Ruminococcus bromii is a keystone species for the degradation of resistant starch in the human colon
The release of energy from particulate substrates such as dietary fiber and resistant starch (RS) in the human colon may depend on the presence of specialist primary degraders (or ‘keystone species’) within the microbial community. We have explored the roles of four dominant amylolytic bacteria foun...
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Veröffentlicht in: | The ISME Journal 2012-08, Vol.6 (8), p.1535-1543 |
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Sprache: | eng |
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Zusammenfassung: | The release of energy from particulate substrates such as dietary fiber and resistant starch (RS) in the human colon may depend on the presence of specialist primary degraders (or ‘keystone species’) within the microbial community. We have explored the roles of four dominant amylolytic bacteria found in the human colon in the degradation and utilization of resistant starches.
Eubacterium rectale
and
Bacteroides thetaiotaomicron
showed limited ability to utilize RS2- and RS3-resistant starches by comparison with
Bifidobacterium adolescentis
and
Ruminococcus bromii
. In co-culture, however,
R. bromii
proved unique in stimulating RS2 and RS3 utilization by the other three bacterial species, even in a medium that does not permit growth of
R. bromii
itself. Having previously demonstrated low RS3 fermentation
in vivo
in two individuals with undetectable populations of
R. bromii
-related bacteria, we show here that supplementation of mixed fecal bacteria from one of these volunteers with
R. bromii
, but not with the other three species, greatly enhanced the extent of RS3 fermentation
in vitro
. This argues strongly that
R. bromii
has a pivotal role in fermentation of RS3 in the human large intestine, and that variation in the occurrence of this species and its close relatives may be a primary cause of variable energy recovery from this important component of the diet. This work also indicates that
R. bromii
possesses an exceptional ability to colonize and degrade starch particles when compared with previously studied amylolytic bacteria from the human colon. |
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ISSN: | 1751-7362 1751-7370 |
DOI: | 10.1038/ismej.2012.4 |