Snow depth has greater influence on moss biocrusts' soil multifunctionality than the number of freeze-thaw cycles

被引:0
作者
Yin, Benfeng [1 ,2 ]
Li, Jiwen [1 ,3 ]
Zhang, Qing [1 ,4 ]
Zhang, Shujun [1 ,5 ]
Liu, Ziyi [6 ]
Zhou, Xiaobing [1 ,2 ]
Wu, Nan [7 ]
Zhang, Yuanming [1 ]
机构
[1] Chinese Acad Sci, Xinjiang Inst Ecol & Geog, State Key Lab Desert & Oasis Ecol, Key Lab Ecol Safety & Sustainable Dev Arid Lands, Urumqi 830011, Peoples R China
[2] Chinese Acad Sci, Xinjiang Inst Ecol & Geog, Xinjiang Key Lab Biodivers Conservat & Applicat Ar, Urumqi 830011, Peoples R China
[3] Chinese Acad Agr Sci, Inst Agr Resources & Reg Planning, Key Lab Crop Nutr & Fertilizat, Minist Agr, Beijing 100081, Peoples R China
[4] Xinjiang Univ, Coll Ecol & Environm, Urumqi 830017, Peoples R China
[5] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[6] UCL, Dept Geog Econ & Geog BSc Econ, London, England
[7] Ludong Univ, Yantai Key Lab Coastal Hydrol Proc & Environm Secu, Yantai 264025, Shandong, Peoples R China
关键词
Biological soil crusts; Climate change; Soil enzyme activity; Nutrient cycles; Temperate desert; MICROBIAL BIOMASS; PHOSPHORUS ADSORPTION; GURBANTUNGGUT DESERT; COMMUNITY STRUCTURE; ENZYME-ACTIVITIES; ORGANIC-MATTER; NITROGEN; CRUSTS; CARBON; WINTER;
D O I
10.1016/j.apsoil.2024.105420
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Continued global warming and changes in precipitation patterns, especially regarding snow depth and freezethaw cycles (FTCs), have significantly affected the hydrothermal environment in winter at mid- and highlatitudes. In this study, we assessed the effects of changes in snow depth and FTCs, on the biogeochemical cycling of biological soil crusts. We collected moss crust soil samples from a temperate desert in northwest China, and measured the changes in the amount of snow (65 % snow removal, ambient snow, and 65 % snow increase) and FTCs (FT0, FT5, and FT15) under an artificial environment simulation, to determine the nutrient content and enzyme activities related to soil carbon, nitrogen, and phosphorus cycles. In terms of how snowfall and FTCs affect soil multifunctionality (SMF) of desert moss crusts, the research findings demonstrated that snow depth, FTCs, and their interplay have a significant influence on the carbon, nitrogen, phosphorus contents, enzyme activities, and SMF of moss crusts. Compared to snow removal, an increase in snow depth corresponded to a significant increase in the soil water content, and an improvement in soil carbon and nitrogen cycling and SMF. The number of FTCs increased, which led to enhancements in soil phosphorus cycling, soil total phosphorus, and available phosphorus content, together with a reduction in inorganic nitrogen content and the activities of certain enzymes involved in carbon and nitrogen cycling. The structural equation model indicated that snow depth had the greatest effect (total effect of 0.165) on SMF in moss crusts compared to FTCs (total effect of 0.048). Therefore, it is necessary to consider snow depth when examining the effects of climate change on nutrient cycling in the biological soil crusts of temperate deserts.
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页数:10
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共 67 条
  • [1] Soil organic carbon is significantly associated with the pore geometry, microbial diversity and enzyme activity of the macro-aggregates under different land uses
    Bhattacharyya, Ranjan
    Rabbi, Sheikh M. F.
    Zhang, Yaqi
    Young, Iain M.
    Jones, Andrew R.
    Dennis, Paul G.
    Menzies, Neal W.
    Kopittke, Peter M.
    Dalal, Ram C.
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 778
  • [2] Contrasting sensitivity to extreme winter warming events of dominant sub-Arctic heathland bryophyte and lichen species
    Bjerke, Jarle W.
    Bokhorst, Stef
    Zielke, Matthias
    Callaghan, Terry V.
    Bowles, Francis W.
    Phoenix, Gareth K.
    [J]. JOURNAL OF ECOLOGY, 2011, 99 (06) : 1481 - 1488
  • [3] Reduction in snow depth negatively affects decomposers but impact on decomposition rates is substrate dependent
    Bokhorst, Stef
    Metcalfe, Daniel B.
    Wardle, David A.
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2013, 62 : 157 - 164
  • [4] Investigating the relationship between biodiversity and ecosystem multifunctionality: challenges and solutions
    Byrnes, Jarrett E. K.
    Gamfeldt, Lars
    Isbell, Forest
    Lefcheck, Jonathan S.
    Griffin, John N.
    Hector, Andy
    Cardinale, Bradley J.
    Hooper, David U.
    Dee, Laura E.
    Duffy, J. Emmett
    [J]. METHODS IN ECOLOGY AND EVOLUTION, 2014, 5 (02): : 111 - 124
  • [5] Increased nitrogen leaching following soil freezing is due to decreased root uptake in a northern hardwood forest
    Campbell, John L.
    Socci, Anne M.
    Templer, Pamela H.
    [J]. GLOBAL CHANGE BIOLOGY, 2014, 20 (08) : 2663 - 2673
  • [6] The life of soils: Integrating the who and how of multifunctionality
    Creamer, R. E.
    Barel, J. M.
    Bongiorno, G.
    Zwetsloot, M. J.
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2022, 166
  • [7] Debnath S, 2015, J SOIL SCI PLANT NUT, V15, P848
  • [8] Microbial richness and composition independently drive soil multifunctionality
    Delgado-Baquerizo, Manuel
    Trivedi, Pankaj
    Trivedi, Chanda
    Eldridge, David J.
    Reich, Peter B.
    Jeffries, Thomas C.
    Singh, Brajesh K.
    [J]. FUNCTIONAL ECOLOGY, 2017, 31 (12) : 2330 - 2343
  • [9] Testing the effects of diversity on ecosystem multifunctionality using a multivariate model
    Dooley, Aine
    Isbell, Forest
    Kirwan, Laura
    Connolly, John
    Finn, John A.
    Brophy, Caroline
    [J]. ECOLOGY LETTERS, 2015, 18 (11) : 1242 - 1251
  • [10] Warming reduces the growth and diversity of biological soil crusts in a semi-arid environment: implications for ecosystem structure and functioning
    Escolar, Cristina
    Martinez, Isabel
    Bowker, Matthew A.
    Maestre, Fernando T.
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2012, 367 (1606) : 3087 - 3099