Climate and soil factors drive the functional and phylogenetic assembly of Qinghai-Tibetan grassland communities via multiple paths
•Climate is the most important factor shaping functional and phylogenetic grassland diversity.•Soil factors indirectly and weakly affect functional and phylogenetic community structure.•Temperature affects mainly the functional community structure of plant size traits.•Precipitation and humidity mai...
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Published in | Basic and applied ecology Vol. 83; pp. 109 - 117 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier GmbH
01.03.2025
Elsevier |
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Abstract | •Climate is the most important factor shaping functional and phylogenetic grassland diversity.•Soil factors indirectly and weakly affect functional and phylogenetic community structure.•Temperature affects mainly the functional community structure of plant size traits.•Precipitation and humidity mainly affects the leaf trait diversity and phylogenetic diversity.•Resource availability and environmental filters drive Tibetan grassland community assembly.
Elucidating the functional and phylogenetic community structures is essential for understanding coexistence of plant species and biodiversity within ecosystems. Despite their significance, the manner in which these structures change along environmental gradients has not been explored extensively. We estimated the phylogenetic diversity (PD) and community-weighted mean (CWM) and functional diversity (FD) values of four key functional traits in 558 grassland plots across the Qinghai-Tibetan Plateau (QTP) and assessed their relationship to climate and soil factors. Our results demonstrate that climate has a more pronounced direct impact on community structures than soil properties. Moreover, the indirect effect of climate through soil conditions does not significantly contribute to the observed patterns in functional and phylogenetic diversity. Annual and seasonal temperature was a reliable predictor of functional structure of plant or organ size traits, especially CWM of leaf size and CWM and FD of plant height. CWM and FD of most leaf traits and PD were correlated positively with multiple precipitation factors and humidity but negatively with sunshine hours. We highlight the importance of temperature, local resource availability and environmental filtering in governing the functional and phylogenetic structures of the QTP grassland communities. These findings have the potential to improve our predictions of climate change impacts on plant community assembly. |
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AbstractList | Elucidating the functional and phylogenetic community structures is essential for understanding coexistence of plant species and biodiversity within ecosystems. Despite their significance, the manner in which these structures change along environmental gradients has not been explored extensively. We estimated the phylogenetic diversity (PD) and community-weighted mean (CWM) and functional diversity (FD) values of four key functional traits in 558 grassland plots across the Qinghai-Tibetan Plateau (QTP) and assessed their relationship to climate and soil factors. Our results demonstrate that climate has a more pronounced direct impact on community structures than soil properties. Moreover, the indirect effect of climate through soil conditions does not significantly contribute to the observed patterns in functional and phylogenetic diversity. Annual and seasonal temperature was a reliable predictor of functional structure of plant or organ size traits, especially CWM of leaf size and CWM and FD of plant height. CWM and FD of most leaf traits and PD were correlated positively with multiple precipitation factors and humidity but negatively with sunshine hours. We highlight the importance of temperature, local resource availability and environmental filtering in governing the functional and phylogenetic structures of the QTP grassland communities. These findings have the potential to improve our predictions of climate change impacts on plant community assembly. •Climate is the most important factor shaping functional and phylogenetic grassland diversity.•Soil factors indirectly and weakly affect functional and phylogenetic community structure.•Temperature affects mainly the functional community structure of plant size traits.•Precipitation and humidity mainly affects the leaf trait diversity and phylogenetic diversity.•Resource availability and environmental filters drive Tibetan grassland community assembly. Elucidating the functional and phylogenetic community structures is essential for understanding coexistence of plant species and biodiversity within ecosystems. Despite their significance, the manner in which these structures change along environmental gradients has not been explored extensively. We estimated the phylogenetic diversity (PD) and community-weighted mean (CWM) and functional diversity (FD) values of four key functional traits in 558 grassland plots across the Qinghai-Tibetan Plateau (QTP) and assessed their relationship to climate and soil factors. Our results demonstrate that climate has a more pronounced direct impact on community structures than soil properties. Moreover, the indirect effect of climate through soil conditions does not significantly contribute to the observed patterns in functional and phylogenetic diversity. Annual and seasonal temperature was a reliable predictor of functional structure of plant or organ size traits, especially CWM of leaf size and CWM and FD of plant height. CWM and FD of most leaf traits and PD were correlated positively with multiple precipitation factors and humidity but negatively with sunshine hours. We highlight the importance of temperature, local resource availability and environmental filtering in governing the functional and phylogenetic structures of the QTP grassland communities. These findings have the potential to improve our predictions of climate change impacts on plant community assembly. |
Author | Wu, Xinyang Kang, Xiaomei Zhang, Aoran Liu, Yanjun Duan, Lijie Jiang, Jiachang Qi, Wei |
Author_xml | – sequence: 1 givenname: Xiaomei surname: Kang fullname: Kang, Xiaomei organization: State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China – sequence: 2 givenname: Yanjun surname: Liu fullname: Liu, Yanjun organization: State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China – sequence: 3 givenname: Xinyang surname: Wu fullname: Wu, Xinyang organization: State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China – sequence: 4 givenname: Lijie surname: Duan fullname: Duan, Lijie organization: Gansu Provincial Extension Station of Grassland Techniques, Lanzhou, 730000, China – sequence: 5 givenname: Jiachang surname: Jiang fullname: Jiang, Jiachang organization: Gansu Provincial Extension Station of Grassland Techniques, Lanzhou, 730000, China – sequence: 6 givenname: Aoran surname: Zhang fullname: Zhang, Aoran organization: State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China – sequence: 7 givenname: Wei orcidid: 0000-0003-0236-3983 surname: Qi fullname: Qi, Wei email: qiw@lzu.edu.cn organization: State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou, 730000, China |
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Keywords | Community assembly Qinghai-Tibetan grasslands Phylogenetic diversity Specific leaf area Seed mass Functional diversity |
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SubjectTerms | applied ecology China climate climate change Community assembly Functional diversity grasslands humidity leaf area leaves Phylogenetic diversity phylogeny plant communities plant height Qinghai-Tibetan grasslands Seed mass soil solar radiation species Specific leaf area temperature |
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Title | Climate and soil factors drive the functional and phylogenetic assembly of Qinghai-Tibetan grassland communities via multiple paths |
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