Iron Supplements Help Microbes Working Together to Thrive When Oxygen Is Scarce
Understanding how iron minerals accelerate collaborative metabolism will expand insights into the global carbon cycle.
Understanding how iron minerals accelerate collaborative metabolism will expand insights into the global carbon cycle.
Study reports first significant alcohol production by an archaeon.
Advances in simulating biogeochemical processes in permafrost will improve predictions of potential impacts on climate.
Researchers use engineered bacteria to simplify biofuels production, potentially lowering cost.
Microbes often evolve and work together to thrive in no oxygen situations, hinting at how carbon and energy flow just below soils and sediments.
Identifying enzyme instigators will speed the ability to manipulate plant cell wall structures for renewable feedstocks.
Researchers develop a new process for annotating cellulose-degrading enzymes.
Genetic engineering allows biomass-degrading bacterium to make fuel in a single process.
Researchers identify genetic regulatory networks that influence poplar wood formation, a key bioenergy plant.
Study shows that “stop” code can be assigned other meanings.
Study reveals insights into plant structural changes during bioenergy pretreatments.
The species and its relatives appear to be prevalent in areas of high methane flux worldwide.