Tropical forest succession increases tree taxonomic and functional richness but decreases evenness

IF 6.3 1区 环境科学与生态学 Q1 ECOLOGY Global Ecology and Biogeography Pub Date : 2024-06-08 DOI:10.1111/geb.13856
Masha T. van der Sande, Lourens Poorter, Géraldine Derroire, Mario Marcos do Espirito Santo, Madelon Lohbeck, Sandra C. Müller, Radika Bhaskar, Michiel van Breugel, Juan Manuel Dupuy-Rada, Sandra M. Durán, Catarina C. Jakovac, Horacio Paz, Danaë M. A. Rozendaal, Pedro Brancalion, Dylan Craven, Francisco Mora Ardilla, Jarcilene S. Almeida, Patricia Balvanera, Justin Becknell, Bryan Finegan, Ricardo Gomes César, José Luis Hernández-Stefanoni, Deborah Kennard, Susan G. Letcher, Erika Marín-Spiotta, Rodrigo Muñoz, Casandra Reyes-García, Lucía Sanaphre-Villanueva, Luis P. Utrera, Geraldo Wilson Fernandes, Francisco S. Álvarez, Jose Luis Andrade, Felipe Arreola, Vanessa Boukili, George A. L. Cabral, Jerome Chave, Robin Chazdon, Gabriel Colletta, Maria das Dores Magalhães Veloso, Ben de Jong, Edwin Lebrija-Trejos, Vanessa de Souza Moreno, Daisy H. Dent, Saara DeWalt, Elisa Díaz García, Yule Roberta Ferreira Nunes, Vanessa Granda, Jefferson Hall, Rodney Lobo, Omar Lopez, Miguel Martínez Ramos, Jorge A. Meave, Susana Ochoa-Gaona, Everardo V. S. B. Sampaio, Arturo Sanchez-Azofeifa, Heitor Mancini Teixeira, Marisol Toledo, Maria Uriarte, S. Joseph Wright, Kátia Zanini, Frans Bongers
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Here, we assess successional changes in taxonomic and functional richness, evenness and redundancy along gradients of climate, soil pH and forest cover.</p>\n </section>\n \n <section>\n \n <h3> Location</h3>\n \n <p>Neotropics.</p>\n </section>\n \n <section>\n \n <h3> Time period</h3>\n \n <p>Last 0–100 years.</p>\n </section>\n \n <section>\n \n <h3> Major taxa studied</h3>\n \n <p>Trees.</p>\n </section>\n \n <section>\n \n <h3> Methods</h3>\n \n <p>We used 22 forest chronosequence studies and 676 plots across the Neotropics to analyse successional changes in Hill's taxonomic and functional diversity of trees, and how these successional changes vary with continental-scale gradients in precipitation, soil pH and surrounding forest cover.</p>\n </section>\n \n <section>\n \n <h3> Results</h3>\n \n <p>Taxonomic and functional richness and functional redundancy increased, while taxonomic and functional evenness decreased over time. Functional richness and evenness changed strongly when not accounting for taxonomic richness, but changed more weakly after statistically accounting for taxonomic richness, indicating that changes in functional diversity are largely driven by taxonomic richness. Nevertheless, the successional increases in functional richness when correcting for taxonomic richness may indicate that environmental heterogeneity and limiting similarity increase during succession. The taxonomically-independent successional decreases in functional evenness may indicate that stronger filtering and competition select for dominant species with similar trait values, while many rare species and traits are added to the community. Such filtering and competition may also lead to increased functional redundancy. The changes in taxonomically-independent functional diversity varied with resource availability and were stronger in harsh, resource-poor environments, but weak in benign, productive environments. Hence, in resource-poor environments, environmental filtering and facilitation are important, whereas in productive environments, weaker abiotic filtering allows for high initial functional diversity and weak successional changes.</p>\n </section>\n \n <section>\n \n <h3> Main conclusion</h3>\n \n <p>We found that taxonomic and functional richness and functional redundancy increased and taxonomic and functional evenness decreased during succession, mainly caused by the increasing number of rare species and traits due to the arrival of new species and due to changing (a)biotic filters.</p>\n </section>\n </div>","PeriodicalId":176,"journal":{"name":"Global Ecology and Biogeography","volume":"33 8","pages":""},"PeriodicalIF":6.3000,"publicationDate":"2024-06-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/geb.13856","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Global Ecology and Biogeography","FirstCategoryId":"93","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1111/geb.13856","RegionNum":1,"RegionCategory":"环境科学与生态学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"ECOLOGY","Score":null,"Total":0}
引用次数: 0

Abstract

Aim

Successional changes in functional diversity provide insights into community assembly by indicating how species are filtered into local communities based on their traits. Here, we assess successional changes in taxonomic and functional richness, evenness and redundancy along gradients of climate, soil pH and forest cover.

Location

Neotropics.

Time period

Last 0–100 years.

Major taxa studied

Trees.

Methods

We used 22 forest chronosequence studies and 676 plots across the Neotropics to analyse successional changes in Hill's taxonomic and functional diversity of trees, and how these successional changes vary with continental-scale gradients in precipitation, soil pH and surrounding forest cover.

Results

Taxonomic and functional richness and functional redundancy increased, while taxonomic and functional evenness decreased over time. Functional richness and evenness changed strongly when not accounting for taxonomic richness, but changed more weakly after statistically accounting for taxonomic richness, indicating that changes in functional diversity are largely driven by taxonomic richness. Nevertheless, the successional increases in functional richness when correcting for taxonomic richness may indicate that environmental heterogeneity and limiting similarity increase during succession. The taxonomically-independent successional decreases in functional evenness may indicate that stronger filtering and competition select for dominant species with similar trait values, while many rare species and traits are added to the community. Such filtering and competition may also lead to increased functional redundancy. The changes in taxonomically-independent functional diversity varied with resource availability and were stronger in harsh, resource-poor environments, but weak in benign, productive environments. Hence, in resource-poor environments, environmental filtering and facilitation are important, whereas in productive environments, weaker abiotic filtering allows for high initial functional diversity and weak successional changes.

Main conclusion

We found that taxonomic and functional richness and functional redundancy increased and taxonomic and functional evenness decreased during succession, mainly caused by the increasing number of rare species and traits due to the arrival of new species and due to changing (a)biotic filters.

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热带森林演替增加了树木分类和功能的丰富性,但降低了均匀度
功能多样性的演替变化表明了物种是如何根据其特征被筛选到当地群落中的,从而为群落的组合提供了洞察力。在这里,我们评估了沿气候、土壤酸碱度和森林植被梯度的分类和功能丰富度、均匀度和冗余度的演替变化。
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来源期刊
Global Ecology and Biogeography
Global Ecology and Biogeography 环境科学-生态学
CiteScore
12.10
自引率
3.10%
发文量
170
审稿时长
3 months
期刊介绍: Global Ecology and Biogeography (GEB) welcomes papers that investigate broad-scale (in space, time and/or taxonomy), general patterns in the organization of ecological systems and assemblages, and the processes that underlie them. In particular, GEB welcomes studies that use macroecological methods, comparative analyses, meta-analyses, reviews, spatial analyses and modelling to arrive at general, conceptual conclusions. Studies in GEB need not be global in spatial extent, but the conclusions and implications of the study must be relevant to ecologists and biogeographers globally, rather than being limited to local areas, or specific taxa. Similarly, GEB is not limited to spatial studies; we are equally interested in the general patterns of nature through time, among taxa (e.g., body sizes, dispersal abilities), through the course of evolution, etc. Further, GEB welcomes papers that investigate general impacts of human activities on ecological systems in accordance with the above criteria.
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