Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in ruminant animals. Low-quality forage with high levels of fibrous components can favor the proliferation of fibrolytic bacteria, but whether this can result a profound microbial shift after dietary intervention remains unclear. In this study, we monitored the microbial communities in the rumens of five ruminally cannulated Hu sheep through dietary transition from alfalfa hay (AH, pre-CS) to corn stover (CS, post-CS) and then back to AH (post-AH), with each treatment lasting for 14 days. The CS intervention significantly increased the relative abundance of microorganisms involved in lignocellulose degradation, including Fibrobacter and Treponema. When t...
International audienceABSTRACT Fibrobacter succinogenes , Ruminococcus albus , and Ruminococcus flav...
Increasing productivity is a key target in ruminant science which requires better understanding of t...
Increasing feed efficiency is a key target in ruminant science which requires a better understanding...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
Ruminant animals lack enzymes to break down fibrous feeds but they harbor microorganisms capable of ...
Lignification of cellulose limits the effective utilisation of fibre in plant cell wall. Lignocellul...
The pre-weaning period is crucial for rumen developmental plasticity, which can have a long-term imp...
Forage is an important component of diets for ruminant animals. Rumen bacteria are responsible for d...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
Ruminal fibre degradation is mediated by a complex community of rumen microbes, and its efficiency i...
The degradation of plant cell walls by ruminants is of major economic importance in the developed as...
International audienceFibrobacter succinogenes , Ruminococcus albus , and Ruminococcus flavefaciens ...
<p>The pre-weaning period is crucial for rumen developmental plasticity, which can have a long-term ...
International audienceABSTRACT Fibrobacter succinogenes , Ruminococcus albus , and Ruminococcus flav...
Increasing productivity is a key target in ruminant science which requires better understanding of t...
Increasing feed efficiency is a key target in ruminant science which requires a better understanding...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
<p>Limited lignocellulose degradation is the primary obstacle to feed digestion efficiency in rumina...
Ruminant animals lack enzymes to break down fibrous feeds but they harbor microorganisms capable of ...
Lignification of cellulose limits the effective utilisation of fibre in plant cell wall. Lignocellul...
The pre-weaning period is crucial for rumen developmental plasticity, which can have a long-term imp...
Forage is an important component of diets for ruminant animals. Rumen bacteria are responsible for d...
International audienceThe rumen harbors a great diversity of micro-organisms, comprising prokaryotes...
Ruminal fibre degradation is mediated by a complex community of rumen microbes, and its efficiency i...
The degradation of plant cell walls by ruminants is of major economic importance in the developed as...
International audienceFibrobacter succinogenes , Ruminococcus albus , and Ruminococcus flavefaciens ...
<p>The pre-weaning period is crucial for rumen developmental plasticity, which can have a long-term ...
International audienceABSTRACT Fibrobacter succinogenes , Ruminococcus albus , and Ruminococcus flav...
Increasing productivity is a key target in ruminant science which requires better understanding of t...
Increasing feed efficiency is a key target in ruminant science which requires a better understanding...