Decomposing functional trait associations in a Chinese subtropical forest
暂无分享,去创建一个
M. Kéry | B. Schmid | P. Niklaus | Xuefei Li | Ke-quan Pei
[1] D. Ackerly,et al. Leaf size, specific leaf area and microhabitat distribution of chaparral woody plants: contrasting patterns in species level and community level analyses , 2002, Oecologia.
[2] H. Zeng,et al. Economic strategies of plant absorptive roots vary with root diameter , 2016 .
[3] N. Anten,et al. A plant economics spectrum in Mediterranean forests along environmental gradients: is there coordination among leaf, stem and root traits? , 2016 .
[4] T. M. Bezemer,et al. Biodiversity increases the resistance of ecosystem productivity to climate extremes , 2015, Nature.
[5] P. Reich. The world‐wide ‘fast–slow’ plant economics spectrum: a traits manifesto , 2014 .
[6] M. Lange,et al. A comparison of the strength of biodiversity effects across multiple functions , 2013, Oecologia.
[7] P. Fine,et al. Leaf, stem and root tissue strategies across 758 Neotropical tree species , 2012 .
[8] Andrew Gonzalez,et al. The functional role of producer diversity in ecosystems. , 2011, American journal of botany.
[9] J. Maron,et al. Soil fungal pathogens and the relationship between plant diversity and productivity. , 2011, Ecology letters.
[10] Frans Bongers,et al. Ecological differentiation in xylem cavitation resistance is associated with stem and leaf structural traits. , 2011, Plant, cell & environment.
[11] Christopher Baraloto,et al. Decoupled leaf and stem economics in rain forest trees. , 2010, Ecology letters.
[12] J. Cornelissen,et al. Evidence of the ‘plant economics spectrum’ in a subarctic flora , 2010 .
[13] T. Brodribb,et al. Leaf hydraulic evolution led a surge in leaf photosynthetic capacity during early angiosperm diversification. , 2010, Ecology letters.
[14] Jingyun Fang,et al. Taxonomic, phylogenetic, and environmental trade-offs between leaf productivity and persistence. , 2009, Ecology.
[15] J. Chave,et al. Towards a Worldwide Wood Economics Spectrum 2 . L E a D I N G D I M E N S I O N S I N W O O D F U N C T I O N , 2022 .
[16] David D. Ackerly,et al. Community assembly and shifts in plant trait distributions across an environmental gradient in coastal California , 2009 .
[17] Campbell O. Webb,et al. Bioinformatics Applications Note Phylocom: Software for the Analysis of Phylogenetic Community Structure and Trait Evolution , 2022 .
[18] P. Campanello,et al. Coordination between water-transport efficiency and photosynthetic capacity in canopy tree species at different growth irradiances. , 2008, Tree physiology.
[19] Zehao Shen,et al. Ecological applications of multilevel analysis of variance. , 2007, Ecology.
[20] Campbell O. Webb,et al. Relationships among ecologically important dimensions of plant trait variation in seven neotropical forests. , 2007, Annals of botany.
[21] Brian J Enquist,et al. Ecological and evolutionary determinants of a key plant functional trait: wood density and its community-wide variation across latitude and elevation. , 2007, American journal of botany.
[22] Campbell O. Webb,et al. Regional and phylogenetic variation of wood density across 2456 Neotropical tree species. , 2006, Ecological applications : a publication of the Ecological Society of America.
[23] P. Balvanera,et al. Quantifying the evidence for biodiversity effects on ecosystem functioning and services. , 2006, Ecology letters.
[24] Frans Bongers,et al. Leaf traits are good predictors of plant performance across 53 rain forest species. , 2006, Ecology.
[25] Stephen P Hubbell,et al. Neutral theory and the evolution of ecological equivalence. , 2006, Ecology.
[26] J. P. Grime,et al. Trait convergence and trait divergence in herbaceous plant communities: Mechanisms and consequences , 2006 .
[27] A. Gelman. Analysis of variance: Why it is more important than ever? , 2005, math/0504499.
[28] Andrew Gelman,et al. R2WinBUGS: A Package for Running WinBUGS from R , 2005 .
[29] G. Goldstein,et al. Leaf photosynthetic traits scale with hydraulic conductivity and wood density in Panamanian forest canopy trees , 2004, Oecologia.
[30] Sean C. Thomas,et al. The worldwide leaf economics spectrum , 2004, Nature.
[31] David D. Ackerly,et al. FUNCTIONAL STRATEGIES OF CHAPARRAL SHRUBS IN RELATION TO SEASONAL WATER DEFICIT AND DISTURBANCE , 2004 .
[32] Korbinian Strimmer,et al. APE: Analyses of Phylogenetics and Evolution in R language , 2004, Bioinform..
[33] D. Ackerly. Community Assembly, Niche Conservatism, and Adaptive Evolution in Changing Environments , 2003, International Journal of Plant Sciences.
[34] T. Garland,et al. TESTING FOR PHYLOGENETIC SIGNAL IN COMPARATIVE DATA: BEHAVIORAL TRAITS ARE MORE LABILE , 2003, Evolution; international journal of organic evolution.
[35] T. Brodribb,et al. Stem hydraulic supply is linked to leaf photosynthetic capacity: evidence from New Caledonian and Tasmanian rainforests , 2000 .
[36] Chen Chang. The Dujiangyan Region──Pivot sector of assemblage, differentiation and maintenance of biodiversity in northern part of Hengduan Mountain , 2000 .
[37] Paul A. Keddy,et al. Community Assembly Rules, Morphological Dispersion, and the Coexistence of Plant Species , 1998 .
[38] Sandra Díaz,et al. Plant functional traits and environmental filters at a regional scale , 1998 .
[39] P. Reich,et al. From tropics to tundra: global convergence in plant functioning. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[40] Walter R. Gilks,et al. A Language and Program for Complex Bayesian Modelling , 1994 .
[41] F. Bazzaz,et al. Crown Construction, Leaf Dynamics, and Carbon Gain in Two Perennials with Contrasting Architecture , 1994 .
[42] David Tilman,et al. Limiting Similarity in Mechanistic and Spatial Models of Plant Competition in Heterogeneous Environments , 1994, The American Naturalist.
[43] P. Reich,et al. Leaf Life‐Span in Relation to Leaf, Plant, and Stand Characteristics among Diverse Ecosystems , 1992 .
[44] F. Stuart Chapin,et al. The Ecology and Economics of Storage in Plants , 1990 .
[45] Graham Bell,et al. A Comparative Method , 1989, The American Naturalist.
[46] John L. Harper,et al. Clonal growth in grassland perennials. I: Density and pattern-dependent competition between plants with different growth forms , 1985 .
[47] J. Felsenstein. Phylogenies and the Comparative Method , 1985, The American Naturalist.
[48] F. Stuart Chapin,et al. Seasonal Changes in Nitrogen and Phosphorus Fractions and Autumn Retranslocation in Evergreen and Deciduous Taiga Trees , 1983 .
[49] R. Macarthur,et al. The Limiting Similarity, Convergence, and Divergence of Coexisting Species , 1967, The American Naturalist.
[50] J. Harper. A Darwinian Approach to Plant Ecology , 1967 .