TY - JOUR
T1 - Contribution of soil algae to the global carbon cycle
AU - Jassey, Vincent E. J.
AU - Walcker, Romain
AU - Kardol, Paul
AU - Geisen, Stefan
AU - Heger, Thierry
AU - Lamentowicz, Mariusz
AU - Hamard, Samuel
AU - Lara, Enrique
PY - 2022
Y1 - 2022
N2 - Soil photoautotrophic prokaryotes and micro-eukaryotes - known as soil algae - are, together with heterotrophic microorganisms, a constitutive part of the microbiome in surface soils. Similar to plants, they fix atmospheric carbon (C) through photosynthesis for their own growth, yet their contribution to global and regional biogeochemical C cycling still remains quantitatively elusive. Here, we compiled an extensive dataset on soil algae to generate a better understanding of their distribution across biomes and predict their productivity at a global scale by means of machine learning modelling. We found that, on average, (5.5 +/- 3.4) x 10(6) algae inhabit each gram of surface soil. Soil algal abundance especially peaked in acidic, moist and vegetated soils. We estimate that, globally, soil algae take up around 3.6 Pg C per year, which corresponds to c. 6% of the net primary production of terrestrial vegetation. We demonstrate that the C fixed by soil algae is crucial to the global C cycle and should be integrated into land-based efforts to mitigate C emissions.
AB - Soil photoautotrophic prokaryotes and micro-eukaryotes - known as soil algae - are, together with heterotrophic microorganisms, a constitutive part of the microbiome in surface soils. Similar to plants, they fix atmospheric carbon (C) through photosynthesis for their own growth, yet their contribution to global and regional biogeochemical C cycling still remains quantitatively elusive. Here, we compiled an extensive dataset on soil algae to generate a better understanding of their distribution across biomes and predict their productivity at a global scale by means of machine learning modelling. We found that, on average, (5.5 +/- 3.4) x 10(6) algae inhabit each gram of surface soil. Soil algal abundance especially peaked in acidic, moist and vegetated soils. We estimate that, globally, soil algae take up around 3.6 Pg C per year, which corresponds to c. 6% of the net primary production of terrestrial vegetation. We demonstrate that the C fixed by soil algae is crucial to the global C cycle and should be integrated into land-based efforts to mitigate C emissions.
KW - biogeography
KW - microbial photosynthesis
KW - net primary productivity (NPP)
KW - photoautotrophs
KW - soil carbon (C) cycle
KW - soil microbiome
KW - biogeography
KW - microbial photosynthesis
KW - net primary productivity (NPP)
KW - photoautotrophs
KW - soil carbon (C) cycle
KW - soil microbiome
UR - https://res.slu.se/id/publ/116109
U2 - 10.1111/nph.17950
DO - 10.1111/nph.17950
M3 - Journal article
SN - 0028-646X
VL - 234
SP - 64
EP - 76
JO - New Phytologist
JF - New Phytologist
IS - 1
ER -