Flood disturbance and predator-prey effects on regional gradients in species diversity.
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[1] R. Osman,et al. Stronger predation in the tropics shapes species richness patterns in marine communities. , 2011, Ecology.
[2] Dawn M. Kaufman,et al. LATITUDINAL GRADIENTS OF BIODIVERSITY:Pattern,Process,Scale,and Synthesis , 2003 .
[3] James H. Brown,et al. Global Biodiversity, Biochemical Kinetics, and the Energetic-Equivalence Rule , 2002, Science.
[4] J. Lawton,et al. Why More Productive Sites Have More Species: An Experimental Test of Theory Using Tree‐Hole Communities , 1998, The American Naturalist.
[5] T. Saitoh,et al. Latitudinal gradients in stream invertebrate assemblages at a regional scale on Hokkaido Island, Japan , 2009 .
[6] C. Hawkins,et al. Broad‐scale geographical patterns in local stream insect genera richness , 2003 .
[7] Sean M. McMahon,et al. Quantifying the Community: Using Bayesian Learning Networks to find Structure and Conduct Inference in Invasions Biology , 2005, Biological Invasions.
[8] A. Rosemond,et al. Effects of nutrient enrichment on the decomposition of wood and associated microbial activity in streams , 2004 .
[9] S. J. Arnold. Species Densities of Predators and Their Prey , 1972, The American Naturalist.
[10] G. Hon,et al. Next-generation genomics: an integrative approach , 2010, Nature Reviews Genetics.
[11] Michael A. Huston,et al. Local processes and regional patterns : appropriate scales for understanding variation in the diversity of plants and animals , 1999 .
[12] José Alexandre Felizola Diniz-Filho,et al. PRODUCTIVITY AND HISTORY AS PREDICTORS OF THE LATITUDINAL DIVERSITY GRADIENT OF TERRESTRIAL BIRDS , 2003 .
[13] Paul A. Keddy,et al. Ecological assembly rules : perspectives, advances, retreats , 1999 .
[14] G. Englund. Interactions in a lake outlet stream community: direct and indirect effects of net-spinning caddis larvae , 1993 .
[15] N. Stenseth,et al. The population dynamics of the voleClethrionomys rufocanus in Hokkaido, Japan , 1998, Researches on Population Ecology.
[16] Marco Scutari,et al. Learning Bayesian Networks with the bnlearn R Package , 2009, 0908.3817.
[17] Guillaume J. Filion,et al. Bayesian network analysis of targeting interactions in chromatin. , 2010, Genome research.
[18] J. Lawton,et al. POSITIVE AND NEGATIVE EFFECTS OF ORGANISMS AS PHYSICAL ECOSYSTEM ENGINEERS , 1997 .
[19] K. Rohde. Latitudinal gradients in species diversity: the search for the primary cause , 1992 .
[20] C. Swan,et al. Dendritic network structure constrains metacommunity properties in riverine ecosystems. , 2010, The Journal of animal ecology.
[21] M. Graça,et al. Global distribution of a key trophic guild contrasts with common latitudinal diversity patterns. , 2011, Ecology.
[22] W. Hilsenhoff. An Introduction to the Aquatic Insects of North America , 1997 .
[23] C. Hawkins,et al. Biodiversity of stream insects: variation at local, basin, and regional scales. , 1998, Annual review of entomology.
[24] S. K. Lyons,et al. A HEMISPHERIC ASSESSMENT OF SCALE DEPENDENCE IN LATITUDINAL GRADIENTS OF SPECIES RICHNESS , 1999 .
[25] P. Hambäck,et al. Large-scale questions and small-scale data: empirical and theoretical methods for scaling up in ecology , 2005, Oecologia.
[26] David R Westhead,et al. Inference in Bayesian networks , 2006, Nature Biotechnology.
[27] Samuel M. Scheiner,et al. Developing Unified Theories in Ecology as Exemplified with Diversity Gradients , 2005, The American Naturalist.
[28] Helmut Hillebrand,et al. On the Generality of the Latitudinal Diversity Gradient , 2004, The American Naturalist.
[29] J. Meyer,et al. EFFECTS OF RESOURCE LIMITATION ON A DETRITAL‐BASED ECOSYSTEM , 1999 .
[30] D. Dudgeon,et al. Foodweb structure in small streams: do we need different models for the tropics? , 2010, Journal of the North American Benthological Society.
[31] J. Lawton,et al. Predator‐prey ratios in communities of freshwater invertebrates: the role of enemy free space , 1985 .
[32] M. Hixon,et al. Predation, Prey Refuges, and the Structure of Coral‐Reef Fish Assemblages , 1993 .
[33] K. Cummins,et al. An Introduction to the Aquatic Insects of North America , 1981 .
[34] James H Brown,et al. A latitudinal diversity gradient in planktonic marine bacteria , 2008, Proceedings of the National Academy of Sciences.
[35] S. Hubbell,et al. The unified neutral theory of biodiversity and biogeography at age ten. , 2011, Trends in ecology & evolution.
[36] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[37] S. Juliano,et al. Abundance matters: a field experiment testing the more individuals hypothesis for richness–productivity relationships , 2007, Oecologia.
[38] N. LeRoy Poff,et al. Functional trait niches of North American lotic insects: traits-based ecological applications in light of phylogenetic relationships , 2006, Journal of the North American Benthological Society.
[39] Adnan Darwiche,et al. 7 Inference in Bayesian Networks : A Historical Perspective , 2009 .
[40] R. Pearson,et al. Gradients in regional diversity of freshwater taxa , 2009, Journal of the North American Benthological Society.
[41] Michael L. Rosenzweig,et al. Species Diversity in Space and Time , 1997 .
[42] Interactions between sculpins, net-spinning caddis larvae and midge larvae , 1999 .
[43] H. Buckley,et al. Reverse latitudinal trends in species richness of pitcher-plant food webs , 2003 .
[44] B. Statzner,et al. Richness gradients of stream invertebrates across the USA: taxonomy- and trait-based approaches , 2009, Biodiversity and Conservation.
[45] A. Rosemond,et al. Whole-system nutrient enrichment increases secondary production in a detritus-based ecosystem. , 2006, Ecology.
[46] K. Gaston,et al. Predator-prey ratios : a special case of a general pattern ? , 1992 .