<p>pH influences the occurrence and distribution of microorganisms. Microbes typically live over a range of 3–4 pH units and are described as acidophiles, neutrophiles, and alkaliphiles, depending on the optimal pH for growth. Their growth rates vary with pH along bell- or triangle-shaped curves, which reflect pH limits of cell structural integrity and the interference of pH with cell metabolism. We propose that pH can also affect the thermodynamics and kinetics of microbial respiration, which then help shape the composition and function of microbial communities. Here we use geochemical reaction modeling to examine how environmental pH controls the energy yields of common redox reactions in anoxic environments, including syntrophic oxidatio...
The understanding of how carbon fluxes are distributed through a metabolic network offers an overvie...
The Earth’s subsurface represents a complex electrochemical environment that contains many electro-a...
Microbes are widespread in natural ecosystems where they create complex communities. Understanding t...
pH influences the occurrence and distribution of microorganisms. Microbes typically live over a rang...
In a companion paper, we examined the thermodynamic responses of microbial redox reactions to pH cha...
In a companion paper, we examined the thermodynamic responses of microbial redox reactions to pH cha...
Thesis (Ph.D.)--University of Washington, 2018Chemical and physical properties play a crucial role i...
Abstract Background Production or consumption of prot...
Thesis (Ph.D.)--University of Washington, 2022A thorough understanding of microbial life on Earth an...
Awareness is growing that human health cannot be considered in isolation but is inextricably woven w...
<div><p>Microbes usually exist in communities consisting of myriad different but interacting species...
Background pH is frequently reported as the main driver for prokaryotic community structure in soils...
Theoretical full diagram and rationally. Figure S1A. Overall theoretical diagram of expected interac...
Geochemical models typically represent organic matter (OM) as consisting of multiple, independent po...
Understanding how environmental factors affect microbial survival is an important open problem in mi...
The understanding of how carbon fluxes are distributed through a metabolic network offers an overvie...
The Earth’s subsurface represents a complex electrochemical environment that contains many electro-a...
Microbes are widespread in natural ecosystems where they create complex communities. Understanding t...
pH influences the occurrence and distribution of microorganisms. Microbes typically live over a rang...
In a companion paper, we examined the thermodynamic responses of microbial redox reactions to pH cha...
In a companion paper, we examined the thermodynamic responses of microbial redox reactions to pH cha...
Thesis (Ph.D.)--University of Washington, 2018Chemical and physical properties play a crucial role i...
Abstract Background Production or consumption of prot...
Thesis (Ph.D.)--University of Washington, 2022A thorough understanding of microbial life on Earth an...
Awareness is growing that human health cannot be considered in isolation but is inextricably woven w...
<div><p>Microbes usually exist in communities consisting of myriad different but interacting species...
Background pH is frequently reported as the main driver for prokaryotic community structure in soils...
Theoretical full diagram and rationally. Figure S1A. Overall theoretical diagram of expected interac...
Geochemical models typically represent organic matter (OM) as consisting of multiple, independent po...
Understanding how environmental factors affect microbial survival is an important open problem in mi...
The understanding of how carbon fluxes are distributed through a metabolic network offers an overvie...
The Earth’s subsurface represents a complex electrochemical environment that contains many electro-a...
Microbes are widespread in natural ecosystems where they create complex communities. Understanding t...