Global leaf sulfur stoichiometry and the relationships with nitrogen and phosphorus: phylogeny, growth form and environmental controls

Author:

Zhang Liangjian1,Zuo Zhenjun1,Qiao Xiujuan2ORCID,Liu Yixuan34,Qu Rui1,Zhao Haocun1ORCID,Wang Youxin3,Zhao Peidong1,Zhang Lin5,Wu Zhigang6,Wang Zhong134ORCID

Affiliation:

1. The National Field Station of Freshwater Ecosystem of Liangzi Lake, College of Life Sciences, Wuhan University, Wuhan 430072, People‘s Republic of China

2. Key Laboratory of Aquatic Botany and Watershed Ecology, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430074, People‘s Republic of China

3. Key Laboratory of Biodiversity and Environment on the Qinghai-Tibetan Plateau, Ministry of Education, School of Ecology and Environment, Tibet University, Lhasa 850000, People‘s Republic of China

4. Yani Wetland Ecosystem Positioning Observation and Research Station, Tibet University, Nyingchi 860000, People‘s Republic of China

5. Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100101, People‘s Republic of China

6. The State Key Laboratory of Freshwater Ecology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, People‘s Republic of China

Abstract

Sulfur (S) is an essential bioelement with vital roles in serving regulatory and catalytic functions and tightly coupled with N and P in plants. However, globally stoichiometric patterns of leaf S and its relationships to leaf N and P are less well studied. We compiled 31 939 records of leaf-based data for 2600 plant species across 6652 sites worldwide. All plant species were divided into different phylogenetic taxa and growth forms. Standard major axis analysis was employed to fit the bivariate element relationships. A phylogenetic linear mixed-effect model and a multiple-regression model were used to partition the variations of bioelements into phylogeny and environments, and then to estimate the importance of environmental variables. Global geometric mean leaf S, N and P concentrations were 1.44, 15.70 and 1.27 mg g −1 , respectively, with significant differences among plant groups. Leaf S–N–P positively correlated with each other, ignoring plant groups. The scaling exponents of LN–LS, LP–LS and LN–LP were 0.64, 0.76 and 0.79, respectively, for all species, but differed among plant groups. Both phylogeny and environments regulated the bioelements. The variability, rather than mean temperature, controlled the bioelements. Phylogeny explained more for the concentrations of all the three bioelements than environments, of which S was the one most affected by phylogenetic taxa.

Funder

The National Natural Science Foundation of China

Publisher

The Royal Society

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