Variations and patterns of C and N stoichiometry in the first five root branch orders across 218 woody plant species

Author:

You Chengming1ORCID,Li Jihong1,Yang Kaijun12,Tan Bo1,Yin Rui3,Li Han1,Zhang Li1,Cui Xinglei1ORCID,Liu Sining1,Wang Lixia1,Liu Yang1,Chen Lianghua1,Yuan Yaling1,Li Jiao1,Sardans Jordi24ORCID,Zhang Jian1,Xu Zhenfeng1ORCID,Peñuelas Josep24ORCID

Affiliation:

1. Forestry Ecological Engineering in the Upper Reaches of the Yangtze River Key Laboratory of Sichuan Province & National Forestry and Grassland Administration Key Laboratory of Forest Resources Conservation and Ecological Safety on the Upper Reaches of the Yangtze River & Institute of Ecology and Forestry Sichuan Agricultural University Chengdu 611130 China

2. Global Ecology Unit CREAF‐CSIC‐UAB CSIC Bellaterra 08193 Barcelona Catalonia Spain

3. Department of Community Ecology Helmholtz‐Centre for Environmental Research‐UFZ Theodor‐Lieser‐Strasse 4 06110 Halle (Saale) Germany

4. CREAF Cerdanyola del Vallès 08193 Barcelona Catalonia Spain

Abstract

Summary Despite the vital role in carbon (C) sequestration and nutrient retention, variations and patterns in root C and nitrogen (N) stoichiometry of the first five root orders across woody plant species remains unclear. We compiled a dataset to explore variations and patterns of root C and N stoichiometry in the first five orders of 218 woody plant species. Across the five orders, root N concentrations were greater in deciduous, broadleaf, and arbuscular mycorrhizal species than in evergreen, coniferous species, and ectomycorrhizal association species, respectively. Contrasting trends were found for root C : N ratios. Most root branch orders showed clear latitudinal and altitudinal trends in root C and N stoichiometry. There were opposite patterns in N concentrations between latitude and altitude. Such variations were mainly driven by plant species, and climatic factors together. Our results indicate divergent C and N use strategies among plant types and convergence and divergence in the patterns of C and N stoichiometry between latitude and altitude across the first five root orders. These findings provide important data on the root economics spectrum and biogeochemical models to improve understanding and prediction of climate change effects on C and nutrient dynamics in terrestrial ecosystems.

Publisher

Wiley

Subject

Plant Science,Physiology

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