What drives phylogenetic and trait clustering on islands?
暂无分享,去创建一个
[1] M. Cadotte,et al. Phylogenetic and functional clustering illustrate the roles of adaptive radiation and dispersal filtering in jointly shaping late-Quaternary mammal assemblages on oceanic islands. , 2022, Ecology letters.
[2] R. Didham,et al. Community re‐assembly and divergence of woody plant traits in an island–mainland system after more than 50 years of regeneration , 2021, Diversity and Distributions.
[3] R. Didham,et al. Nonlinear thresholds in the effects of island area on functional diversity in woody plant communities , 2021, Journal of Ecology.
[4] Pille Gerhold,et al. Environment and evolutionary history depict phylogenetic alpha and beta diversity in the Atlantic coastal white‐sand woodlands , 2020, Journal of Vegetation Science.
[5] R. Ricklefs,et al. Phylogenetic dispersion and diversity in regional assemblages of seed plants in China , 2019, Proceedings of the National Academy of Sciences.
[6] N. J. Cordeiro,et al. The effects of habitat loss and fragmentation on plant functional traits and functional diversity: what do we know so far? , 2019, Oecologia.
[7] H. Qian,et al. V.PhyloMaker: an R package that can generate very large phylogenies for vascular plants , 2019, Ecography.
[8] D. Coomes,et al. Larger fragments have more late‐successional species of woody plants than smaller fragments after 50 years of secondary succession , 2018, Journal of Ecology.
[9] M. Vellend,et al. High beta diversity among small islands is due to environmental heterogeneity rather than ecological drift , 2018, Journal of Biogeography.
[10] M. Ashton,et al. Environmental filtering limits functional diversity during succession in a seasonally wet tropical secondary forest , 2018 .
[11] Stephen A. Smith,et al. Constructing a broadly inclusive seed plant phylogeny. , 2018, American journal of botany.
[12] Kalle Ruokolainen,et al. Phylogenetic classification of the world’s tropical forests , 2018, Proceedings of the National Academy of Sciences.
[13] R. Aarde,et al. Functional diversity mediates contrasting direct and indirect effects of fragmentation on below- and above-ground carbon stocks of coastal dune forests , 2018 .
[14] Vito M. R. Muggeo,et al. Interval estimation for the breakpoint in segmented regression: a smoothed score‐based approach , 2017 .
[15] J. Zimmerman,et al. The role of functional uniqueness and spatial aggregation in explaining rarity in trees , 2017 .
[16] M. Cadotte,et al. Should Environmental Filtering be Abandoned? , 2017, Trends in ecology & evolution.
[17] M. Cadotte,et al. Functional and phylogenetic structure of island bird communities , 2017, The Journal of animal ecology.
[18] M. Rödel,et al. Functional diversity in a fragmented landscape — Habitat alterations affect functional trait composition of frog assemblages in Madagascar , 2017 .
[19] Susanne A. Fritz,et al. A guide to phylogenetic metrics for conservation, community ecology and macroecology , 2016, Biological reviews of the Cambridge Philosophical Society.
[20] K. Feeley,et al. Habitat Fragmentation Drives Plant Community Assembly Processes across Life Stages , 2016, PloS one.
[21] M. Cianciaruso,et al. Functional and phylogenetic structure of forest and savanna bird assemblages across spatial scales , 2016 .
[22] M. Cadotte,et al. Changes in the dominant assembly mechanism drive species loss caused by declining resources. , 2016, Ecology letters.
[23] Alice C Hughes,et al. Title Erratum to : Habitat fragmentation and biodiversity conservation : key findings and future challenges , 2015 .
[24] William D. Pearse,et al. Pez: Phylogenetics for the Environmental Sciences , 2015, Bioinform..
[25] Nathan J B Kraft,et al. Community assembly, coexistence and the environmental filtering metaphor , 2015 .
[26] Ellen I. Damschen,et al. Habitat fragmentation and its lasting impact on Earth’s ecosystems , 2015, Science Advances.
[27] F. Bello,et al. Different effects of elevation, habitat fragmentation and grazing management on the functional, phylogenetic and taxonomic structure of mountain grasslands , 2015 .
[28] Susanne A. Fritz,et al. Functional and phylogenetic diversity and assemblage structure of frugivorous birds along an elevational gradient in the tropical Andes , 2014 .
[29] G. Decocq,et al. Evidence for a direct negative effect of habitat fragmentation on forest herb functional diversity , 2014, Landscape Ecology.
[30] David C. Tank,et al. Three keys to the radiation of angiosperms into freezing environments , 2013, Nature.
[31] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[32] Florian Jeltsch,et al. Plant functional traits and community assembly along interacting gradients of productivity and fragmentation , 2013 .
[33] S. Walker,et al. The ecology of differences: assessing community assembly with trait and evolutionary distances. , 2013, Ecology letters.
[34] J. HilleRisLambers,et al. Rethinking Community Assembly through the Lens of Coexistence Theory , 2012 .
[35] Omri Allouche,et al. Area–heterogeneity tradeoff and the diversity of ecological communities , 2012, Proceedings of the National Academy of Sciences.
[36] K. Gaston. Ecology: The importance of being rare , 2012, Nature.
[37] Jianguo Wu,et al. Richness and composition of plants and birds on land‐bridge islands: effects of island attributes and differential responses of species groups , 2012 .
[38] David L. Erickson,et al. The Contribution of Rare Species to Community Phylogenetic Diversity across a Global Network of Forest Plots , 2012, The American Naturalist.
[39] M. Mayfield,et al. Opposing effects of competitive exclusion on the phylogenetic structure of communities. , 2010, Ecology letters.
[40] Campbell O. Webb,et al. Picante: R tools for integrating phylogenies and ecology , 2010, Bioinform..
[41] É. Thébault,et al. Island Species Richness Increases with Habitat Diversity , 2009, The American Naturalist.
[42] R. Gardner,et al. Spatial processes that maintain biodiversity in plant communities , 2008 .
[43] Jonathan M. Chase,et al. Drought mediates the importance of stochastic community assembly , 2007, Proceedings of the National Academy of Sciences.
[44] Robert M. Ewers,et al. Continuous response functions for quantifying the strength of edge effects , 2006 .
[45] C. Revenga,et al. Fragmentation and Flow Regulation of the World's Large River Systems , 2005, Science.
[46] D. Ackerly,et al. Adaptation, Niche Conservatism, and Convergence: Comparative Studies of Leaf Evolution in the California Chaparral , 2004, The American Naturalist.
[47] T. Garland,et al. TESTING FOR PHYLOGENETIC SIGNAL IN COMPARATIVE DATA: BEHAVIORAL TRAITS ARE MORE LABILE , 2003, Evolution; international journal of organic evolution.
[48] Campbell O. Webb,et al. Phylogenies and Community Ecology , 2002 .
[49] M. Pagel. Inferring the historical patterns of biological evolution , 1999, Nature.
[50] B. Noon,et al. Habitat fragmentation , 1999, Oryx.
[51] D. Tilman. Resource competition and community structure. , 1983, Monographs in population biology.
[52] R. Macarthur. Mathematical Ecology and Its Place among the Sciences. (Book Reviews: Geographical Ecology. Patterns in the Distribution of Species) , 1974 .
[53] R. Macarthur,et al. The Limiting Similarity, Convergence, and Divergence of Coexisting Species , 1967, The American Naturalist.