Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 36 checked references that resolve
resolves10.1128/AEM.58.12.4026-4031.1992Soil Bacterial Biomass, Activity, Phospholipid Fatty Acid Pattern, and pH Tolerance in an Area Polluted with Alkaline Dust Deposition
resolves10.1016/0038-0717(94)00140-VMicrobial community structure and pH response in relation to soil organic matter quality in wood-ash fertilized, clear-cut or burned coniferous forest soils
resolves10.1016/j.soilbio.2004.06.004Can the extent of degradation of soil fungal mycelium during soil incubation be used to estimate ectomycorrhizal biomass in soil?
resolves10.1046/j.1365-3040.2003.01053.xTree root and soil heterotrophic respiration as revealed by girdling of boreal Scots pine forest: extending observations beyond the first year
resolves10.1016/S0038-0717(98)00050-9Interactive effects of pH and substrate quality on the fungal-to-bacterial ratio and qCO2 of microbial communities in forest soils
resolves10.1139/o59-099A RAPID METHOD OF TOTAL LIPID EXTRACTION AND PURIFICATION
resolves10.1007/BF00384433The use of phospholipid fatty acid analysis to estimate bacterial and fungal biomass in soil
resolves10.1016/0038-0717(93)90113-PShifts in the structure of soil microbial communities in limed forests as revealed by phospholipid fatty acid analysis
resolves10.1128/AEM.59.11.3605-3617.1993Phospholipid Fatty Acid Composition, Biomass, and Activity of Microbial Communities from Two Soil Types Experimentally Exposed to Different Heavy Metals
resolves10.1007/978-3-642-57219-7_11Annual Carbon and Nitrogen Fluxes in Soils Along the European Forest Transect, Determined Using 14C-Bomb
resolves10.1890/05-0755CARBON ALLOCATION TO ECTOMYCORRHIZAL FUNGI CORRELATES WITH BELOWGROUND ALLOCATION IN CULTURE STUDIES
resolves10.1046/j.1469-8137.2002.00417.xExtramatrical ectomycorrhizal mycelium contributes one‐third of microbial biomass and produces, together with associated roots, half the dissolved organic carbon in a forest soil
resolves10.1038/35081058Large-scale forest girdling shows that current photosynthesis drives soil respiration
resolves10.1046/j.1469-8137.2003.00867.xContrasting effects of nitrogen availability on plant carbon supply to mycorrhizal fungi and saprotrophs – a hypothesis based on field observations in boreal forest
resolves10.1007/BF00114715Ecological gradients of boreal forests in South Finland: an ordination test of Cajander's forest site type theory
resolves10.1007/s004420100698Soil nitrogen form and plant nitrogen uptake along a boreal forest productivity gradient
resolves10.1039/a900855aNovel calibration with correction for drift and non-linear response for continuous flow isotope ratio mass spectrometry applied to the determination of δ15N, total nitrogen, δ13C and total carbon in biological material†
resolves10.1111/j.1469-8137.2005.01532.xThe influence of external nitrogen on carbon allocation to
<i>Glomus intraradices</i>
in monoxenic arbuscular mycorrhiza
resolves10.1007/s002489900161Structure of the Microbial Communities in Coniferous Forest Soils in Relation to Site Fertility and Stand Development Stage
The 13 references without a DOI — listed, not checked
no DOI — not checkedAlexander M (1977) Introduction to soil microbiology, 2nd edn. Wiley, New York, pp 467
no DOI — not checkedDahl E, Gjems O, Kjelland-Lund J (1967) On the vegetation of Norwegian conifer forest in relation to the chemical properties of the humus layer. Medd Norske Skogsforsøksvesen 85:501–531
no DOI — not checkedFAO (1988) FAO/ UNESCO soil map of the world. Revised legend. (World resources report no. 60). FAO, Rome
no DOI — not checkedFederle TW (1986) Microbial distributions in soil–new techniques. In: Megusar F, Gantar M (eds) Perspectives in microbial ecology. Slovene Society for Microbiology, Ljubljana, pp 493–498
no DOI — not checkedMyrold DD (1999) Transformations of nitrogen. In: Sylvia DM, Fuhrmann JJ, Hartel PG, Zuberer DS (eds) Principles and applications of soil microbiology. Prentice-Hall, N.J., pp 259–294
no DOI — not checkedO’Leary WM and Wilkinson SG (1988) Gram-positive bacteria. In: Microbial lipids. Ratledge C, Wilkinson SG (eds) vol 1. Academic Press, London, pp 117–185
no DOI — not checkedPinkart HC, Ringelberg DB, Piceno MY, MacNaughton SJ, White DC (2002) Biochemical approaches to biomass measurements and community structure analysis. In: Crawford RL, Knudsen GR, McInerny MJ, Stetzenbach LD (eds) Manual of environmental microbiology. 2nd edn. ASM, Washington, D.C., pp 101–113
no DOI — not checkedSmith SE, Read DJ (1997) Mycorrhizal symbiosis, 2nd edn. Academic Press, London
no DOI — not checkedSterner RW, Elser JJ (2002) Ecological stoichiometry: the biology of elements from molecules to the biosphere. Princeton University Press, Princeton, N.J.
no DOI — not checkedTamm CO (1999) Optimum nutrition and nitrogen saturation in Scots pine stands. Stud For Suec 206:126
no DOI — not checkedTunlid A, White DC (1992) Biochemical analysis of biomass, community structure, nutritional status, and metabolic activity of microbial communities in soil In: Stotsky G, Bollag J-M (eds) Soil biochemistry. Dekker, New York, pp 229–261
no DOI — not checkedTutin TG, Heywood VH, Burges NA, Valentine SM, Walters SM, Webb DA (1964–1980) Flora Europea. Cambridge University Press, Cambridge
no DOI — not checkedWaring RH, Running SW (1998) Forest ecosystems—analysis at multiple scales, 2nd edn. Academic, San Diego, Calif.
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