Published August 24, 2020 | Version v1
Dataset Open

Continental-scale patterns of extracellular enzyme activity in the subsoil: an overlooked reservoir of microbial activity

Authors/Creators

  • 1. University of California Merced*

Description

Chemical stabilization of microbial-derived products such as extracellular enzymes (EE) onto mineral surfaces has gained attention as a possibly important mechanism leading to the persistence of soil organic carbon (SOC). While the controls on EE activities and their stabilization in the surface soil are reasonably well-understood, how these activities change with soil depth and possibly diverge from those at the soil surface due to distinct physical, chemical, and biotic conditions remains unclear. We assessed EE activity to a depth of 1 m (10 cm increments) in 19 soil profiles across the Critical Zone Observatory Network, which represents a wide range of climates, soil orders, and vegetation types. For all EEs, activities per mass soil correlated positively with microbial biomass (MB) and SOC, all of which decreased logarithmically with depth (p < 0.05). Across all sites, over half of the potential soil EE activities per mass soil consistently occurred below 20 cm for all measured EEs. Activities per unit MB or SOC were substantially higher at depth (soils below 20 cm accounted for 80% of whole-profile EE activity), suggesting an accumulation of stabilized (i.e., mineral sorbed) EEs in subsoil horizons. The pronounced enzyme stabilization in subsurface horizons was corroborated by mixed-effects models that showed a significant, positive relationship between clay concentration and MB-normalized EE activities in the subsoil. Furthermore, the negative relationships between soil C, N, and P and C-, N-, and P-acquiring EEs found in the surface soil decoupled at 20 cm, which could have also been caused by EE stabilization. This finding suggests that EEs may not reflect soil nutrient availabilities at depth. Taken together, our results suggest that deeper soil horizons hold a significant reservoir of EEs, and that the controls of subsoil EEs differ from their surface soil counterparts.

Notes

Funding provided by: NSF EarthCube program *
Crossref Funder Registry ID:
Award Number: ICER-1541047

Funding provided by: NSF Critical Zone Observatory Network*
Crossref Funder Registry ID:
Award Number: EAR-1331939

Funding provided by: U.S. Department of Energy
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000015
Award Number: DE-AC52-07NA27344

Funding provided by: US Department of Energy Early Career Research Program Award *
Crossref Funder Registry ID:
Award Number: SCW1478

Funding provided by: National Science Foundation for RC CZO Cooperative agreement*
Crossref Funder Registry ID:
Award Number: EAR-1331872

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Related works

Is cited by
10.1128/mBio.01318-19 (DOI)