The importance of methanogenic bacteria associated with ciliate protozoa was estimated either by removing protozoa from whole rumen fluid (using defaunated rumen fluid to correct for the effects of centrifugation on bacteria) or by isolating the protozoa. Rumen fluid was withdrawn from sheep inoculated with either Polyplastron multivesiculatum, a co-culture of Isotricha prostoma plus Entodinium spp. or a mixed type B fauna of Entodinium, Eudiplodinium and Epidinium spp. Methanogenesis was highest in rumen fluid containing a mixed protozoal population of the following genera: Entodinium, Eudiplodinium and Epidinium, was lower in defaunated rumen fluid and lowest in rumen fluid containing either I, prostoma plus Entodinium or P. multivesicula...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...
Ruminal methanogens reduce carbon dioxide to methane (CH 4 ), thereby preventing hydrogen use by bac...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...
The importance of methanogenic bacteria associated with ciliate protozoa was estimated either by rem...
First described in 1843, Rumen protozoa with their striking appearance were assumed to be important ...
Predation by ciliate protozoa can account for 90% of the eubacterial protein turnover in the rumen. ...
Predation by ciliate protozoa can account for 90% of the eubacterial protein turnover in the rumen. ...
Methane emissions from ruminant livestock contribute significantly to the large environmental footpr...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Ciliate protozoa contribute to ruminal digestion and emission of the greenhouse gas methane. Individ...
Interspecies hydrogen transfer between rumen holotrich ciliate protoza and methanogenic bacteria has...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Protozoa-associated methanogens (PAM) are considered one of the most active communities in the rumen...
The rumen is a very complex ecosystem in which there is a high diversity and concentration of rumen ...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...
Ruminal methanogens reduce carbon dioxide to methane (CH 4 ), thereby preventing hydrogen use by bac...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...
The importance of methanogenic bacteria associated with ciliate protozoa was estimated either by rem...
First described in 1843, Rumen protozoa with their striking appearance were assumed to be important ...
Predation by ciliate protozoa can account for 90% of the eubacterial protein turnover in the rumen. ...
Predation by ciliate protozoa can account for 90% of the eubacterial protein turnover in the rumen. ...
Methane emissions from ruminant livestock contribute significantly to the large environmental footpr...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Ciliate protozoa contribute to ruminal digestion and emission of the greenhouse gas methane. Individ...
Interspecies hydrogen transfer between rumen holotrich ciliate protoza and methanogenic bacteria has...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Rumen methanogenesis represents an energy waste for the ruminant and an important source of greenhou...
Protozoa-associated methanogens (PAM) are considered one of the most active communities in the rumen...
The rumen is a very complex ecosystem in which there is a high diversity and concentration of rumen ...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...
Ruminal methanogens reduce carbon dioxide to methane (CH 4 ), thereby preventing hydrogen use by bac...
Six reductive acetogenic bacteria from a variety of ruminal and non-ruminal environments were invest...