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Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide

Arbuscular mycorrhizal (AM) and ectomycorrhizal (EcM) associations are critical for host-tree performance. However, how mycorrhizal associations correlate with the latitudinal tree beta-diversity remains untested. Using a global dataset of 45 forest plots representing 2,804,270 trees across 3840 spe...

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Autores principales: Zhong, Yonglin, Chu, Chengjin, Myers, Jonathan A., Gilbert, Gregory S., Lutz, James A., Stillhard, Jonas, Zhu, Kai, Thompson, Jill, Baltzer, Jennifer L., He, Fangliang, LaManna, Joseph A., Davies, Stuart J., Aderson-Teixeira, Kristina J., Burslem, David F.R.P., Alonso, Alfonso, Chao, Kuo-Jung, Wang, Xugao, Gao, Lianming, Orwig, David A., Yin, Xue, Sui, Xinghua, Su, Zhiyao, Abiem, Iveren, Bissiengou, Pulchérie, Bourg, Norm, Butt, Nathalie, Cao, Min, Chang-Yang, Chia-Hao, Chao, Wei-Chun, Chapman, Hazel, Chen, Yu-Yun, Coomes, David A., Cordell, Susan, de Oliveira, Alexandre A., Du, Hu, Fang, Suqin, Giardina, Christian P., Hao, Zhanqing, Hector, Andrew, Hubbell, Stephen P., Janík, David, Jansen, Patrick A., Jiang, Mingxi, Jin, Guangze, Kenfack, David, Král, Kamil, Larson, Andrew J., Li, Buhang, Li, Xiankun, Li, Yide, Lian, Juyu, Lin, Luxiang, Liu, Feng, Liu, Yankun, Liu, Yu, Luan, Fuchen, Luo, Yahuang, Ma, Keping, Malhi, Yadvinder, McMahon, Sean M., McShea, William, Memiaghe, Hervé, Mi, Xiangcheng, Morecroft, Mike, Novotny, Vojtech, O’Brien, Michael J., Ouden, Jan den, Parker, Geoffrey G., Qiao, Xiujuan, Ren, Haibao, Reynolds, Glen, Samonil, Pavel, Sang, Weiguo, Shen, Guochun, Shen, Zhiqiang, Song, Guo-Zhang Michael, Sun, I-Fang, Tang, Hui, Tian, Songyan, Uowolo, Amanda L., Uriarte, María, Wang, Bin, Wang, Xihua, Wang, Youshi, Weiblen, George D., Wu, Zhihong, Xi, Nianxun, Xiang, Wusheng, Xu, Han, Xu, Kun, Ye, Wanhui, Yu, Mingjian, Zeng, Fuping, Zhang, Minhua, Zhang, Yingming, Zhu, Li, Zimmerman, Jess K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8149669/
https://www.ncbi.nlm.nih.gov/pubmed/34035260
http://dx.doi.org/10.1038/s41467-021-23236-3
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author Zhong, Yonglin
Chu, Chengjin
Myers, Jonathan A.
Gilbert, Gregory S.
Lutz, James A.
Stillhard, Jonas
Zhu, Kai
Thompson, Jill
Baltzer, Jennifer L.
He, Fangliang
LaManna, Joseph A.
Davies, Stuart J.
Aderson-Teixeira, Kristina J.
Burslem, David F.R.P.
Alonso, Alfonso
Chao, Kuo-Jung
Wang, Xugao
Gao, Lianming
Orwig, David A.
Yin, Xue
Sui, Xinghua
Su, Zhiyao
Abiem, Iveren
Bissiengou, Pulchérie
Bourg, Norm
Butt, Nathalie
Cao, Min
Chang-Yang, Chia-Hao
Chao, Wei-Chun
Chapman, Hazel
Chen, Yu-Yun
Coomes, David A.
Cordell, Susan
de Oliveira, Alexandre A.
Du, Hu
Fang, Suqin
Giardina, Christian P.
Hao, Zhanqing
Hector, Andrew
Hubbell, Stephen P.
Janík, David
Jansen, Patrick A.
Jiang, Mingxi
Jin, Guangze
Kenfack, David
Král, Kamil
Larson, Andrew J.
Li, Buhang
Li, Xiankun
Li, Yide
Lian, Juyu
Lin, Luxiang
Liu, Feng
Liu, Yankun
Liu, Yu
Luan, Fuchen
Luo, Yahuang
Ma, Keping
Malhi, Yadvinder
McMahon, Sean M.
McShea, William
Memiaghe, Hervé
Mi, Xiangcheng
Morecroft, Mike
Novotny, Vojtech
O’Brien, Michael J.
Ouden, Jan den
Parker, Geoffrey G.
Qiao, Xiujuan
Ren, Haibao
Reynolds, Glen
Samonil, Pavel
Sang, Weiguo
Shen, Guochun
Shen, Zhiqiang
Song, Guo-Zhang Michael
Sun, I-Fang
Tang, Hui
Tian, Songyan
Uowolo, Amanda L.
Uriarte, María
Wang, Bin
Wang, Xihua
Wang, Youshi
Weiblen, George D.
Wu, Zhihong
Xi, Nianxun
Xiang, Wusheng
Xu, Han
Xu, Kun
Ye, Wanhui
Yu, Mingjian
Zeng, Fuping
Zhang, Minhua
Zhang, Yingming
Zhu, Li
Zimmerman, Jess K.
author_facet Zhong, Yonglin
Chu, Chengjin
Myers, Jonathan A.
Gilbert, Gregory S.
Lutz, James A.
Stillhard, Jonas
Zhu, Kai
Thompson, Jill
Baltzer, Jennifer L.
He, Fangliang
LaManna, Joseph A.
Davies, Stuart J.
Aderson-Teixeira, Kristina J.
Burslem, David F.R.P.
Alonso, Alfonso
Chao, Kuo-Jung
Wang, Xugao
Gao, Lianming
Orwig, David A.
Yin, Xue
Sui, Xinghua
Su, Zhiyao
Abiem, Iveren
Bissiengou, Pulchérie
Bourg, Norm
Butt, Nathalie
Cao, Min
Chang-Yang, Chia-Hao
Chao, Wei-Chun
Chapman, Hazel
Chen, Yu-Yun
Coomes, David A.
Cordell, Susan
de Oliveira, Alexandre A.
Du, Hu
Fang, Suqin
Giardina, Christian P.
Hao, Zhanqing
Hector, Andrew
Hubbell, Stephen P.
Janík, David
Jansen, Patrick A.
Jiang, Mingxi
Jin, Guangze
Kenfack, David
Král, Kamil
Larson, Andrew J.
Li, Buhang
Li, Xiankun
Li, Yide
Lian, Juyu
Lin, Luxiang
Liu, Feng
Liu, Yankun
Liu, Yu
Luan, Fuchen
Luo, Yahuang
Ma, Keping
Malhi, Yadvinder
McMahon, Sean M.
McShea, William
Memiaghe, Hervé
Mi, Xiangcheng
Morecroft, Mike
Novotny, Vojtech
O’Brien, Michael J.
Ouden, Jan den
Parker, Geoffrey G.
Qiao, Xiujuan
Ren, Haibao
Reynolds, Glen
Samonil, Pavel
Sang, Weiguo
Shen, Guochun
Shen, Zhiqiang
Song, Guo-Zhang Michael
Sun, I-Fang
Tang, Hui
Tian, Songyan
Uowolo, Amanda L.
Uriarte, María
Wang, Bin
Wang, Xihua
Wang, Youshi
Weiblen, George D.
Wu, Zhihong
Xi, Nianxun
Xiang, Wusheng
Xu, Han
Xu, Kun
Ye, Wanhui
Yu, Mingjian
Zeng, Fuping
Zhang, Minhua
Zhang, Yingming
Zhu, Li
Zimmerman, Jess K.
author_sort Zhong, Yonglin
collection PubMed
description Arbuscular mycorrhizal (AM) and ectomycorrhizal (EcM) associations are critical for host-tree performance. However, how mycorrhizal associations correlate with the latitudinal tree beta-diversity remains untested. Using a global dataset of 45 forest plots representing 2,804,270 trees across 3840 species, we test how AM and EcM trees contribute to total beta-diversity and its components (turnover and nestedness) of all trees. We find AM rather than EcM trees predominantly contribute to decreasing total beta-diversity and turnover and increasing nestedness with increasing latitude, probably because wide distributions of EcM trees do not generate strong compositional differences among localities. Environmental variables, especially temperature and precipitation, are strongly correlated with beta-diversity patterns for both AM trees and all trees rather than EcM trees. Results support our hypotheses that latitudinal beta-diversity patterns and environmental effects on these patterns are highly dependent on mycorrhizal types. Our findings highlight the importance of AM-dominated forests for conserving global forest biodiversity.
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spelling pubmed-81496692021-06-01 Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide Zhong, Yonglin Chu, Chengjin Myers, Jonathan A. Gilbert, Gregory S. Lutz, James A. Stillhard, Jonas Zhu, Kai Thompson, Jill Baltzer, Jennifer L. He, Fangliang LaManna, Joseph A. Davies, Stuart J. Aderson-Teixeira, Kristina J. Burslem, David F.R.P. Alonso, Alfonso Chao, Kuo-Jung Wang, Xugao Gao, Lianming Orwig, David A. Yin, Xue Sui, Xinghua Su, Zhiyao Abiem, Iveren Bissiengou, Pulchérie Bourg, Norm Butt, Nathalie Cao, Min Chang-Yang, Chia-Hao Chao, Wei-Chun Chapman, Hazel Chen, Yu-Yun Coomes, David A. Cordell, Susan de Oliveira, Alexandre A. Du, Hu Fang, Suqin Giardina, Christian P. Hao, Zhanqing Hector, Andrew Hubbell, Stephen P. Janík, David Jansen, Patrick A. Jiang, Mingxi Jin, Guangze Kenfack, David Král, Kamil Larson, Andrew J. Li, Buhang Li, Xiankun Li, Yide Lian, Juyu Lin, Luxiang Liu, Feng Liu, Yankun Liu, Yu Luan, Fuchen Luo, Yahuang Ma, Keping Malhi, Yadvinder McMahon, Sean M. McShea, William Memiaghe, Hervé Mi, Xiangcheng Morecroft, Mike Novotny, Vojtech O’Brien, Michael J. Ouden, Jan den Parker, Geoffrey G. Qiao, Xiujuan Ren, Haibao Reynolds, Glen Samonil, Pavel Sang, Weiguo Shen, Guochun Shen, Zhiqiang Song, Guo-Zhang Michael Sun, I-Fang Tang, Hui Tian, Songyan Uowolo, Amanda L. Uriarte, María Wang, Bin Wang, Xihua Wang, Youshi Weiblen, George D. Wu, Zhihong Xi, Nianxun Xiang, Wusheng Xu, Han Xu, Kun Ye, Wanhui Yu, Mingjian Zeng, Fuping Zhang, Minhua Zhang, Yingming Zhu, Li Zimmerman, Jess K. Nat Commun Article Arbuscular mycorrhizal (AM) and ectomycorrhizal (EcM) associations are critical for host-tree performance. However, how mycorrhizal associations correlate with the latitudinal tree beta-diversity remains untested. Using a global dataset of 45 forest plots representing 2,804,270 trees across 3840 species, we test how AM and EcM trees contribute to total beta-diversity and its components (turnover and nestedness) of all trees. We find AM rather than EcM trees predominantly contribute to decreasing total beta-diversity and turnover and increasing nestedness with increasing latitude, probably because wide distributions of EcM trees do not generate strong compositional differences among localities. Environmental variables, especially temperature and precipitation, are strongly correlated with beta-diversity patterns for both AM trees and all trees rather than EcM trees. Results support our hypotheses that latitudinal beta-diversity patterns and environmental effects on these patterns are highly dependent on mycorrhizal types. Our findings highlight the importance of AM-dominated forests for conserving global forest biodiversity. Nature Publishing Group UK 2021-05-25 /pmc/articles/PMC8149669/ /pubmed/34035260 http://dx.doi.org/10.1038/s41467-021-23236-3 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zhong, Yonglin
Chu, Chengjin
Myers, Jonathan A.
Gilbert, Gregory S.
Lutz, James A.
Stillhard, Jonas
Zhu, Kai
Thompson, Jill
Baltzer, Jennifer L.
He, Fangliang
LaManna, Joseph A.
Davies, Stuart J.
Aderson-Teixeira, Kristina J.
Burslem, David F.R.P.
Alonso, Alfonso
Chao, Kuo-Jung
Wang, Xugao
Gao, Lianming
Orwig, David A.
Yin, Xue
Sui, Xinghua
Su, Zhiyao
Abiem, Iveren
Bissiengou, Pulchérie
Bourg, Norm
Butt, Nathalie
Cao, Min
Chang-Yang, Chia-Hao
Chao, Wei-Chun
Chapman, Hazel
Chen, Yu-Yun
Coomes, David A.
Cordell, Susan
de Oliveira, Alexandre A.
Du, Hu
Fang, Suqin
Giardina, Christian P.
Hao, Zhanqing
Hector, Andrew
Hubbell, Stephen P.
Janík, David
Jansen, Patrick A.
Jiang, Mingxi
Jin, Guangze
Kenfack, David
Král, Kamil
Larson, Andrew J.
Li, Buhang
Li, Xiankun
Li, Yide
Lian, Juyu
Lin, Luxiang
Liu, Feng
Liu, Yankun
Liu, Yu
Luan, Fuchen
Luo, Yahuang
Ma, Keping
Malhi, Yadvinder
McMahon, Sean M.
McShea, William
Memiaghe, Hervé
Mi, Xiangcheng
Morecroft, Mike
Novotny, Vojtech
O’Brien, Michael J.
Ouden, Jan den
Parker, Geoffrey G.
Qiao, Xiujuan
Ren, Haibao
Reynolds, Glen
Samonil, Pavel
Sang, Weiguo
Shen, Guochun
Shen, Zhiqiang
Song, Guo-Zhang Michael
Sun, I-Fang
Tang, Hui
Tian, Songyan
Uowolo, Amanda L.
Uriarte, María
Wang, Bin
Wang, Xihua
Wang, Youshi
Weiblen, George D.
Wu, Zhihong
Xi, Nianxun
Xiang, Wusheng
Xu, Han
Xu, Kun
Ye, Wanhui
Yu, Mingjian
Zeng, Fuping
Zhang, Minhua
Zhang, Yingming
Zhu, Li
Zimmerman, Jess K.
Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title_full Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title_fullStr Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title_full_unstemmed Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title_short Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
title_sort arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8149669/
https://www.ncbi.nlm.nih.gov/pubmed/34035260
http://dx.doi.org/10.1038/s41467-021-23236-3
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AT yewanhui arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT yumingjian arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT zengfuping arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT zhangminhua arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT zhangyingming arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT zhuli arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide
AT zimmermanjessk arbuscularmycorrhizaltreesinfluencethelatitudinalbetadiversitygradientoftreecommunitiesinforestsworldwide