As Earth\u27s climate warms, the massive stores of carbon found in soil are predicted to become depleted, and leave behind a smaller carbon pool that is less accessible to microbes. At a long-term forest soil-warming experiment in central Massachusetts, soil respiration and bacterial diversity have increased, while fungal biomass and microbially-accessible soil carbon have decreased. Here, we evaluate how warming has affected the microbial community\u27s capability to degrade chemically-complex soil carbon using lignin-amended BioSep beads. We profiled the bacterial and fungal communities using PCR-based methods and completed extracellular enzyme assays as a proxy for potential community function. We found that lignin-amended beads selected...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
Terrestrial ecosystems are an important carbon store, and this carbon is vulnerable to microbial deg...
As earth\u27s climate continues to warm, it is important to understand how the capacity of terrestri...
As Earth\u27s climate warms, the massive stores of carbon found in soil are predicted to become depl...
Soil microbes are major drivers of soil carbon cycling, yet we lack an understanding of how climate ...
The central objective of the proposed work was to develop a genomic approach (nucleic acid-based) th...
As Earth\u27s climate warms, soil carbon pools and the microbial communities that process them may c...
Soil microbes play an important role in terrestrial carbon (C) cycling, but their functional respons...
Soil microbes play an important role in terrestrial carbon (C) cycling, but their functional respons...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
Terrestrial ecosystems are an important carbon store, and this carbon is vulnerable to microbial deg...
As earth\u27s climate continues to warm, it is important to understand how the capacity of terrestri...
As Earth\u27s climate warms, the massive stores of carbon found in soil are predicted to become depl...
Soil microbes are major drivers of soil carbon cycling, yet we lack an understanding of how climate ...
The central objective of the proposed work was to develop a genomic approach (nucleic acid-based) th...
As Earth\u27s climate warms, soil carbon pools and the microbial communities that process them may c...
Soil microbes play an important role in terrestrial carbon (C) cycling, but their functional respons...
Soil microbes play an important role in terrestrial carbon (C) cycling, but their functional respons...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
Terrestrial ecosystems are an important carbon store, and this carbon is vulnerable to microbial deg...
As earth\u27s climate continues to warm, it is important to understand how the capacity of terrestri...