic Interactions in Deserts: An Empirical Critique of Food-Web Theory , 1991, The American Naturalist.
[130] HERBERT A. SIMON,et al. The Architecture of Complexity , 1991 .
[131] I. Fung,et al. Observational Contrains on the Global Atmospheric Co2 Budget , 1990, Science.
[132] G. Sugihara,et al. Scale invariance in food web properties. , 1989, Science.
[133] W. Calder. Size, Function, and Life History , 1988 .
[134] R. Ricklefs,et al. Community Diversity: Relative Roles of Local and Regional Processes , 1987, Science.
[135] P. Boag. THE HERITABILITY OF EXTERNAL MORPHOLOGY IN DARWIN'S GROUND FINCHES (GEOSPIZA) ON ISLA DAPHNE MAJOR, GALÁPAGOS , 1983, Evolution; international journal of organic evolution.
[136] R. Paine. Food webs : linkage, interaction strength and community infrastructure , 1980 .
[137] R. Macarthur. Mathematical Ecology and Its Place among the Sciences. (Book Reviews: Geographical Ecology. Patterns in the Distribution of Species) , 1974 .
[138] P. Anderson. More is different. , 1972, Science.
[139] M. Kleiber. Body size and metabolic rate. , 1947, Physiological reviews.
[140] M. P.R.,et al. A METHOD FOR SCALING VEGETATION DYNAMICS: THE ECOSYSTEM DEMOGRAPHY MODEL (ED) , 2022 .