Unraveling the impact of human perturbation on nitrogen cycling in terrestrial ecosystems of lower Himalaya, Pakistan

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作者
Tahir Zaman
Saeed Ahmad Asad
Muhammad Irshad
Muhammad Faridullah
Rashid Shahzad
Awais Nazir
Akhtar Arefeen
Farhan Iqbal
机构
[1] COMSATS University Islamabad,Department of Environmental Sciences
[2] COMSATS University Islamabad,Department of Bio Sciences
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Terrestrial ecosystems; Greenhouse gas; Nitrification; N; O; N losses; Himalaya;
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摘要
Terrestrial ecosystems are under the enormous pressure of land use management regimes through human disturbances, resulting in the disruption of biogeochemical cycles and associated ecosystem services. Nitrogen (N) in soil ecosystems is of vital importance for primary productivity, hence estimating the extent of these human interventions on N-cycling processes becomes imperative from economic and environmental perspectives. This work investigated the impacts of variable anthropogenic activities on N cycling in three different terrestrial ecosystems (arable, grassland, and forest) in three regions of lower Himalaya, Pakistan. Potential nitrification (PNA) and denitrification (DEA) enzyme activities, relative distribution of inorganic N species (NH4, NO3), and the role of inherent edaphic factors were assessed. Results revealed high nitrification potentials and increased nitrous oxide (N2O) emissions in the incubated soil microcosms, in the order as arable > grassland > forest ecosystems. Notably, higher rates of both studied processes (~ 30–50%) and elevated soil mineral nitrogen pool were observed in arable ecosystems. Forest soils, assumed as pristine ecosystems relying mainly on natural N fixation, produced (de)nitrification rates relatively lower than grasslands, followed by arable soils which were moderately disturbed through long-term fertilization and intensive land-use regimes. Linear regression modeling revealed that the inorganic N species (particularly NO3), and inherent edaphic factors were the key determinants of high (de)nitrification rates, hence warn of accelerated N losses in these ecosystems. The study highlights that elevated PNA and DEA being proxies for the altered N cycling in the studied terrestrial ecosystems are of great ecological relevance in view of predicted N2O budget in the lower Himalaya.
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    Sit, Tim L.
    Loucanides, Althea J.
    Hu, Jialin
    Matusko, Brooke E.
    Terwilliger, Nicholas R.
    Shi, Wei
    Steffen, Samantha M.
    Woodley, Alex L.
    Hu, Shuijin
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2024, 195
  • [22] Human impact on terrestrial ecosystems, pollen calibration and quantitative reconstruction of past land-cover
    Gaillard, Marie-Jose
    Sugita, Shinya
    Bunting, Jane
    Dearing, John
    Bittmann, Felix
    [J]. VEGETATION HISTORY AND ARCHAEOBOTANY, 2008, 17 (05) : 415 - 418
  • [23] Human impact on terrestrial ecosystems, pollen calibration and quantitative reconstruction of past land-cover
    Marie-José Gaillard
    Shinya Sugita
    Jane Bunting
    John Dearing
    Felix Bittmann
    [J]. Vegetation History and Archaeobotany, 2008, 17 : 415 - 418
  • [24] The impact of forest fires and resultant haze on terrestrial ecosystems and human health in central Kalimantan, Indonesia
    Limin, Suwido H.
    Rieley, Jack .
    Jaya, Sehat
    Gumiri, Sulmin
    [J]. TROPICS, 2006, 15 (03): : 321 - 326
  • [25] Human behavioral impact on nitrogen flow - A case study of the rural areas of the middle and lower reaches of the Changjiang River, China
    Liu, Chen
    Wang, Qinxue
    Mizuochi, Motoyuki
    Wang, Kelin
    Lin, Yaoming
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2008, 125 (1-4) : 84 - 92
  • [26] The importance of uncertainty and sensitivity analyses in process-based models of carbon and nitrogen cycling in terrestrial ecosystems with particular emphasis on forest ecosystems Selected papers from a workshop organized by the International Society for Ecological Modelling (ISEM) at the third biennial meeting of the International Environmental Modelling and Software Society (IEMSS) in Burlington, Vermont, USA, August 9-13, 2006 Preface
    Larocque, Guy R.
    Bhatti, Jagtar S.
    Liu, Jinxun
    Ascough, James C., II
    Luckai, Nancy
    Gordon, Andrew M.
    [J]. ECOLOGICAL MODELLING, 2008, 219 (3-4) : 261 - 263