The effect of experimental warming on fine root functional traits of woody plants: Data synthesis

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

  • Xiaoxiang Zhao
  • Qiuxiang Tian
  • Michelsen, Anders
  • Mengzhen Lu
  • Boshen Ren
  • Lin Huang
  • Rudong Zhao
Fine root traits are critical to plant nutrition and water uptake, and soil nutrient cycling. The impacts of climate warming on woody plants are predicted to be severe, but the effects on the fine root traits of woody plants remain unclear. To evaluate the effects of warming on fine-root traits of woody plants, we synthesized 431 paired observations of 13 traits from 78 studies. The result showed that warming increased the fine root nitrogen (N) concentration, root mortality, and root respiration, but decreased fine root phosphorus (P) concentration, root C:N and root nonstructural carbohydrates (NSC) concentration. However, warming had no significant effect on fine root biomass, root production and morphological traits. Warming effects on fine root biomass and root diameter decreased with warming magnitude, while root P concentration increased. Moreover, with increasing warming duration, the effect size of specific root length (SRL), root length, root C:N and root NSC increased. The effects size of root biomass, root diameter, root length and root C:N decreased with mean annual temperature (MAT) and mean annual precipitation (MAP) increase. However, the effect size of root N concentration increased with higher MAT and MAP. Furthermore, warming increased the fine root biomass of ectomycorrhiza (ECM) plants, but decreased that of plants associated with arbuscular mycorrhizal (AM) fungi. These results indicate that the effect of warming on fine root traits of woody plants was not only modulated by warming duration and magnitude, but also MAT and MAP. Our findings highlight the differential warming responses to fine root traits of woody plants, which have strong implications for shrubs and tree-dominated ecosystems soil nutrients cycling and carbon stocks.
OriginalsprogEngelsk
Artikelnummer165003
TidsskriftScience of the Total Environment
Vol/bind894
Antal sider9
ISSN0048-9697
DOI
StatusUdgivet - 2023

Bibliografisk note

Funding Information:
This study was supported by the National Natural Science Foundation of China (Grant numbers 31870465, 31600377, 31700462). We are grateful to all scientists for their valuable studies used in the present synthesis. We thank Wang Jinsong from Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences for their helpful guidance in model construction and select in R. We would like to express our gratitude to Dr. Zhe Zhang from the University of Western Australia for her guidance in creating the graphical abstract.

Funding Information:
This study was supported by the National Natural Science Foundation of China (Grant numbers 31870465 , 31600377 , 31700462 ). We are grateful to all scientists for their valuable studies used in the present synthesis. We thank Wang Jinsong from Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences for their helpful guidance in model construction and select in R. We would like to express our gratitude to Dr. Zhe Zhang from the University of Western Australia for her guidance in creating the graphical abstract.

Publisher Copyright:
© 2023

ID: 359090918