Direct and indirect effects of climatic variations on the interannual variability in net ecosystem exchange across terrestrial ecosystems

نویسندگان

  • JUNJIONG SHAO
  • XUHUI ZHOU
  • YIQI LUO
  • BO LI
  • MIKA AURELA
  • DAVID BILLESBACH
  • PETER D. BLANKEN
  • ROSVEL BRACHO
  • JIQUAN CHEN
  • YULING FU
  • LIANHONG GU
  • SHIJIE HAN
  • YONGTAO HE
  • YINGNIAN LI
  • ZOLTAN NAGY
  • SHULI NIU
  • KRISZTINA PINTER
  • PEILI SHI
  • ANDREW SUYKER
  • MARGARET TORN
  • ANDREJ VARLAGIN
  • HUIMIN WANG
  • JUNHUA YAN
  • GUIRUI YU
  • JUNHUI ZHANG
چکیده

Climatic variables not only directly affect the interannual variability (IAV) in net ecosystem exchange of CO2 (NEE) but also indirectly drive it by changing the physiological parameters. Identifying these direct and indirect paths can reveal the underlying mechanisms of carbon (C) dynamics. In this study, we applied a path analysis using flux data from 65 sites to quantify the direct and indirect climatic effects on IAV in NEE and to *Corresponding author. email: [email protected] Responsible Editor: Anders Lindroth, Lund University, Sweden. Tellus B 2016. # 2016 J. Shao et al. This is an Open Access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), allowing third parties to copy and redistribute the material in any medium or format and to remix, transform, and build upon the material for any purpose, even commercially, provided the original work is properly cited and states its license. 1 Citation: Tellus B 2016, 68, 30575, http://dx.doi.org/10.3402/tellusb.v68.30575 P U B L I S H E D B Y T H E I N T E R N A T I O N A L M E T E O R O L O G I C A L I N S T I T U T E I N S T O C K H O L M SERIES B CHEMICAL AND PHYSICAL METEOROLOGY (page number not for citation purpose) evaluate the potential relationships among the climatic variables and physiological parameters that represent physiology and phenology of ecosystems. We found that the maximum photosynthetic rate was the most important factor for the IAV in gross primary productivity (GPP), which was mainly induced by the variation in vapour pressure deficit. For ecosystem respiration (RE), the most important drivers were GPP and the reference respiratory rate. The biome type regulated the direct and indirect paths, with distinctive differences between forests and non-forests, evergreen needleleaf forests and deciduous broadleaf forests, and between grasslands and croplands. Different paths were also found among wet, moist and dry ecosystems. However, the climatic variables can only partly explain the IAV in physiological parameters, suggesting that the latter may also result from other biotic and disturbance factors. In addition, the climatic variables related to NEE were not necessarily the same as those related to GPP and RE, indicating the emerging difficulty encountered when studying the IAV in NEE. Overall, our results highlight the contribution of certain physiological parameters to the IAV in C fluxes and the importance of biome type and multi-year water conditions, which should receive more attention in future experimental and modelling research.

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تاریخ انتشار 2016