Simulated grazer effects on microbial respiration in a subarctic meadow:: Implications for nutrient competition between plants and soil microorganisms

被引:32
|
作者
Stark, S
Kytöviita, MM
机构
[1] Finnish Forest Res Inst, Rovaniemi Res Stn, FIN-96301 Rovaniemi, Finland
[2] Univ Oulu, Dept Biol, FIN-90570 Oulu, Finland
基金
芬兰科学院;
关键词
fertilization; herbivory; microbial respiration; microbial nutrient immobilization; nitrogen mineralization; subarctic grassland;
D O I
10.1016/j.apsoil.2005.04.002
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Plant-microbial competition for nutrients is considered to be a strong mechanism affecting nutrient distribution in subarctic ecosystems, but the role of grazers on the distribution of nutrients between the plants and soil microorganisms remain poorly understood. We designed a factorial fertilization and clipping experiment to study the potential competition between plants and soil microorganisms for soil nitrogen in an ecosystem under grazing. We assumed that clipping reduces plant photosynthetic capacity and C flux to the soil, which ultimately results in lower microbial substrate availability and reduced potential for N immobilization. In concurrence with microbial substrate availability, increased nutrient availability through fertilization was expected to enhance microbial N in the unclipped but not in the clipped treatment. Clipping significantly reduced microbial respiration, suggesting that grazing reduces the labile C available for soil microbes in the system. Clipping had no effect on microbial C and N and the amount of NH4-N captured in ion exchange resin bags, which was used as an index of net N mineralization. Microbial potential for N immobilization thus seemed insensitive to grazer-mediated changes in microbial availability of labile substrates. Fertilization had no effects or interactions with clipping on microbial C and N. By contrast, we found a close negative correlation between the plant root biomass and microbial N, indicating that plants had a negative impact on the microbial nutrient acquisition. The subarctic grassland vegetation seemed superior to the soil microorganisms in the competition for nutrients even when the plants were subjected to artificial grazing. We suggest that nutrient competition by higher plants constrained the microbial N immobilization in the system, which could explain why the reduction in microbial C availability by clipping had little effects on microbial N acquisition. In this subarctic system, grazing has significant influences on soil C cycling, but due to plant predominance in the competition for nutrients, does not affect N allocation between the plants and the soil microorganisms. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:20 / 31
页数:12
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  • [1] Decreased Soil Microbial Nitrogen Under Vegetation ‘Shrubification’ in the Subarctic Forest–Tundra Ecotone: The Potential Role of Increasing Nutrient Competition Between Plants and Soil Microorganisms
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    Manoj Kumar
    Eero Myrsky
    Jere Vuorinen
    Anu M. Kantola
    Ville-Veikko Telkki
    Sofie Sjögersten
    Johan Olofsson
    Minna K. Männistö
    [J]. Ecosystems, 2023, 26 : 1504 - 1523
  • [2] Decreased Soil Microbial Nitrogen Under Vegetation 'Shrubification' in the Subarctic Forest-Tundra Ecotone: The Potential Role of Increasing Nutrient Competition Between Plants and Soil Microorganisms
    Stark, Sari
    Kumar, Manoj
    Myrsky, Eero
    Vuorinen, Jere
    Kantola, Anu M.
    Telkki, Ville-Veikko
    Sjogersten, Sofie
    Olofsson, Johan
    Mannisto, Minna K.
    [J]. ECOSYSTEMS, 2023, 26 (07) : 1504 - 1523
  • [3] Competition for nitrogen between plants and soil microorganisms
    Kaye, JP
    Hart, SC
    [J]. TRENDS IN ECOLOGY & EVOLUTION, 1997, 12 (04) : 139 - 143
  • [4] Prolonged simulated acid rain treatment in the subarctic: Effect on the soil respiration rate and microbial biomass
    Vanhala, P
    Fritze, H
    Neuvonen, S
    [J]. BIOLOGY AND FERTILITY OF SOILS, 1996, 23 (01) : 7 - 14
  • [5] MUTUALISM AND COMPETITION BETWEEN PLANTS AND DECOMPOSERS - IMPLICATIONS FOR NUTRIENT ALLOCATION IN ECOSYSTEMS
    HARTE, J
    KINZIG, AP
    [J]. AMERICAN NATURALIST, 1993, 141 (06): : 829 - 846
  • [6] Effects of litter addition and warming on soil carbon, nutrient pools and microbial communities in a subarctic heath ecosystem
    Rinnan, Riikka
    Michelsen, Anders
    Jonasson, Sven
    [J]. APPLIED SOIL ECOLOGY, 2008, 39 (03) : 271 - 281
  • [7] Earthworms regulate plants? effects on soil microbial nutrient limitations: Examinations with contrasting soils and moisture
    Mao, Na
    Shao, Ming'an
    Wang, Xiang
    Wei, Xiaorong
    [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 329
  • [8] Cascading effects from plants to soil microorganisms explain how plant species richness and simulated climate change affect soil multifunctionality
    Valencia, Enrique
    Gross, Nicolas
    Quero, Jose L.
    Carmona, Carlos P.
    Ochoa, Victoria
    Gozalo, Beatriz
    Delgado-Baquerizo, Manuel
    Dumack, Kenneth
    Hamonts, Kelly
    Singh, Brajesh K.
    Bonkowski, Michael
    Maestre, Fernando T.
    [J]. GLOBAL CHANGE BIOLOGY, 2018, 24 (12) : 5642 - 5654
  • [9] Dominant plant species alter stoichiometric imbalances between soil microbes and their resources in an alpine grassland: Implications for soil microbial respiration
    Wang, Ying
    Niu, Decao
    Yuan, Xiaobo
    Guo, Ding
    Fu, Hua
    Elser, James J.
    [J]. GEODERMA, 2023, 431
  • [10] Soil respiration, microbial biomass and nutrient availability after the second amendment are influenced by legacy effects of prior residue addition
    Marschner, P.
    Hatam, Z.
    Cavagnaro, T. R.
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2015, 88 : 169 - 177