The present study investigated the inhibitory effects of saturated fatty acids on methanogenesis in Archaea, and whether or not competitive inactivation of the methanogens’ coenzyme M (HS-CoM) is involved in the inhibition. Strains tested in batch cultures were Methanosarcina barkeri, Methanosarcina mazei, Methanococcus voltae, all incubated at 37°C, and Methanothermobacter thermoautotrophicus, incubated at 65°C. The fatty acids C10, C12, C14 and C18 were supplemented at 1 mg . ml–1 in cultivation medium. The methanogens were susceptible to C10 and C12, and less so to C14. Only M. thermoautotrophicus was affected by C18. In M. mazei cultures, excessive HS-CoM did not prevent the action of C14 which might suggest that competitive inhibition ...
Three inhibitors targeting different microorganisms, both from Archaea and Bacteria domains, were ev...
Methanogenic inhibitors are often used to study methanogenesis in complex microbial communities or i...
Methanogenic archaea are strictly anaerobic organisms responsible for the production of all biologic...
Lipids can be anaerobically digested to methane, but methanogens are often considered to be highly s...
<p>Long-chain fatty acids (LCFA) can inhibit methane production by methanogenic archaea. The effect ...
Saturated fatty acids (SFAs) are known to suppress ruminal methanogenesis, but the underlying mechan...
Anaerobic degradation of long-chain fatty acids (LCFA) is essential for efficient biogas production ...
Long-chain fatty acids (LCFA) are generally considered highly toxic towards methanogens. However, hi...
Copyright © 2013 Xuan Zhou et al. This is an open access article distributed under the Creative Comm...
Dietary lipids can suppress methane emission from ruminants, but effects are variable. Especially th...
Fats, oils and greases are produced from a variety of industries, including animal rendering operati...
Study of the efficacy of methanogenesis inhibitors in the rumen has given inconsistent results, main...
The composition of volatile fatty acids in the biogas digester based on cattle manure as substrate a...
OBJECTIVE: Lauric acid (C12) is a medium-chain fatty acid that inhibits growth and production of the...
[Excerpt] Under anaerobic conditions long chain fatty acids (LCFA) can be converted to methane by sy...
Three inhibitors targeting different microorganisms, both from Archaea and Bacteria domains, were ev...
Methanogenic inhibitors are often used to study methanogenesis in complex microbial communities or i...
Methanogenic archaea are strictly anaerobic organisms responsible for the production of all biologic...
Lipids can be anaerobically digested to methane, but methanogens are often considered to be highly s...
<p>Long-chain fatty acids (LCFA) can inhibit methane production by methanogenic archaea. The effect ...
Saturated fatty acids (SFAs) are known to suppress ruminal methanogenesis, but the underlying mechan...
Anaerobic degradation of long-chain fatty acids (LCFA) is essential for efficient biogas production ...
Long-chain fatty acids (LCFA) are generally considered highly toxic towards methanogens. However, hi...
Copyright © 2013 Xuan Zhou et al. This is an open access article distributed under the Creative Comm...
Dietary lipids can suppress methane emission from ruminants, but effects are variable. Especially th...
Fats, oils and greases are produced from a variety of industries, including animal rendering operati...
Study of the efficacy of methanogenesis inhibitors in the rumen has given inconsistent results, main...
The composition of volatile fatty acids in the biogas digester based on cattle manure as substrate a...
OBJECTIVE: Lauric acid (C12) is a medium-chain fatty acid that inhibits growth and production of the...
[Excerpt] Under anaerobic conditions long chain fatty acids (LCFA) can be converted to methane by sy...
Three inhibitors targeting different microorganisms, both from Archaea and Bacteria domains, were ev...
Methanogenic inhibitors are often used to study methanogenesis in complex microbial communities or i...
Methanogenic archaea are strictly anaerobic organisms responsible for the production of all biologic...