• Title of article

    Relationships between C and N availability, substrate age, and natural abundance 13C and 15N signatures of soil microbial biomass in a semiarid climate

  • Author/Authors

    Coyle، نويسنده , , Jeff S. and Dijkstra، نويسنده , , Paul and Doucett، نويسنده , , Richard R. and Schwartz، نويسنده , , Egbert and Hart، نويسنده , , Stephen C. and Hungate، نويسنده , , Bruce A.، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2009
  • Pages
    7
  • From page
    1605
  • To page
    1611
  • Abstract
    Soil microbial organisms are central to carbon (C) and nitrogen (N) transformations in soils, yet not much is known about the stable isotope composition of these essential regulators of element cycles. We investigated the relationship between C and N availability and stable C and N isotope composition of soil microbial biomass across a three million year old semiarid substrate age gradient in northern Arizona. The δ15N of soil microbial biomass was on average 7.2‰ higher than that of soil total N for all substrate ages and 1.6‰ higher than that of extractable N, but not significantly different for the youngest and oldest sites. Microbial 15N enrichment relative to soil extractable and total N was low at the youngest site, increased to a maximum after 55,000 years, and then decreased slightly with age. The degree of 15N enrichment of microbial biomass correlated negatively with the C:N mass ratio of the soil extractable pool. The δ13C signature of soil microbial biomass was 1.4‰ and 4.6‰ enriched relative to that of soil total and extractable pools respectively and showed significant differences between sites. However, microbial 13C enrichment was unrelated to measures of C and N availability. Our results confirm that 15N, but not 13C enrichment of soil microbial biomass reflects changes in C and N availability and N processing during long-term ecosystem development.
  • Keywords
    Pi?on–juniper , stable isotopes , Substrate age gradient , Microbial biomass , Natural isotopic abundance , Nitrogen mineralization , Nitrogen and carbon availability , Semiarid
  • Journal title
    Soil Biology and Biochemistry
  • Serial Year
    2009
  • Journal title
    Soil Biology and Biochemistry
  • Record number

    2184265