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Journal of Desert Research ›› 2026, Vol. 46 ›› Issue (4): 250-265.DOI: 10.7522/j.issn.1000-694X.2026.00070

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Long-term changes and driving factors of soil nutrients in typical shrub communities of the desert steppe

Haoyi Wang(), Xiao Yu, Zhiming Xin(), Yuan Ma, Fengmin Luo, Xing Li, Jian Cui, Jiahua Lu   

  1. Experimental Center of Desert Forestry /Dengkou Desert Ecosystem Research Station of Inner Mongolia/ Ulan Buh Desert Oasis Wild Field Scientific Observation and Research Station of Inner Mongolia Autonomous Region,Chinese Academy of Forestry,Dengkou 015200,Inner Mongolia,China
  • Received:2026-02-02 Revised:2026-05-08 Online:2026-07-20 Published:2026-08-27
  • Contact: Zhiming Xin

Abstract:

Elucidating the long-term dynamics of soil nutrients in desert shrublands and their underlying drivers is crucial for understanding ecosystem stability and providing theoretical support for ecological restoration. In this study, three typical shrub species—Ceratoides latensTetraena mongolica, and Sarcozygium xanthoxylon—in the Hobq Desert were selected as research subjects. Based on long-term field surveys and laboratory measurements, we analyzed the long-term variations in surface soil nutrients (C, N, P, K) and their stoichiometric ratios, examined the trends in climatic and vegetation factors, and quantified the relative contributions of environmental factors to soil nutrient variation using random forest models and redundancy analysis. The results showed that from 2006 to 2021, soil organic carbon increased significantly across the three shrublands, albeit with distinct inter-specific patterns. Total nitrogen exhibited divergent trends among species, while total phosphorus generally decreased in C. latens and T. mongolica shrublands, but decreased first and then increased in S. xanthoxylon shrubland. The C∶N, C∶P, and N∶P ratios increased overall. Random forest and RDA analyses revealed inter-specific differences in the explanatory power of environmental factors on soil nutrient variation. Soil nutrient variation in C. latens shrubland was primarily influenced by both climatic factors (wind speed and precipitation) and vegetation factors (canopy width and height) (adjusted R²=74.2%). S. xanthoxylon shrubland was sensitive to climatic factors and also significantly affected by species richness (adjusted R²=82.7%). In contrast, the model for T. mongolica shrubland had a relatively lower explanatory power (adjusted R²=56.7%), with precipitation and wind speed being the prominent contributing factors. The dynamics of soil nutrients and their responses to environmental factors exhibited pronounced inter-specific specificity among the three shrublands. This study provides data support based on long-term monitoring for the restoration and management of desert shrubland ecosystems.

Key words: desert shrubland, soil nutrients, environmental factors, long-term dynamics, random forest model

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