Aridity threshold for alpine soil nitrogen isotope signature and ecosystem nitrogen cycling

被引:3
|
作者
Mao, Jinhua [1 ]
Pan, Junxiao [1 ]
Song, Lei [1 ]
Zhang, Ruiyang [1 ]
Wang, Jinsong [1 ]
Tian, Dashuan [1 ]
Wang, Quancheng [1 ]
Liao, Jiaqiang [1 ,2 ]
Peng, Jinlong [1 ,2 ]
Niu, Shuli [1 ,2 ,3 ]
机构
[1] Chinese Acad Sci, Inst Geog Sci & Nat Resources Res, Key Lab Ecosyst Network Observat & Modeling, Beijing, Peoples R China
[2] Univ Chinese Acad Sci, Coll Resources & Environm, Beijing, Peoples R China
[3] Chinese Acad Sci, Inst Geog Sci & Nat Resources Res, Synth Res Ctr Chinese Ecosyst Res Network, Key Lab Ecosyst Network Observat & Modeling, Beijing 100101, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
drought; nitrogen cycling; nitrogen limitation; Qinghai-Tibetan plateau; soil nitrogen availability; stable nitrogen isotope; NATURAL-ABUNDANCE; GLOBAL PATTERNS; DROUGHT; CLIMATE; PLANT; MINERALIZATION; GRADIENT; IMMOBILIZATION; NITRIFICATION; PRECIPITATION;
D O I
10.1111/gcb.17357
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Determination of tipping points in nitrogen (N) isotope (delta 15N) natural abundance, especially soil delta 15N, with increasing aridity, is critical for estimating N-cycling dynamics and N limitation in terrestrial ecosystems. However, whether there are linear or nonlinear responses of soil delta 15N to increases in aridity and if these responses correspond well with soil N cycling remains largely unknown. In this study, we investigated soil delta 15N and soil N-cycling characteristics in both topsoil and subsoil layers along a drought gradient across a 3000-km transect of drylands on the Qinghai-Tibetan Plateau. We found that the effect of increasing aridity on soil delta 15N values shifted from negative to positive with thresholds at aridity index (AI) = 0.27 and 0.29 for the topsoil and subsoil, respectively, although soil N pools and N transformation rates linearly decreased with increasing aridity in both soil layers. Furthermore, we identified markedly different correlations between soil delta 15N and soil N-cycling traits above and below the AI thresholds (0.27 and 0.29 for topsoil and subsoil, respectively). Specifically, in wetter regions, soil delta 15N positively correlated with most soil N-cycling traits, suggesting that high soil delta 15N may result from the "openness" of soil N cycling. Conversely, in drier regions, soil delta 15N showed insignificant relationships with soil N-cycling traits and correlated well with factors, such as soil-available phosphorus and foliage delta 15N, demonstrating that pathways other than typical soil N cycling may dominate soil delta 15N under drier conditions. Overall, these results highlight that different ecosystem N-cycling processes may drive soil delta 15N along the aridity gradient, broadening our understanding of N cycling as indicated by soil delta 15N under changing drought regimes. The aridity threshold of soil delta 15N should be considered in terrestrial N-cycling models when incorporating 15N isotope signals to predict N cycling and availability under climatic dryness. Using an aridity gradient across a 3000-km transect of drylands on the Qinghai-Tibetan Plateau, we found that the effect of increasing aridity on soil delta 15N values shifted from negative to positive in both topsoil and subsoil layers. We further found different mechanisms driving soil 15N isotopes in different aridity regions. In wetter regions, high soil delta 15N mainly result from 15N fractionation during soil N cycling, whereas, in drier regions, high soil delta 15N might be attributed to other mechanisms.image
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Plant community effects on soil moisture and nitrogen cycling in a semi-arid ecosystem
    Kendalynn A. Morris
    Peter Saetre
    Urszula Norton
    John M. Stark
    Biogeochemistry, 2022, 159 : 215 - 232
  • [32] Accelerated soil nitrogen cycling in response to a whole ecosystem acid rain mitigation experiment
    Marinos, Richard E.
    Groffman, Peter M.
    Driscoll, Charles T.
    Bernhardt, Emily S.
    SOIL BIOLOGY & BIOCHEMISTRY, 2024, 189
  • [33] Plant community effects on soil moisture and nitrogen cycling in a semi-arid ecosystem
    Morris, Kendalynn A.
    Saetre, Peter
    Norton, Urszula
    Stark, John M.
    BIOGEOCHEMISTRY, 2022, 159 (02) : 215 - 232
  • [34] Nitrogen deposition impacts on the amount and stability of soil organic matter in an alpine meadow ecosystem depend on the form and rate of applied nitrogen
    Fang, H. J.
    Cheng, S. L.
    Yu, G. R.
    Yang, X. M.
    Xu, M. J.
    Wang, Y. S.
    Li, L. S.
    Dang, X. S.
    Wang, L.
    Li, Y. N.
    EUROPEAN JOURNAL OF SOIL SCIENCE, 2014, 65 (04) : 510 - 519
  • [35] INPUTS AND STORAGE OF NITROGEN IN WINTER SNOWPACK IN AN ALPINE ECOSYSTEM
    BOWMAN, WD
    ARCTIC AND ALPINE RESEARCH, 1992, 24 (03) : 211 - 215
  • [36] Tracing nitrogen cycling in mining waters using stable nitrogen isotope analysis
    Nilsson, Lino
    Widerlund, Anders
    APPLIED GEOCHEMISTRY, 2017, 84 : 41 - 51
  • [37] Soil nitrogen amendment effects on seasonal nitrogen mineralization and nitrogen cycling in maize production
    Ma, BL
    Dwyer, LM
    Gregorich, EG
    AGRONOMY JOURNAL, 1999, 91 (06) : 1003 - 1009
  • [38] Soil nitrogen heterogeneity in a Dehesa ecosystem
    A. Gallardo
    J.J. Rodríguez-Saucedo
    F. Covelo
    R. Fernández-Alés
    Plant and Soil, 2000, 222 : 71 - 82
  • [39] SOIL ANIMALS AND NITROGEN MIGRATION IN AN ECOSYSTEM
    GORDIENKO, SA
    POKARZEVSKIJ, AD
    KRIVOLUTZKIJ, DP
    SEVERTZOV, AN
    EKOLOGIA CSFR, 1984, 3 (04): : 391 - 397
  • [40] Soil nitrogen heterogeneity in a Dehesa ecosystem
    Gallardo, A
    Rodríguez-Saucedo, JJ
    Covelo, F
    Fernández-Alés, R
    PLANT AND SOIL, 2000, 222 (1-2) : 71 - 82