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The fate of carbon in a mature forest under carbon dioxide enrichment 期刊论文
NATURE, 2020, 580 (7802) : 227-+
作者:  Sun, P. Z.;  Yang, Q.;  Kuang, W. J.;  Stebunov, Y. V.;  Xiong, W. Q.;  Yu, J.;  Nair, R. R.;  Katsnelson, M. I.;  Yuan, S. J.;  Grigorieva, I. V.;  Lozada-Hidalgo, M.;  Wang, F. C.;  Geim, A. K.
收藏  |  浏览/下载:70/0  |  提交时间:2020/05/13

Carbon dioxide enrichment of a mature forest resulted in the emission of the excess carbon back into the atmosphere via enhanced ecosystem respiration, suggesting that mature forests may be limited in their capacity to mitigate climate change.


Atmospheric carbon dioxide enrichment (eCO(2)) can enhance plant carbon uptake and growth(1-5), thereby providing an important negative feedback to climate change by slowing the rate of increase of the atmospheric CO2 concentration(6). Although evidence gathered from young aggrading forests has generally indicated a strong CO2 fertilization effect on biomass growth(3-5), it is unclear whether mature forests respond to eCO(2) in a similar way. In mature trees and forest stands(7-10), photosynthetic uptake has been found to increase under eCO(2) without any apparent accompanying growth response, leaving the fate of additional carbon fixed under eCO(2) unclear(4,5,7-11). Here using data from the first ecosystem-scale Free-Air CO2 Enrichment (FACE) experiment in a mature forest, we constructed a comprehensive ecosystem carbon budget to track the fate of carbon as the forest responded to four years of eCO(2) exposure. We show that, although the eCO(2) treatment of +150 parts per million (+38 per cent) above ambient levels induced a 12 per cent (+247 grams of carbon per square metre per year) increase in carbon uptake through gross primary production, this additional carbon uptake did not lead to increased carbon sequestration at the ecosystem level. Instead, the majority of the extra carbon was emitted back into the atmosphere via several respiratory fluxes, with increased soil respiration alone accounting for half of the total uptake surplus. Our results call into question the predominant thinking that the capacity of forests to act as carbon sinks will be generally enhanced under eCO(2), and challenge the efficacy of climate mitigation strategies that rely on ubiquitous CO2 fertilization as a driver of increased carbon sinks in global forests.


  
Towards a New Generation of Trait-Flexible Vegetation Models 期刊论文
TRENDS IN ECOLOGY & EVOLUTION, 2020, 35 (3) : 191-205
作者:  Berzaghi, Fabio;  Wright, Ian J.;  Kramer, Koen;  Oddou-Muratorio, Sylvie;  Bohn, Friedrich J.;  Reyer, Christopher P. O.;  Sabate, Santiago;  Sanders, Tanja G. M.;  Hartig, Florian
收藏  |  浏览/下载:8/0  |  提交时间:2020/07/02
Two dominant boreal conifers use contrasting mechanisms to reactivate photosynthesis in the spring 期刊论文
NATURE COMMUNICATIONS, 2020, 11 (1)
作者:  Yang, Qi;  Blanco, Nicolas E.;  Hermida-Carrera, Carmen;  Lehotai, Nora;  Hurry, Vaughan;  Strand, Asa
收藏  |  浏览/下载:8/0  |  提交时间:2020/05/13
Photosynthetic capacity, nutrient and water status following precommercial thinning in Anatolian black pine 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2019, 451
作者:  Deligoz, Ayse;  Bayar, Esra;  Karatepe, Yasin;  Genc, Musa
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27
Needle nitrogen  Photosynthetic rate  Soil moisture  Thinning intensity  Xylem water potential  
The response of stomatal conductance to seasonal drought in tropical forests 期刊论文
GLOBAL CHANGE BIOLOGY, 2019
作者:  Wu, Jin;  Serbin, Shawn P.;  Ely, Kim S.;  Wolfe, Brett T.;  Dickman, L. Turin;  Grossiord, Charlotte;  Michaletz, Sean T.;  Collins, Adam D.;  Detto, Matteo;  McDowell, Nate G.;  Wright, S. Joseph;  Rogers, Alistair
收藏  |  浏览/下载:8/0  |  提交时间:2019/11/27
carbon and water exchange  leaf age  leaf water potential  plant traits  spectroscopy  stomatal conductance model  stomatal slope  vulnerability curve  
The acclimation of leaf photosynthesis of wheat and rice to seasonal temperature changes in T-FACE environments 期刊论文
GLOBAL CHANGE BIOLOGY, 2019
作者:  Cai, Chuang;  Li, Gang;  Di, Lijun;  Ding, Yunjie;  Fu, Lin;  Guo, Xuanhe;  Struik, Paul C.;  Pan, Genxing;  Li, Haozheng;  Chen, Weiping;  Luo, Weihong;  Yin, Xinyou
收藏  |  浏览/下载:8/0  |  提交时间:2019/11/27
climate change  free-air CO2 enrichment  growth temperature  leaf nitrogen content  Oryza sativa L  photosynthesis model  stomatal conductance  Triticum aestivum L  
Structure and dynamics of forests dominated by Sequoiadendron giganteum 期刊论文
FOREST ECOLOGY AND MANAGEMENT, 2019, 448: 218-239
作者:  Sillett, Stephen C.;  Van Pelt, Robert;  Carroll, Allyson L.;  Campbell-Spickler, Jim;  Antoine, Marie E.
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/27
Sequoiadendron giganteum  Allometric equations  Biomass  Leaf area  Prescribed fire  Drought  Carbon sequestration  
Effects of climate warming on Sphagnum photosynthesis in peatlands depend on peat moisture and species-specific anatomical traits 期刊论文
GLOBAL CHANGE BIOLOGY, 2019, 25 (11) : 3859-3870
作者:  Jassey, Vincent E. J.;  Signarbieux, Constant
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
climate change  extreme events  net photosynthesis  phenotypic plasticity  soil water content  Sphagnum fallax  Sphagnum magellanicum  temperate and boreal ecosystem  trait plasticity  
Improved estimates of global terrestrial photosynthesis using information on leaf chlorophyll content 期刊论文
GLOBAL CHANGE BIOLOGY, 2019, 25 (7) : 2499-2514
作者:  Luo, Xiangzhong;  Croft, Holly;  Chen, Jing M.;  He, Liming;  Keenan, Trevor F.
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
gross primary productivity  leaf chlorophyll content  photosynthetic capacity  remote sensing  solar-induced fluorescence  terrestrial biosphere models  
Effects of mesophyll conductance on vegetation responses to elevated CO2 concentrations in a land surface model 期刊论文
GLOBAL CHANGE BIOLOGY, 2019, 25 (5) : 1820-1838
作者:  Knauer, Juergen;  Zaehle, Soenke;  De Kauwe, Martin G.;  Bahar, Nur H. A.;  Evans, John R.;  Medlyn, Belinda E.;  Reichstein, Markus;  Werner, Christiane
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/26
elevated CO2 concentrations  land surface modeling  mesophyll conductance  photosynthetic CO2 sensitivity  representative concentration pathways