Multiple facets of biodiversity drive the diversity–stability relationship
暂无分享,去创建一个
Nadejda A. Soudzilovskaia | P. Reich | D. Tilman | B. Wilsey | N. Buchmann | J. Kattge | M. Bahn | J. Cornelissen | G. Bönisch | B. Cerabolini | A. Hector | J. Craine | Melinda D. Smith | C. Beierkuhnlein | N. Eisenhauer | A. Weigelt | C. Roscher | J. Griffin | B. Schamp | F. Isbell | H. W. Polley | N. Lemoine | P. Manning | J. Catford | S. Meyer | A. Ebeling | Y. Hautier | J. Hines | J. Ruijven | D. Craven | V. Minden | A. Jentsch | V. Onipchenko | J. van Ruijven | J. Kreyling | W. Pearse | Chaeho Byun | Enrica de Luca | V. Lanta | E. Luca
[1] J. P. Grime,et al. Evidence for the Existence of Three Primary Strategies in Plants and Its Relevance to Ecological and Evolutionary Theory , 1977, The American Naturalist.
[2] S. McNaughton,et al. Stability and diversity of ecological communities , 1978, Nature.
[3] R. May,et al. Stability and Complexity in Model Ecosystems , 1976, IEEE Transactions on Systems, Man, and Cybernetics.
[4] J. Downing,et al. Biodiversity and stability in grasslands , 1996, Nature.
[5] M. Loreau,et al. Biodiversity and ecosystem productivity in a fluctuating environment: the insurance hypothesis. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[6] D. Tilman. THE ECOLOGICAL CONSEQUENCES OF CHANGES IN BIODIVERSITY: A SEARCH FOR GENERAL PRINCIPLES101 , 1999 .
[7] David Tilman,et al. Biodiversity, Stability, and Productivity in Competitive Communities , 2000, The American Naturalist.
[8] S. Díaz,et al. Vive la différence: plant functional diversity matters to ecosystem processes , 2001 .
[9] Michel Loreau,et al. Partitioning selection and complementarity in biodiversity experiments , 2001, Nature.
[10] Campbell O. Webb,et al. Phylogenies and Community Ecology , 2002 .
[11] D. Tilman,et al. Effects of grassland plant species diversity, abundance, and composition on foliar fungal disease , 2002 .
[12] David R. Anderson,et al. Model selection and multimodel inference : a practical information-theoretic approach , 2003 .
[13] Sean C. Thomas,et al. The worldwide leaf economics spectrum , 2004, Nature.
[14] B. Wilsey,et al. Realistically Low Species Evenness Does Not Alter Grassland Species-Richness-Productivity Relationships , 2004 .
[15] David Tilman,et al. Niche differences in phenology and rooting depth promote coexistence with a dominant C4 bunchgrass , 2005, Oecologia.
[16] P. Balvanera,et al. Quantifying the evidence for biodiversity effects on ecosystem functioning and services. , 2006, Ecology letters.
[17] P. Reich,et al. Biodiversity and ecosystem stability in a decade-long grassland experiment , 2006, Nature.
[18] S. Carpenter,et al. Stability and Diversity of Ecosystems , 2007, Science.
[19] J. P. Grime. Plant strategy theories: a comment on Craine (2005) , 2007 .
[20] M. Loreau,et al. Species Synchrony and Its Drivers: Neutral and Nonneutral Community Dynamics in Fluctuating Environments , 2008, The American Naturalist.
[21] Sébastien Lê,et al. FactoMineR: An R Package for Multivariate Analysis , 2008 .
[22] A. Weigelt,et al. Does biodiversity increase spatial stability in plant community biomass? , 2008, Ecology letters.
[23] B. Wilsey,et al. Biodiversity maintenance mechanisms differ between native and novel exotic-dominated communities. , 2009, Ecology letters.
[24] Lin Jiang,et al. Different Effects of Species Diversity on Temporal Stability in Single‐Trophic and Multitrophic Communities , 2009, The American Naturalist.
[25] B. Schmid,et al. Diversity effects in early- and mid-successional species pools along a nitrogen gradient. , 2009, Ecology.
[26] Stephen A. Smith,et al. The Origins of C4 Grasslands: Integrating Evolutionary and Ecosystem Science , 2010, Science.
[27] F. Berendse,et al. Diversity enhances community recovery, but not resistance, after drought , 2010 .
[28] A. Troumbis,et al. General stabilizing effects of plant diversity on grassland productivity through population asynchrony and overyielding. , 2010, Ecology.
[29] Miguel Verdú,et al. Ecological interactions are evolutionarily conserved across the entire tree of life , 2010, Nature.
[30] P. Legendre,et al. A distance-based framework for measuring functional diversity from multiple traits. , 2010, Ecology.
[31] Tamara N. Romanuk,et al. Experimental design and the outcome and interpretation of diversity-stability relations , 2011 .
[32] R. Proulx,et al. Identifying population‐ and community‐level mechanisms of diversity–stability relationships in experimental grasslands , 2011 .
[33] M. Scheffer,et al. Soil microbes drive the classic plant diversity-productivity pattern. , 2011, Ecology.
[34] S. Higgins,et al. TRY – a global database of plant traits , 2011, Global Change Biology.
[35] P. Reich,et al. High plant diversity is needed to maintain ecosystem services , 2011, Nature.
[36] Markus Fischer,et al. More diverse plant communities have higher functioning over time due to turnover in complementary dominant species , 2011, Proceedings of the National Academy of Sciences.
[37] J. Maron,et al. Soil fungal pathogens and the relationship between plant diversity and productivity. , 2011, Ecology letters.
[38] Shahid Naeem,et al. Functional and phylogenetic diversity as predictors of biodiversity--ecosystem-function relationships. , 2011, Ecology.
[39] Zhenyuan Lu,et al. The taxonomic name resolution service: an online tool for automated standardization of plant names , 2013, BMC Bioinformatics.
[40] D. Tilman,et al. Phylogenetic diversity promotes ecosystem stability , 2012 .
[41] P. Reich,et al. Impacts of Biodiversity Loss Escalate Through Time as Redundancy Fades , 2012, Science.
[42] Campbell O. Webb,et al. Evolutionary tools for phytosanitary risk analysis: phylogenetic signal as a predictor of host range of plant pests and pathogens , 2012, Evolutionary applications.
[43] Nathaniel A. Brunsell,et al. Timing of climate variability and grassland productivity , 2012, Proceedings of the National Academy of Sciences.
[44] Katharine N. Suding,et al. Inferring community assembly mechanisms from functional diversity patterns: the importance of multiple assembly processes , 2012 .
[45] B. Wilsey,et al. Simple plant traits explain functional group diversity decline in novel grassland communities of Texas , 2013, Plant Ecology.
[46] E. Schulze,et al. Using Plant Functional Traits to Explain Diversity–Productivity Relationships , 2012, PloS one.
[47] L. Sack,et al. The determinants of leaf turgor loss point and prediction of drought tolerance of species and biomes: a global meta-analysis. , 2012, Ecology letters.
[48] K. Reinhart,et al. Predicting plant responses to mycorrhizae: integrating evolutionary history and plant traits. , 2012, Ecology letters.
[49] B. Wilsey,et al. Plant functional traits improve diversity-based predictions of temporal stability of grassland productivity , 2013 .
[50] J. Fox,et al. Species Richness and the Temporal Stability of Biomass Production: A New Analysis of Recent Biodiversity Experiments , 2013, The American Naturalist.
[51] D. Tilman,et al. Predicting ecosystem stability from community composition and biodiversity. , 2013, Ecology letters.
[52] Leishman,et al. Data from: Three keys to the radiation of angiosperms into freezing environments , 2013 .
[53] C. Goodess. How is the frequency, location and severity of extreme events likely to change up to 2060? , 2013 .
[54] P. Reich,et al. New handbook for standardised measurement of plant functional traits worldwide , 2013 .
[55] Peter B. Adler,et al. Finding generality in ecology: a model for globally distributed experiments , 2014 .
[56] David C. Tank,et al. Three keys to the radiation of angiosperms into freezing environments , 2013, Nature.
[57] Nathan J B Kraft,et al. Phylogenetic relatedness and the determinants of competitive outcomes. , 2014, Ecology letters.
[58] Ellen I. Damschen,et al. Eutrophication weakens stabilizing effects of diversity in natural grasslands , 2014, Nature.
[59] F. Bello,et al. Plant Functional Traits as Determinants of Population Stability , 2014 .
[60] P. Reich. The world‐wide ‘fast–slow’ plant economics spectrum: a traits manifesto , 2014 .
[61] A. Knapp,et al. Resistance and resilience of a grassland ecosystem to climate extremes , 2014 .
[62] A. Hector,et al. Drought survival of tropical tree seedlings enhanced by non-structural carbohydrate levels , 2014 .
[63] T. L. Dickson,et al. Biotic mechanisms of community stability shift along a precipitation gradient. , 2014, Ecology.
[64] Eric Garnier,et al. Are trait‐based species rankings consistent across data sets and spatial scales? , 2014 .
[65] M. Cadotte. Phylogenetic diversity and productivity: gauging interpretations from experiments that do not manipulate phylogenetic diversity , 2015 .
[66] Yong Jiang,et al. Environmental changes drive the temporal stability of semi‐arid natural grasslands through altering species asynchrony , 2015 .
[67] J. Belnap,et al. Pulse-drought atop press-drought: unexpected plant responses and implications for dryland ecosystems , 2015, Oecologia.
[68] E. Borer,et al. Anthropogenic environmental changes affect ecosystem stability via biodiversity , 2015, Science.
[69] William D. Pearse,et al. Pez: Phylogenetics for the Environmental Sciences , 2015, Bioinform..
[70] S. Polasky,et al. The biodiversity-dependent ecosystem service debt. , 2015, Ecology letters.
[71] Owen L. Petchey,et al. Biodiversity and Resilience of Ecosystem Functions. , 2015, Trends in ecology & evolution.
[72] Christian Wirth,et al. From pots to plots: hierarchical trait‐based prediction of plant performance in a mesic grassland , 2016 .
[73] Christopher Baraloto,et al. A global meta-analysis of the relative extent of intraspecific trait variation in plant communities. , 2015, Ecology letters.
[74] R. Magarey,et al. Phylogenetic structure and host abundance drive disease pressure in communities , 2015, Nature.
[75] Todd H. Oakley,et al. Species richness, but not phylogenetic diversity, influences community biomass production and temporal stability in a re-examination of 16 grassland biodiversity studies , 2015 .
[76] T. M. Bezemer,et al. Biodiversity increases the resistance of ecosystem productivity to climate extremes , 2015, Nature.
[77] Jonathan S. Lefcheck,et al. piecewiseSEM: Piecewise structural equation modelling in r for ecology, evolution, and systematics , 2015, 1509.01845.
[78] F. Maestre,et al. Functional diversity enhances the resistance of ecosystem multifunctionality to aridity in Mediterranean drylands. , 2015, The New phytologist.
[79] Nico Eisenhauer,et al. Biodiversity–ecosystem function experiments reveal the mechanisms underlying the consequences of biodiversity change in real world ecosystems , 2016 .
[80] Lindsay A. Turnbull,et al. Understanding the value of plant diversity for ecosystem functioning through niche theory , 2016, Proceedings of the Royal Society B: Biological Sciences.
[81] P. Stott,et al. How climate change affects extreme weather events , 2016, Science.
[82] M. Loreau,et al. Resilience, reactivity and variability: A mathematical comparison of ecological stability measures. , 2015, Journal of theoretical biology.
[83] Mike S. Fowler,et al. Navigating the complexity of ecological stability. , 2016, Ecology letters.
[84] Anthony R. Taylor,et al. Traits to stay, traits to move: a review of functional traits to assess sensitivity and adaptive capacity of temperate and boreal trees to climate change , 2016 .
[85] S. Naeem,et al. Biodiversity as a multidimensional construct: a review, framework and case study of herbivory's impact on plant biodiversity , 2016, Proceedings of the Royal Society B: Biological Sciences.
[86] Yiqi Luo,et al. Dual mechanisms regulate ecosystem stability under decade-long warming and hay harvest , 2016, Nature Communications.
[87] S. Wright,et al. The global spectrum of plant form and function , 2015, Nature.
[88] P. Reich,et al. Plant diversity effects on grassland productivity are robust to both nutrient enrichment and drought , 2016, Philosophical Transactions of the Royal Society B: Biological Sciences.
[89] Jens Kattge,et al. A global Fine-Root Ecology Database to address below-ground challenges in plant ecology. , 2017, The New phytologist.
[90] Lin Jiang,et al. Daytime warming lowers community temporal stability by reducing the abundance of dominant, stable species , 2017, Global change biology.
[91] Y. Bergeron,et al. Intraspecific variability in growth response to environmental fluctuations modulates the stabilizing effect of species diversity on forest growth , 2017 .
[92] H. Erickson,et al. Diversity-dependent temporal divergence of ecosystem functioning in experimental ecosystems , 2017, Nature Ecology & Evolution.
[93] Patrick L. Thompson,et al. Linking the influence and dependence of people on biodiversity across scales , 2017, Nature.
[94] M. Loreau,et al. Environmental responses, not species interactions, determine synchrony of dominant species in semiarid grasslands. , 2017, Ecology.
[95] T. Zlatanov,et al. Species interactions increase the temporal stability of community productivity in Pinus sylvestris–Fagus sylvatica mixtures across Europe , 2017 .
[96] J. Lepš,et al. Stabilizing effects in temporal fluctuations: management, traits, and species richness in high-diversity communities. , 2018, Ecology.
[97] E. Schulze,et al. Origin context of trait data matters for predictions of community performance in a grassland biodiversity experiment. , 2018, Ecology.
[98] A. Classen,et al. Mean annual precipitation predicts primary production resistance and resilience to extreme drought. , 2018, The Science of the total environment.