Bacteria catalyze the formation and destruction of soil organic matter, but the bacterial dynamics in soil that govern carbon (C) cycling are not well understood. Life history strategies explain the complex dynamics of bacterial populations and activities based on trade-offs in energy allocation to growth, resource acquisition, and survival. Such trade-offs influence the fate of soil C, but their genomic basis remains poorly characterized. We used multisubstrate metagenomic DNA stable isotope probing to link genomic features of bacteria to their C acquisition and growth dynamics. We identify several genomic features associated with patterns of bacterial C acquisition and growth, notably genomic investment in resource acquisition and regulat...
The growth and physiology of soil microorganisms, which play vital roles in biogeochemical cycling, ...
Soil organic carbon performs a number of functions in ecosystems and it is clear that microbial comm...
A major thrust of terrestrial microbial ecology is focused on understanding when and how the composi...
Soil microorganisms determine the fate of soil organic matter (SOM), and their activities comprise a...
217 pagesSoil dwelling microorganisms are essential components of numerous ecosystem processes and b...
The life history strategies of soil microbes determine their metabolic potential and their response ...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Microorganisms have evolved various life-history strategies to survive fluctuating resource conditio...
Microbial physiology may be critical for projecting future changes in soil carbon. Still, predicting...
Microorganisms play key roles in terrestrial system processes, including the turnover of natural org...
The functioning, health, and productivity of soil is intimately tied to the complex network of inter...
BackgroundThe transformation of plant photosynthate into soil organic carbon and its recycling to CO...
Terrestrial carbon (C) represents the largest active global C pool. Microbes are estimated to mediat...
The fate of soil carbon depends on microbial processes, but whether different microbial taxa have in...
Abstract Background The transformation of plant photosynthate into soil organic carbon and its recyc...
The growth and physiology of soil microorganisms, which play vital roles in biogeochemical cycling, ...
Soil organic carbon performs a number of functions in ecosystems and it is clear that microbial comm...
A major thrust of terrestrial microbial ecology is focused on understanding when and how the composi...
Soil microorganisms determine the fate of soil organic matter (SOM), and their activities comprise a...
217 pagesSoil dwelling microorganisms are essential components of numerous ecosystem processes and b...
The life history strategies of soil microbes determine their metabolic potential and their response ...
The functioning, health, and productivity of soil are intimately tied to a complex network of intera...
Microorganisms have evolved various life-history strategies to survive fluctuating resource conditio...
Microbial physiology may be critical for projecting future changes in soil carbon. Still, predicting...
Microorganisms play key roles in terrestrial system processes, including the turnover of natural org...
The functioning, health, and productivity of soil is intimately tied to the complex network of inter...
BackgroundThe transformation of plant photosynthate into soil organic carbon and its recycling to CO...
Terrestrial carbon (C) represents the largest active global C pool. Microbes are estimated to mediat...
The fate of soil carbon depends on microbial processes, but whether different microbial taxa have in...
Abstract Background The transformation of plant photosynthate into soil organic carbon and its recyc...
The growth and physiology of soil microorganisms, which play vital roles in biogeochemical cycling, ...
Soil organic carbon performs a number of functions in ecosystems and it is clear that microbial comm...
A major thrust of terrestrial microbial ecology is focused on understanding when and how the composi...