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Chinese Journal of Applied Ecology ›› 2026, Vol. 37 ›› Issue (8): 2528-2536.doi: 10.13287/j.1001-9332.202608.044

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Effects of nebkhas succession on the stoichiometry in organs of Nitraria tangutorum and soils

LYU Peng1, LIU Jiankang2,3*, ZHANG Jie2,3, SHI Na2,3, LAN Huiqin2,4, MENG Juanjuan2,3, GAO Junliang5, CAO Gong-xiang6   

  1. 1School of Forestry and Grassland Science, Ningxia University, Yinchuan 750021, China;
    2School of Eco-logy Environment, Ningxia University, Yinchuan 750021, China;
    3Ministry of Education Key Laboratory for Restoration and Reconstruction of Degarded Ecosystem in Northwest China, Yinchuan 750021, China;
    4Alxa League Ecological Environment Emergency Support Center, Alxa 750300, Inner Mongolia, China;
    5Experimental Center of Desert Forestry, Chinese Academy of Forestry, Bayannur 015200, Inner Mongolia, China;
    6Inner Mongolia Ordos Forest Ecosystem Observation and Research Station, Ordos 016100, Inner Mongolia, China
  • Received:2026-05-07 Revised:2026-07-01 Online:2026-08-18 Published:2027-02-18

Abstract: We analyzed the stoichiometry of carbon, nitrogen, and phosphorus in different organs of Nitraria tangutorum (roots, stems, and leaves) and soil across four succession stages in nebkhas in the desert-oasis ecotone: initial, developing, stable, and declining. The results showed that soil organic carbon, total nitrogen, total phosphorus, C:N, and C:P all peaked at the stable stage and then decreased, with reductions ranging from 25.9% to 64.9%, while the N:P was highest at the declining stage, increasing by 42.8% relative to the initial stage. Across all stages, leaf N and P contents were significantly higher than those in stems and roots. As succession progressed, stem and root C contents first increased and then decreased, peaking at the developing stage, with respective increases of 13.3% and 27.7%. Leaf and stem N contents were highest at the stable stage, with increases of 26.0% and 12.3%, respectively. Root N content declined by 40.7%. Stem and root P contents were lowest at the stable stage but rebounded significantly at the declining stage, increasing by 34.2% and 34.5%, respectively. The C:N and C:P of roots and stems initially increased and then decreased, peaking at either the developing or stable stages. In contrast, leaf C:N showed a gradual decline, leaf C:P first decreased and then increased, and leaf N:P gradually increased with succession. Multivariate analyses indicated that nebkha succession positively regulated soil physi-cochemical properties and root stoichiometric characteristics, while indirectly negatively regulating those of stems and leaves, thereby driving the plant-soil system away from nutrient accumulation toward depletion, and shifting nutrient limitation status from N limitation to N and P co-limitation.

Key words: Nitraria tangutorum, stoichiometric characteristics, successional stage, plant-soil interaction