Food webs: reconciling the structure and function of biodiversity.
暂无分享,去创建一个
Neo D. Martinez | Daniel B. Stouffer | Ulrich Brose | Jennifer A Dunne | Jason M Tylianakis | Daniel B Stouffer | J. Dunne | D. Stouffer | U. Brose | R. Kitching | J. Tylianakis | T. Romanuk | S. Hladyz | Ross M. Thompson | R. O. Hall | H. Rantala | Ross M Thompson | Sally Hladyz | Neo D Martinez | Roger L Kitching | Robert O Hall | Heidi Rantala | Tamara N Romanuk | R. Thompson
[1] M. Kirkpatrick,et al. What do we need to know about speciation? , 2012, Trends in ecology & evolution.
[2] McIntosh,et al. Disturbance, resource supply, and food-web architecture in streams , 1998 .
[3] Daniel B. Stouffer,et al. Scaling from individuals to networks in food webs , 2010 .
[4] Elizabeth A. Fulton,et al. The trophic fingerprint of marine fisheries , 2010, Nature.
[5] Michael J. O. Pocock,et al. The Robustness and Restoration of a Network of Ecological Networks , 2012, Science.
[6] James S. Clark,et al. References and Notes Supporting Online Material Individuals and the Variation Needed for High Species Diversity in Forest Trees , 2022 .
[7] Michel Loreau,et al. Parallel ecological networks in ecosystems , 2009, Philosophical Transactions of the Royal Society B: Biological Sciences.
[8] S. Schreiber,et al. Why intraspecific trait variation matters in community ecology. , 2011, Trends in ecology & evolution.
[9] K. Gross,et al. Separating the influence of resource 'availability' from resource 'imbalance' on productivity-diversity relationships. , 2009, Ecology letters.
[10] Owen L. Petchey,et al. Trophically Unique Species Are Vulnerable to Cascading Extinction , 2008, The American Naturalist.
[11] T. Kennedy,et al. Ecosystem ecology meets adaptive management: food web response to a controlled flood on the Colorado River, Glen Canyon. , 2011, Ecological applications : a publication of the Ecological Society of America.
[12] Marta Sales-Pardo,et al. Evolutionary Conservation of Species’ Roles in Food Webs , 2012, Science.
[13] L. Amaral,et al. A robust measure of food web intervality , 2006, Proceedings of the National Academy of Sciences.
[14] M. E. Conners,et al. PREY PREFERENCE BY A TOP PREDATOR AND THE STABILITY OF LINKED FOOD CHAINS , 2000 .
[15] Richard G. Wiegert,et al. Simulation Models of Ecosystems , 1975 .
[16] J. Bown,et al. Consequences of intraspecific variation for the structure and function of ecological communities: Part 1. Model development and predicted patterns of diversity , 2007 .
[17] Raymond L. Lindeman. The trophic-dynamic aspect of ecology , 1942 .
[18] R. Busing,et al. The Unified Neutral Theory of Biodiversity and Biogeography , 2002 .
[19] J. Montoya,et al. Food web complexity and higher‐level ecosystem services , 2003 .
[20] Nelson G. Hairston,et al. Successes, limitations, and frontiers in ecosystem science , 1999 .
[21] Michael L. Pace,et al. Successes, Limitations, and Frontiers in Ecosystem Science , 1998, Springer New York.
[22] F. Chapin,et al. EFFECTS OF BIODIVERSITY ON ECOSYSTEM FUNCTIONING: A CONSENSUS OF CURRENT KNOWLEDGE , 2005 .
[23] Colin R. Townsend,et al. Energy availability, spatial heterogeneity and ecosystem size predict food-web structure in streams , 2005 .
[24] James H. Brown,et al. Toward a metabolic theory of ecology , 2004 .
[25] J. Bascompte,et al. Ecological networks : beyond food webs Ecological networks – beyond food webs , 2008 .
[26] Jennifer A. Dunne,et al. The Network Structure of Food Webs , 2005 .
[27] J. Emmett Duffy. Biodiversity loss, trophic skew and ecosystem functioning , 2003 .
[28] Jordi Bascompte,et al. SIMPLE TROPHIC MODULES FOR COMPLEX FOOD WEBS , 2005 .
[29] V. Grimm. Ten years of individual-based modelling in ecology: what have we learned and what could we learn in the future? , 1999 .
[30] Daniel I. Bolnick,et al. MEASURING INDIVIDUAL-LEVEL RESOURCE SPECIALIZATION , 2002 .
[31] Charles M. Newman,et al. A stochastic theory of community food webs I. Models and aggregated data , 1985, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[32] Owen L. Petchey,et al. Ecological Networks in a Changing Climate , 2010 .
[33] Michael P. Hassell,et al. Spatial structure and chaos in insect population dynamics , 1991, Nature.
[34] Nicolas Loeuille,et al. Evolutionary emergence of size-structured food webs. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[35] Colin R. Townsend,et al. FOOD‐WEB TOPOLOGY VARIES WITH SPATIAL SCALE IN A PATCHY ENVIRONMENT , 2005 .
[36] K Shea,et al. Management of populations in conservation, harvesting and control. , 1998, Trends in ecology & evolution.
[37] Jean-Pierre Gabriel,et al. Phylogenetic constraints and adaptation explain food-web structure , 2004, Nature.
[38] Richard J. Williams,et al. The probabilistic niche model reveals substantial variation in the niche structure of empirical food webs. , 2011, Ecology.
[39] Neo D. Martinez,et al. Mechanistic theory and modelling of complex food-web dynamics in Lake Constance. , 2012, Ecology letters.
[40] D. Schluter,et al. Evidence for Ecological Speciation and Its Alternative , 2022 .
[41] M. Loreau,et al. Biodiversity as spatial insurance in heterogeneous landscapes , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[42] Nicolas Mouquet,et al. Mechanisms of Coexistence in Competitive Metacommunities , 2004, The American Naturalist.
[43] Marta Coll,et al. Structural Degradation in Mediterranean Sea Food Webs: Testing Ecological Hypotheses Using Stochastic and Mass-Balance Modelling , 2008, Ecosystems.
[44] J. Bown,et al. Consequences of intraspecific variation for the structure and function of ecological communities Part 2: Linking diversity and function , 2007 .
[45] Y. Kawaguchi,et al. TERRESTRIAL INVERTEBRATE INPUTS DETERMINE THE LOCAL ABUNDANCE OF STREAM FISHES IN A FORESTED STREAM , 2003 .
[46] Michel Loreau,et al. Food-web constraints on biodiversity–ecosystem functioning relationships , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[47] M. Pascual,et al. From Small to Large Ecological Networks in a Dynamic World , 2005 .
[48] O. Schmitz,et al. Physiological Stress as a Fundamental Mechanism Linking Predation to Ecosystem Functioning , 2010, The American Naturalist.
[49] Eli Levine,et al. Webs on the Web (WOW): 3D visualization of ecological networks on the WWW for collaborative research and education , 2004, IS&T/SPIE Electronic Imaging.
[50] P. Warren. Making connections in food webs. , 1994, Trends in ecology & evolution.
[51] D. Dudley Williams,et al. The Importance of Temporal Resolution in Food Web Analysis: Evidence from a Detritus‐Based Stream , 1996 .
[52] Thomas W. Schoener,et al. Food Webs From the Small to the Large: The Robert H. MacArthur Award Lecture , 1989 .
[53] Peter Donnelly,et al. CONSTANT PREDATOR-PREY RATIOS: AN ARITHMETICAL ARTIFACT? , 1993 .
[54] Teja Tscharntke,et al. Habitat modification alters the structure of tropical host–parasitoid food webs , 2007, Nature.
[55] G. Woodward,et al. Warming alters community size structure and ecosystem functioning , 2012, Proceedings of the Royal Society B: Biological Sciences.
[56] Anthony R. Ives,et al. Food-web interactions govern the resistance of communities after non-random extinctions , 2004, Nature.
[57] R. Solé,et al. Topological properties of food webs: from real data to community assembly models Oikos 102 , 2003 .
[58] S. Strogatz. Exploring complex networks , 2001, Nature.
[59] Carlos J. Melián,et al. Eco-evolutionary Dynamics of Individual-Based Food Webs , 2011 .
[60] P. Mchugh,et al. Dual influences of ecosystem size and disturbance on food chain length in streams. , 2010, Ecology letters.
[61] Colin Fontaine,et al. Stability of Ecological Communities and the Architecture of Mutualistic and Trophic Networks , 2010, Science.
[62] W. Reid,et al. Millennium Ecosystem Assessment , 2005 .
[63] Peter J. Morin,et al. Environmental warming alters food-web structure and ecosystem function , 1999, Nature.
[64] R. Guimerà,et al. QUANTITATIVE PATTERNS IN THE STRUCTURE OF MODEL AND EMPIRICAL FOOD WEBS , 2004, q-bio/0401023.
[65] Michel Loreau,et al. The functional role of biodiversity in ecosystems: incorporating trophic complexity. , 2007, Ecology letters.
[66] James Rosindell,et al. Unified neutral theory of biodiversity and biogeography , 2010, Scholarpedia.
[67] R. Macarthur,et al. AN EQUILIBRIUM THEORY OF INSULAR ZOOGEOGRAPHY , 1963 .
[68] Neo D. Martinez,et al. Allometric scaling enhances stability in complex food webs. , 2006, Ecology letters.
[69] Serguei Saavedra,et al. Strong contributors to network persistence are the most vulnerable to extinction , 2011, Nature.
[70] Michael L. Pace,et al. Ecosystem size determines food-chain length in lakes , 2022 .
[71] Leonardo Dominici Cruz,et al. Nested diets: a novel pattern of individual-level resource use , 2010 .
[72] Neo D. Martinez,et al. Simple rules yield complex food webs , 2000, Nature.
[73] N. Loeuille. Consequences of adaptive foraging in diverse communities , 2010 .
[74] ROBERT M. MAY,et al. Will a Large Complex System be Stable? , 1972, Nature.
[75] P. S. Lake,et al. Invasional 'meltdown' on an oceanic island , 2003 .
[76] Colin R. Townsend,et al. The Effect of Seasonal Variation on the Community Structure and Food-Web Attributes of Two Streams: Implications for Food-Web Science , 1999 .
[77] Neo D. Martinez. Constant Connectance in Community Food Webs , 1992, The American Naturalist.
[78] J. Bascompte,et al. Global change and species interactions in terrestrial ecosystems. , 2008, Ecology letters.
[79] Louis-Félix Bersier,et al. QUANTITATIVE DESCRIPTORS OF FOOD-WEB MATRICES , 2002 .
[80] G. Evelynhutchinson,et al. Population studies: Animal ecology and demography , 1991 .
[81] C. Harley. Climate Change, Keystone Predation, and Biodiversity Loss , 2011, Science.
[82] Ulrich Brose,et al. Allometric degree distributions facilitate food-web stability , 2007, Nature.
[83] Neo D. Martinez,et al. Success and its limits among structural models of complex food webs. , 2008, The Journal of animal ecology.
[84] Alan J. McKane,et al. Evolving complex food webs , 2004 .
[85] Neo D. Martinez,et al. Network structure and biodiversity loss in food webs: robustness increases with connectance , 2002, Ecology Letters.
[86] Drew Purves,et al. The Probabilistic Niche Model Reveals the Niche Structure and Role of Body Size in a Complex Food Web , 2010, PloS one.
[87] Neo D. Martinez,et al. Stabilization of chaotic and non-permanent food-web dynamics , 2004 .
[88] D. Srivastava,et al. Biodiversity-Ecosystem Function Research: Is It Relevant to Conservation? , 2005 .
[89] H. Lotze,et al. Food-Web Structure of Seagrass Communities across Different Spatial Scales and Human Impacts , 2011, PloS one.
[90] A. Motter,et al. Rescuing ecosystems from extinction cascades through compensatory perturbations. , 2011, Nature communications.
[91] D. Schindler. Successes, Limitations and Frontiers in Ecosystem Science , 2000 .
[92] S. Ellner,et al. Predator–prey cycles in an aquatic microcosm: testing hypotheses of mechanism , 2002 .
[93] Neil Rooney,et al. Integrating food web diversity, structure and stability. , 2012, Trends in ecology & evolution.
[94] Michio Kondoh,et al. Response to Comment on "Foraging Adaptation and the Relationship Between Food-Web Complexity and Stability" , 2003, Science.
[95] Daniel B. Stouffer,et al. Evidence for the existence of a robust pattern of prey selection in food webs , 2007, Proceedings of the Royal Society B: Biological Sciences.
[96] P. Legendre,et al. A distance-based framework for measuring functional diversity from multiple traits. , 2010, Ecology.
[97] D. Bickford,et al. Shrinking body size as an ecological response to climate change , 2011 .
[98] M. Torre Jorgenson,et al. climate change 1 , 2010 .
[99] J. Lawton,et al. Number of trophic levels in ecological communities , 1977, Nature.
[100] Stefano Allesina,et al. Food webs: ordering species according to body size yields high degree of intervality. , 2011, Journal of theoretical biology.