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Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest

BACKGROUND: Disturbances are crucial in determining forest biodiversity, dynamics, and ecosystem functions. Surface fire is a significant disturbance in tropical forests, but research on the effect of surface fire on structuring species and functional composition in a community through time remains...

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Autores principales: Kaewsong, Kanokporn, Chang-Yang, Chia-Hao, Bunyavejchewin, Sarayudh, Kraichak, Ekaphan, Yang, Jie, Sun, Zhenhua, Zhang, Caicai, Li, Wenfei, Lin, Luxiang, Sun, I-Fang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104091/
https://www.ncbi.nlm.nih.gov/pubmed/35573170
http://dx.doi.org/10.7717/peerj.13270
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author Kaewsong, Kanokporn
Chang-Yang, Chia-Hao
Bunyavejchewin, Sarayudh
Kraichak, Ekaphan
Yang, Jie
Sun, Zhenhua
Zhang, Caicai
Li, Wenfei
Lin, Luxiang
Sun, I-Fang
author_facet Kaewsong, Kanokporn
Chang-Yang, Chia-Hao
Bunyavejchewin, Sarayudh
Kraichak, Ekaphan
Yang, Jie
Sun, Zhenhua
Zhang, Caicai
Li, Wenfei
Lin, Luxiang
Sun, I-Fang
author_sort Kaewsong, Kanokporn
collection PubMed
description BACKGROUND: Disturbances are crucial in determining forest biodiversity, dynamics, and ecosystem functions. Surface fire is a significant disturbance in tropical forests, but research on the effect of surface fire on structuring species and functional composition in a community through time remains scarce. Using a 20-year dataset of tree demography in a seasonal evergreen tropical forest in Thailand, we specifically addressed two essential questions: (1) What is the pattern of temporal turnover in species and functional composition in a community with frequent fire disturbance? (2) How did the temporal turnover vary with tree size? METHODS: We analyzed species compositional and functional temporal turnovers in four different tree size classes among five tree censuses. We quantified species turnover by calculating Bray-Curtis dissimilarity, and investigated its underlying mechanisms by comparing pairwise dissimilarity of functional traits with simulations from null models. If fire disturbances contribute more to a stochastic process, the functional composition would display a random pattern. However, if they contribute more towards a deterministic process, the functional composition should reveal a non-random pattern. RESULTS: Over 20 years (1994–2014), we observed changes in species composition, whereas functional composition remained relatively stable. The temporal turnover patterns of species and functional compositions varied with tree sizes. In particular, temporal functional turnover shifted very little for large trees, suggesting that changes in species composition of larger trees are contributed by species with similar functional traits through time. The temporal functional composition turnovers of smaller trees (DBH ≤ 5 cm) were mostly at random. We detected a higher functional turnover than expected by null models in some quadrats throughout the 50-ha study plot, and their observed turnover varied with diameter classes. CONCLUSIONS: Species compositional changes were caused by changes in the abundance of species with similar functional traits through time. Temporal functional turnover in small trees was random in most quadrats, suggesting that the recruits came from the equal proportions of surviving trees and new individuals of fast-growing species, which increased rapidly after fires. On the other hand, functional composition in big trees was more likely determined by surviving trees which maintained higher functional similarities than small trees through time. Fire disturbance is important for ecosystem functions, as changing forest fire frequency may alter forest turnover, particularly in functional composition in the new recruits of this forest.
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spelling pubmed-91040912022-05-14 Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest Kaewsong, Kanokporn Chang-Yang, Chia-Hao Bunyavejchewin, Sarayudh Kraichak, Ekaphan Yang, Jie Sun, Zhenhua Zhang, Caicai Li, Wenfei Lin, Luxiang Sun, I-Fang PeerJ Biodiversity BACKGROUND: Disturbances are crucial in determining forest biodiversity, dynamics, and ecosystem functions. Surface fire is a significant disturbance in tropical forests, but research on the effect of surface fire on structuring species and functional composition in a community through time remains scarce. Using a 20-year dataset of tree demography in a seasonal evergreen tropical forest in Thailand, we specifically addressed two essential questions: (1) What is the pattern of temporal turnover in species and functional composition in a community with frequent fire disturbance? (2) How did the temporal turnover vary with tree size? METHODS: We analyzed species compositional and functional temporal turnovers in four different tree size classes among five tree censuses. We quantified species turnover by calculating Bray-Curtis dissimilarity, and investigated its underlying mechanisms by comparing pairwise dissimilarity of functional traits with simulations from null models. If fire disturbances contribute more to a stochastic process, the functional composition would display a random pattern. However, if they contribute more towards a deterministic process, the functional composition should reveal a non-random pattern. RESULTS: Over 20 years (1994–2014), we observed changes in species composition, whereas functional composition remained relatively stable. The temporal turnover patterns of species and functional compositions varied with tree sizes. In particular, temporal functional turnover shifted very little for large trees, suggesting that changes in species composition of larger trees are contributed by species with similar functional traits through time. The temporal functional composition turnovers of smaller trees (DBH ≤ 5 cm) were mostly at random. We detected a higher functional turnover than expected by null models in some quadrats throughout the 50-ha study plot, and their observed turnover varied with diameter classes. CONCLUSIONS: Species compositional changes were caused by changes in the abundance of species with similar functional traits through time. Temporal functional turnover in small trees was random in most quadrats, suggesting that the recruits came from the equal proportions of surviving trees and new individuals of fast-growing species, which increased rapidly after fires. On the other hand, functional composition in big trees was more likely determined by surviving trees which maintained higher functional similarities than small trees through time. Fire disturbance is important for ecosystem functions, as changing forest fire frequency may alter forest turnover, particularly in functional composition in the new recruits of this forest. PeerJ Inc. 2022-05-10 /pmc/articles/PMC9104091/ /pubmed/35573170 http://dx.doi.org/10.7717/peerj.13270 Text en © 2022 Kaewsong et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Biodiversity
Kaewsong, Kanokporn
Chang-Yang, Chia-Hao
Bunyavejchewin, Sarayudh
Kraichak, Ekaphan
Yang, Jie
Sun, Zhenhua
Zhang, Caicai
Li, Wenfei
Lin, Luxiang
Sun, I-Fang
Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title_full Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title_fullStr Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title_full_unstemmed Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title_short Effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
title_sort effects of fire disturbance on species and functional compositions vary with tree sizes in a tropical dry forest
topic Biodiversity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104091/
https://www.ncbi.nlm.nih.gov/pubmed/35573170
http://dx.doi.org/10.7717/peerj.13270
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