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Integrating viruses into soil food web biogeochemistry

  • Catia Carreira
  • , Christian Lonborg
  • , Basistha Acharya
  • , Laxman Aryal
  • , Zivile Buivydaite
  • , Felipe Borim Correa
  • , Tingting Chen
  • , Christine Lorenzen Elberg
  • , Joanne B. Emerson
  • , Luke Hillary
  • , Ram B. Khadka
  • , Valerie Langlois
  • , Kyle Mason-Jones
  • , Tarquin Netherway
  • , Suvi Sutela
  • , Gareth Trubl
  • , Arno Wa Kangeri
  • , Ruiqi Wang
  • , Richard Allen White III
  • , Anne Winding
  • Tianci Zhao, Rumakanta Sapkota

Publikation: Bidrag till tidskriftÖversiktsartikelPeer review

Sammanfattning

The soil microbiome is recognized as an essential component of healthy soils. Viruses are also diverse and abundant in soils, but their roles in soil systems remain unclear. Here we argue for the consideration of viruses in soil microbial food webs and describe the impact of viruses on soil biogeochemistry. The soil food web is an intricate series of trophic levels that span from autotrophic microorganisms to plants and animals. Each soil system encompasses contrasting and dynamic physicochemical conditions, with labyrinthine habitats composed of particles. Conditions are prone to shifts in space and time, and this variability can obstruct or facilitate interactions of microorganisms and viruses. Because viruses can infect all domains of life, they must be considered as key regulators of soil food web dynamics and biogeochemical cycling. We highlight future research avenues that will enable a more robust understanding of the roles of viruses in soil function and health.Viruses can infect all domains of life and must therefore be considered as key regulators of ecological interactions that span from microorganisms to higher trophic levels.
OriginalspråkEngelska
Sidor (från-till)1918–1928
Antal sidor11
TidskriftNature Microbiology
Volym9
Nummer8
DOI
StatusPublicerad - 2024

Bibliografisk information

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© Springer Nature Limited 2024.

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