Background: The diverse microbial communities in agricultural biogas fermenters are assumed to be well adapted for the anaerobic transformation of plant biomass to methane. Compared to natural systems, biogas reactors are limited in their hydrolytic potential. The reasons for this are not understood. Results: In this paper, we show that a typical industrial biogas reactor fed with maize silage, cow manure, and chicken manure has relatively lower hydrolysis rates compared to feces samples from herbivores. We provide evidence that on average, 2.5 genes encoding cellulolytic GHs/Mbp were identified in the biogas fermenter compared to 3.8 in the elephant feces and 3.2 in the cow rumen data sets. The ratio of genes coding for cellulolytic GH enz...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
The obstacle to optimal utilization of biogas technology is poor understanding of biogas microbiomes...
Additional file 5: Table S1. Process parameters of the biogas fermenter at time of sampling. These d...
Additional file 9. High-resolution version of Fig. 5a with continuous labeling of all bacterial bin...
The herbivore digestive tract is home to a complex community of anaerobic microbes that work togethe...
The herbivore digestive tract is home to a complex community of anaerobic microbes that work togethe...
Ruminant livestock is a major source of the potent greenhouse gas methane. The complex rumen microbi...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
Increased hydrolysis of easily digestible biomass may lead to acidosis of anaerobic reactors and dec...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
Ruminant livestock is a major source of the potent greenhouse gas methane. The complex rumen microbi...
<div><p>Diverse cellulolytic bacteria are essential for maintaining high lignocellulose degradation ...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
The obstacle to optimal utilization of biogas technology is poor understanding of biogas microbiomes...
Additional file 5: Table S1. Process parameters of the biogas fermenter at time of sampling. These d...
Additional file 9. High-resolution version of Fig. 5a with continuous labeling of all bacterial bin...
The herbivore digestive tract is home to a complex community of anaerobic microbes that work togethe...
The herbivore digestive tract is home to a complex community of anaerobic microbes that work togethe...
Ruminant livestock is a major source of the potent greenhouse gas methane. The complex rumen microbi...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
Increased hydrolysis of easily digestible biomass may lead to acidosis of anaerobic reactors and dec...
International audienceBACKGROUND: The rumen microbiota provides essential services to its host and, ...
Ruminant livestock is a major source of the potent greenhouse gas methane. The complex rumen microbi...
<div><p>Diverse cellulolytic bacteria are essential for maintaining high lignocellulose degradation ...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
Background: Microorganisms in biogas reactors are essential for degradation of organic matter and m...
The obstacle to optimal utilization of biogas technology is poor understanding of biogas microbiomes...