The effect of experimental warming and precipitation change on proteolytic enzyme activity: positive feedbacks to nitrogen availability are not universal

TitleThe effect of experimental warming and precipitation change on proteolytic enzyme activity: positive feedbacks to nitrogen availability are not universal
Publication TypeJournal Article
Year of Publication2012
AuthorsBrzostek E.R, Blair J.M, Dukes J.S, Frey S.D, Hobbie S.E, Melillo J.M, Mitchell R.J, Pendall E., Reich P.B, Shaver GR, Stefanski A., Tjoelker M.G, Finzi A.C
JournalGlobal Change BiologyGlobal Change Biology
Volume18
Pagination2617-2625
Date PublishedAug
ISBN Number1354-1013
Accession NumberISI:000306228300022
Keywordsamino-acids, Arctic tundra, carbon-dioxide, climate-change, cold-temperate forests, global change, litter decomposition, microbial respiration, organic nitrogen, proteolytic enzymes, seasonal-variation, soil nitrogen cycle, soil organic-matter, soil organic-matter decomposition, terrestrial ecosystems
Abstract

Nitrogen regulates the Earth's climate system by constraining the terrestrial sink for atmospheric CO2. Proteolytic enzymes are a principal driver of the within-system cycle of soil nitrogen, yet there is little to no understanding of their response to climate change. Here, we use a single methodology to investigate potential proteolytic enzyme activity in soils from 16 global change experiments. We show that regardless of geographical location or experimental manipulation (i.e., temperature, precipitation, or both), all sites plotted along a single line relating the response ratio of potential proteolytic activity to soil moisture deficit, the difference between precipitation and evapotranspiration. In particular, warming and reductions in precipitation stimulated potential proteolytic activity in mesic sites temperate and boreal forests, arctic tundra whereas these manipulations suppressed potential activity in dry grasslands. This study provides a foundation for a simple representation of the impacts of climate change on a central component of the nitrogen cycle.

Alternate JournalGlobal Change Biol