Plant diversity alters the representation of motifs in food webs
暂无分享,去创建一个
Michael Rzanny | N. Eisenhauer | C. Roscher | W. Weisser | S. Meyer | A. Ebeling | W. Voigt | D. Giling | J. Hines
[1] Michael Rzanny,et al. A meta food web for invertebrate species collected in a European grassland. , 2019, Ecology.
[2] J. Harding,et al. Inferring predator–prey interactions in food webs , 2018, Methods in Ecology and Evolution.
[3] P. Archambault,et al. What's in a tide pool? Just as much food web network complexity as in large open ecosystems , 2018, PloS one.
[4] Anna Eklöf,et al. Feeding environment and other traits shape species' roles in marine food webs. , 2018, Ecology letters.
[5] B. Menge,et al. Fundamental contradictions among observational and experimental estimates of non-trophic species interactions. , 2018, Ecology.
[6] M. Lange,et al. Plant diversity induces shifts in the functional structure and diversity across trophic levels , 2018 .
[7] A. Joern,et al. Impacts of plant diversity on arthropod communities and plant–herbivore network architecture , 2017 .
[8] Nadja K. Simons,et al. Plant diversity effects on arthropods and arthropod-dependent ecosystem functions in a biodiversity experiment , 2017 .
[9] M. Lange,et al. Biodiversity effects on ecosystem functioning in a 15-year grassland experiment: Patterns, mechanisms, and open questions , 2017 .
[10] K. Wootton,et al. Omnivory and stability in freshwater habitats: Does theory match reality? , 2017 .
[11] Angelo Monteiro,et al. The interplay between population stability and food-web topology predicts the occurrence of motifs in complex food-webs. , 2016, Journal of theoretical biology.
[12] Michael Traugott,et al. Trophic and Non-Trophic Interactions in a Biodiversity Experiment Assessed by Next-Generation Sequencing , 2016, PloS one.
[13] Jonathan J. Borrelli. Selection against instability: stable subgraphs are most frequent in empirical food webs , 2015 .
[14] Miguel G. Matias,et al. Inferring biotic interactions from proxies. , 2015, Trends in ecology & evolution.
[15] D. Bates,et al. Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.
[16] J. San-Miguel-Ayanz,et al. The Babe Ruth Algorithm: a fast, unbiased procedure to randomize presence-absence data matrices with fixed row and column totals , 2014, 1404.3466.
[17] N. Mouquet,et al. Empirical Evaluation of Neutral Interactions in Host-Parasite Networks , 2014, The American Naturalist.
[18] Dominique Gravel,et al. Beyond species: why ecological interaction networks vary through space and time , 2014, bioRxiv.
[19] Neo D. Martinez,et al. Food webs: reconciling the structure and function of biodiversity. , 2012, Trends in ecology & evolution.
[20] G. Daily,et al. Biodiversity loss and its impact on humanity , 2012, Nature.
[21] Travis Ingram,et al. Stability and persistence of food webs with omnivory: Is there a general pattern? , 2012 .
[22] Michael Rzanny,et al. Complexity of multitrophic interactions in a grassland ecosystem depends on plant species diversity. , 2012, The Journal of animal ecology.
[23] Bang Wong,et al. Points of view: Color blindness , 2011, Nature Methods.
[24] M. Lange,et al. Bottom-up effects of plant diversity on multitrophic interactions in a biodiversity experiment , 2010, Nature.
[25] J. Soussana,et al. Diversity Promotes Temporal Stability across Levels of Ecosystem Organization in Experimental Grasslands , 2010, PloS one.
[26] J. Lamarque,et al. Global Biodiversity: Indicators of Recent Declines , 2010, Science.
[27] Jordi Bascompte,et al. Understanding food-web persistence from local to global scales. , 2010, Ecology letters.
[28] D. Tilman,et al. Plant species loss decreases arthropod diversity and shifts trophic structure. , 2009, Ecology letters.
[29] Stefano Allesina,et al. Parasites in food webs: the ultimate missing links , 2008, Ecology letters.
[30] 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.
[31] L. Amaral,et al. Quantitative analysis of the local structure of food webs. , 2007, Journal of theoretical biology.
[32] P. Herman,et al. Persistence despite omnivory : benthic communities and the discrepancy between theory and observation , 2006 .
[33] Jordi Bascompte,et al. SIMPLE TROPHIC MODULES FOR COMPLEX FOOD WEBS , 2005 .
[34] Andre Levchenko,et al. Dynamic Properties of Network Motifs Contribute to Biological Network Organization , 2005, PLoS biology.
[35] S. Shen-Orr,et al. Superfamilies of Evolved and Designed Networks , 2004, Science.
[36] William B. Kristan,et al. Faculty Opinions recommendation of Network motifs: simple building blocks of complex networks. , 2002 .
[37] S. Shen-Orr,et al. Network motifs: simple building blocks of complex networks. , 2002, Science.
[38] Neo D. Martinez,et al. Network structure and biodiversity loss in food webs: robustness increases with connectance , 2002, Ecology Letters.
[39] R. Denno,et al. INTRAGUILD PREDATION DIMINISHED IN COMPLEX-STRUCTURED VEGETATION: IMPLICATIONS FOR PREY SUPPRESSION , 2002 .
[40] S. Diehl,et al. INTRAGUILD PREY SUFFER FROM ENRICHMENT OF THEIR RESOURCES: A MICROCOSM EXPERIMENT WITH CILIATES , 2001 .
[41] K. McCann. The diversity–stability debate , 2000, Nature.
[42] Neo D. Martinez,et al. Simple rules yield complex food webs , 2000, Nature.
[43] W. Fagan,et al. Omnivory as a Stabilizing Feature of Natural Communities , 1997, The American Naturalist.
[44] M. Nyffeler,et al. How Spiders Make a Living , 1994 .
[45] G. Benz,et al. Foraging ecology and predatory importance of a guild of orb‐weaving spiders in a grassland habitat 1 , 1989 .
[46] O. N. Rood,et al. ON COLOR BLINDNESS. , 1898, Science.
[47] Nico Eisenhauer,et al. Towards an integration of biodiversity-ecosystem functioning and food web theory to evaluate relationships between multiple ecosystem services , 2015 .
[48] Kevin Gross,et al. Plant diversity and the stability of foodwebs. , 2011, Ecology letters.
[49] Gábor Csárdi,et al. The igraph software package for complex network research , 2006 .
[50] E. Schulze,et al. The role of biodiversity for element cycling and trophic interactions: an experimental approach in a grassland community , 2004 .
[51] G. Polis,et al. THE ECOLOGY AND EVOLUTION OF INTRAGUILD PREDATION: Potential Competitors That Eat Each Other , 1989 .