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Oligopeptides Represent a Preferred Source of Organic N Uptake: a global phenomenon?

  • Mark Farrell
  • , Paul Hill
  • , Thomas DeLuca
  • , Paula Roberts
  • , Knut Kielland
  • , Randy Dahlgren
  • , Daniel V. Murphy
  • , Phil J. Hobbs
  • , Richard D. Bardgett
  • , Davey L. Jones

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

Crynodeb

Over the past 20 years, our understanding of soil nitrogen (N) cycling has changed with evidence that amino acids are major substrates for both soil microorganisms and plants. However, the recent discovery that plants and microorganisms can directly utilize small peptides in soil needs to be evaluated for its ecological significance, because peptides are released earlier in protein decomposition and thus would provide significant competitive advantage to any organism that can use them directly. We tested whether soil microorganisms took up peptides faster than amino acids across a broad range of ecosystems. We show that l-enantiomeric-peptidic-N is taken up significantly faster than the equivalent monomer, and that this is universal across soils from different ecosystems, with distinct microbial communities. Peptides may have an unrecognized, global, importance in the terrestrial N cycle, providing N to soil microorganisms at an earlier stage of decomposition than previously acknowledged.
Iaith wreiddiolSaesneg
Tudalennau (o-i)133-145
CyfnodolynEcosystems
Cyfrol16
Rhif cyhoeddi1
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - Ion 2013

NDC y CU

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  1. NDC 15 - Bywyd ar y Tir
    NDC 15 Bywyd ar y Tir

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