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Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus

The carbon budgets in terrestrial ecosystems in China are strongly coupled with climate changes. Over the past decade, China has experienced dramatic climate changes characterized by enhanced summer monsoon and decelerated warming. However, the changes in the trends of terrestrial net ecosystem prod...

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Autores principales: He, Honglin, Wang, Shaoqiang, Zhang, Li, Wang, Junbang, Ren, Xiaoli, Zhou, Lei, Piao, Shilong, Yan, Hao, Ju, Weimin, Gu, Fengxue, Yu, Shiyong, Yang, Yuanhe, Wang, Miaomiao, Niu, Zhongen, Ge, Rong, Yan, Huimin, Huang, Mei, Zhou, Guoyi, Bai, Yongfei, Xie, Zongqiang, Tang, Zhiyao, Wu, Bingfang, Zhang, Leiming, He, Nianpeng, Wang, Qiufeng, Yu, Guirui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291462/
https://www.ncbi.nlm.nih.gov/pubmed/34691899
http://dx.doi.org/10.1093/nsr/nwz021
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author He, Honglin
Wang, Shaoqiang
Zhang, Li
Wang, Junbang
Ren, Xiaoli
Zhou, Lei
Piao, Shilong
Yan, Hao
Ju, Weimin
Gu, Fengxue
Yu, Shiyong
Yang, Yuanhe
Wang, Miaomiao
Niu, Zhongen
Ge, Rong
Yan, Huimin
Huang, Mei
Zhou, Guoyi
Bai, Yongfei
Xie, Zongqiang
Tang, Zhiyao
Wu, Bingfang
Zhang, Leiming
He, Nianpeng
Wang, Qiufeng
Yu, Guirui
author_facet He, Honglin
Wang, Shaoqiang
Zhang, Li
Wang, Junbang
Ren, Xiaoli
Zhou, Lei
Piao, Shilong
Yan, Hao
Ju, Weimin
Gu, Fengxue
Yu, Shiyong
Yang, Yuanhe
Wang, Miaomiao
Niu, Zhongen
Ge, Rong
Yan, Huimin
Huang, Mei
Zhou, Guoyi
Bai, Yongfei
Xie, Zongqiang
Tang, Zhiyao
Wu, Bingfang
Zhang, Leiming
He, Nianpeng
Wang, Qiufeng
Yu, Guirui
author_sort He, Honglin
collection PubMed
description The carbon budgets in terrestrial ecosystems in China are strongly coupled with climate changes. Over the past decade, China has experienced dramatic climate changes characterized by enhanced summer monsoon and decelerated warming. However, the changes in the trends of terrestrial net ecosystem production (NEP) in China under climate changes are not well documented. Here, we used three ecosystem models to simulate the spatiotemporal variations in China's NEP during 1982–2010 and quantify the contribution of the strengthened summer monsoon and warming hiatus to the NEP variations in four distinct climatic regions of the country. Our results revealed a decadal-scale shift in NEP from a downtrend of –5.95 Tg C/yr(2) (reduced sink) during 1982–2000 to an uptrend of 14.22 Tg C/yr(2) (enhanced sink) during 2000–10. This shift was essentially induced by the strengthened summer monsoon, which stimulated carbon uptake, and the warming hiatus, which lessened the decrease in the NEP trend. Compared to the contribution of 56.3% by the climate effect, atmospheric CO(2) concentration and nitrogen deposition had relatively small contributions (8.6 and 11.3%, respectively) to the shift. In conclusion, within the context of the global-warming hiatus, the strengthening of the summer monsoon is a critical climate factor that enhances carbon uptake in China due to the asymmetric response of photosynthesis and respiration. Our study not only revealed the shift in ecosystem carbon sequestration in China in recent decades, but also provides some insight for understanding ecosystem carbon dynamics in other monsoonal areas.
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spelling pubmed-82914622021-10-21 Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus He, Honglin Wang, Shaoqiang Zhang, Li Wang, Junbang Ren, Xiaoli Zhou, Lei Piao, Shilong Yan, Hao Ju, Weimin Gu, Fengxue Yu, Shiyong Yang, Yuanhe Wang, Miaomiao Niu, Zhongen Ge, Rong Yan, Huimin Huang, Mei Zhou, Guoyi Bai, Yongfei Xie, Zongqiang Tang, Zhiyao Wu, Bingfang Zhang, Leiming He, Nianpeng Wang, Qiufeng Yu, Guirui Natl Sci Rev Research Article The carbon budgets in terrestrial ecosystems in China are strongly coupled with climate changes. Over the past decade, China has experienced dramatic climate changes characterized by enhanced summer monsoon and decelerated warming. However, the changes in the trends of terrestrial net ecosystem production (NEP) in China under climate changes are not well documented. Here, we used three ecosystem models to simulate the spatiotemporal variations in China's NEP during 1982–2010 and quantify the contribution of the strengthened summer monsoon and warming hiatus to the NEP variations in four distinct climatic regions of the country. Our results revealed a decadal-scale shift in NEP from a downtrend of –5.95 Tg C/yr(2) (reduced sink) during 1982–2000 to an uptrend of 14.22 Tg C/yr(2) (enhanced sink) during 2000–10. This shift was essentially induced by the strengthened summer monsoon, which stimulated carbon uptake, and the warming hiatus, which lessened the decrease in the NEP trend. Compared to the contribution of 56.3% by the climate effect, atmospheric CO(2) concentration and nitrogen deposition had relatively small contributions (8.6 and 11.3%, respectively) to the shift. In conclusion, within the context of the global-warming hiatus, the strengthening of the summer monsoon is a critical climate factor that enhances carbon uptake in China due to the asymmetric response of photosynthesis and respiration. Our study not only revealed the shift in ecosystem carbon sequestration in China in recent decades, but also provides some insight for understanding ecosystem carbon dynamics in other monsoonal areas. Oxford University Press 2019-05 2019-02-17 /pmc/articles/PMC8291462/ /pubmed/34691899 http://dx.doi.org/10.1093/nsr/nwz021 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits non-commercial reuse, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
He, Honglin
Wang, Shaoqiang
Zhang, Li
Wang, Junbang
Ren, Xiaoli
Zhou, Lei
Piao, Shilong
Yan, Hao
Ju, Weimin
Gu, Fengxue
Yu, Shiyong
Yang, Yuanhe
Wang, Miaomiao
Niu, Zhongen
Ge, Rong
Yan, Huimin
Huang, Mei
Zhou, Guoyi
Bai, Yongfei
Xie, Zongqiang
Tang, Zhiyao
Wu, Bingfang
Zhang, Leiming
He, Nianpeng
Wang, Qiufeng
Yu, Guirui
Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title_full Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title_fullStr Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title_full_unstemmed Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title_short Altered trends in carbon uptake in China's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
title_sort altered trends in carbon uptake in china's terrestrial ecosystems under the enhanced summer monsoon and warming hiatus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291462/
https://www.ncbi.nlm.nih.gov/pubmed/34691899
http://dx.doi.org/10.1093/nsr/nwz021
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