Decoupling of nutrient stoichiometry in Suaeda glauca (Bunge) senesced leaves under salt treatment

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2023-09-04

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Frontiers Media S.A.

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(c) 2023 The Author/s
CC BY 4.0

Abstract

The stoichiometry of senesced leaves is pivotal in nutrient cycling and can be significantly influenced by soil salinization, a rising global issue threatening the functionality of ecosystems. However, the impacts of soil salinization on senesced leaf stoichiometry are not fully understood. In this study, we conducted a pot experiment with varying soil salt concentrations to examine their influence on the concentrations and stoichiometric ratios of nitrogen (N), phosphorus (P), sodium (Na), potassium (K), calcium (Ca), magnesium (Mg), and zinc (Zn) in the senesced leaves of Suaeda glauca (Bunge). Compared to the control group, salt treatments significantly enhanced Na concentration while diminishing the concentrations of K, Ca, Mg, Zn, N, and P. Interestingly, as salinity levels escalated, N concentration maintained stability, whereas P concentration exhibited an increasing trend. Moreover, K, Ca, and Mg significantly declined as salt levels rose. Salt treatments brought about significant changes in stoichiometric ratios, with the N:P, K:Na, N:Na, N:Mg, and Ca : Mg ratios dropping and the N:Ca and N:K ratios rising, illustrating the varying nutrient coupling cycles under different salt conditions. These findings shed light on the plasticity of stoichiometric traits in S. glauca senesced leaves in response to soil salinization shifts, which could potentially offer insights into nutrient cycling reactions to soil salinization.

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Keywords

Suaeda glauca (Bunge), elemental content, nutrient stoichiometry, saline ecosystems, salt treatment

Citation

Yang F, Liu S, Qian M, Wang D, Chen J. (2023). Decoupling of nutrient stoichiometry in Suaeda glauca (Bunge) senesced leaves under salt treatment.. Front Plant Sci. 14. (pp. 1235443-).

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Except where otherwised noted, this item's license is described as (c) 2023 The Author/s