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Root size fractions of ryegrass and clover contribute differently to C and N inclusion in SOM

  • Jim Rasmussen
  • , Jørgen Eriksen
  • , Erik Steen Jensen
  • , Henning Høgh-Jensen

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    Grass-clover mixtures are essential in many low-N-input cropping systems, but the importance of various root fractions for the below-ground N dynamics are not well understood. This may be due to the difficulties of studying root longevity and turnover in situ in mixtures. The present field study, investigated (1) the development in root biomass over two growing seasons and (2) the turnover of dual (15)N- and (14)C-labelled ryegrass and white clover root material. Litter bags containing various dual-labelled plant materials were incubated in cylinders inserted in the topsoil of a young ryegrass-clover ley. Disappearance of (14)C and (15)N from the litter bag material were studied for 1 year following incubation. Four times during two growing seasons, roots were divided into two classes: large roots, retained on a 1-cm sieve, and small roots, passing a 1-cm sieve but retained on a 100-A mu m sieve. Large root biomass increased during the two growing seasons, and small root biomass increased during the growing seasons but decreased during autumn and winter. White clover roots lost (14)C and (15)N almost twice as fast as ryegrass roots. The disappearance pattern of (14)C and (15)N from dual-labelled ryegrass and white clover roots and the C and N contents of the recovered root material indicate that large roots are determining soil C pool build-up, whereas small roots determine soil N pool build-up.
    Original languageEnglish
    Pages (from-to)293-297
    Number of pages5
    JournalBiology and Fertility of Soils
    Volume46
    Issue number3
    DOIs
    Publication statusPublished - 2010

    Keywords

    • Carbon (14)
    • Nitrogen (15)
    • Root recovery
    • Root turnover

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