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An inter-laboratory comparison of multi-enzyme and multiple substrate-induced respiration assays to assess method consistency in soil monitoring

  • Rachel E. Creamer
  • , Pat Bellamy
  • , Helaina I.J. Black
  • , Clare M. Cameron
  • , Colin D. Campbell
  • , Paul Chamberlain
  • , Jim Harris
  • , Nisha Parekh
  • , Mark Pawlett
  • , Jan Poskitt
  • , Dote Stone
  • , Karl Ritz
    • Teagasc - Irish Agriculture and Food Development Authority
    • Cranfield University
    • Swedish University of Agricultural Sciences
    • UK Centre for Ecology and Hydrology (Lancaster. England)

    Research output: Contribution to journalArticlepeer-review

    Abstract

    The use of indicators in soil monitoring schemes to detect changes in soil quality is receiving increased attention, particularly the application of soil biological methods. However, to date, the ability to compare information from different laboratories applying soil microbiological techniques in broad-scale monitoring has rarely been taken into account. This study aimed to assess the consistency and repeatability of two techniques that are being evaluated for use as microbiological indicators of soil quality: multi-enzyme activity assay and multiple substrate-induced respiration (MSIR). Data were tested for intrinsic (within-assay plate) variation, inter-laboratory repeatability (geometric mean regression and correlation coefficient) and land-use discrimination (principal components analysis). Intrinsic variation was large for both assays suggesting that high replicate numbers are required. Inter-laboratory repeatability showed diverging patterns for the enzyme assay and MSIR. Discrimination of soils was significant for both techniques with relatively consistent patterns; however, combined laboratory discrimination analyses for each technique showed inconsistent correspondence between the laboratories. These issues could be addressed through the adoption of reliable analytical standards for biological methods along with adequate replication. However, until the former is addressed, dispersed analyses are not currently advisable for monitoring schemes.
    Original languageEnglish
    Pages (from-to)623-633
    JournalBiology and Fertility of Soils
    Volume45
    DOIs
    Publication statusPublished - 4 Apr 2009

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 15 - Life on Land
      SDG 15 Life on Land

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