Effects of concentration of corn distillers dried grains with solubles and enzyme supplementation on cecal microbiota and performance in broiler chickens
With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS cont...
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Published in | Applied microbiology and biotechnology Vol. 101; no. 18; pp. 7017 - 7026 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.09.2017
Springer Nature B.V |
Subjects | |
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Abstract | With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS contains very high levels of non-starch polysaccharides and could be considered a good source of fibre. Despite knowledge of the role of the fibre in modulating intestinal microbiota and consequently influencing health, there is currently little information on the interactions between DDGS and intestinal microbiota. We assessed the changes in the cecal microbiota of broilers feed rations supplemented with DDGS (five concentrations: 0, 6, 12, 18 and 24%
w
/
w
) with and without presence of digestive enzymes. DDGS concentration was strongly positively correlated (
P
= 3.7e
−17
,
r
= 0.74) with feed conversion efficiency (FCR), diminishing broiler performance with higher concentrations. Additionally, DDGS concentrations positively correlated with Richness index (
P
= 1.5e
−3
,
r
= 0.5), increasing the number of detectable species in the cecum. Among the most affected genera,
Faecalibacterium
(
P
= 0.032,
r
= −0.34) and
Streptococcus
(
P
= 7.9e
−3
,
r
= −0.39) were negatively correlated with DDGS, while
Turicibacter
(
P
= 2.8e
−4
,
r
= 0.52) was positively correlated with the DDGS concentration. Enzymes showed minimal effect on cecal microbiota. |
---|---|
AbstractList | With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS contains very high levels of non-starch polysaccharides and could be considered a good source of fibre. Despite knowledge of the role of the fibre in modulating intestinal microbiota and consequently influencing health, there is currently little information on the interactions between DDGS and intestinal microbiota. We assessed the changes in the cecal microbiota of broilers feed rations supplemented with DDGS (five concentrations: 0, 6, 12, 18 and 24% w/w) with and without presence of digestive enzymes. DDGS concentration was strongly positively correlated (P = 3.7e-17, r = 0.74) with feed conversion efficiency (FCR), diminishing broiler performance with higher concentrations. Additionally, DDGS concentrations positively correlated with Richness index (P = 1.5e-3, r = 0.5), increasing the number of detectable species in the cecum. Among the most affected genera, Faecalibacterium (P = 0.032, r = -0.34) and Streptococcus (P = 7.9e-3, r = -0.39) were negatively correlated with DDGS, while Turicibacter (P = 2.8e-4, r = 0.52) was positively correlated with the DDGS concentration. Enzymes showed minimal effect on cecal microbiota. With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS contains very high levels of non-starch polysaccharides and could be considered a good source of fibre. Despite knowledge of the role of the fibre in modulating intestinal microbiota and consequently influencing health, there is currently little information on the interactions between DDGS and intestinal microbiota. We assessed the changes in the cecal microbiota of broilers feed rations supplemented with DDGS (five concentrations: 0, 6, 12, 18 and 24% w/w) with and without presence of digestive enzymes. DDGS concentration was strongly positively correlated (P = 3.7e , r = 0.74) with feed conversion efficiency (FCR), diminishing broiler performance with higher concentrations. Additionally, DDGS concentrations positively correlated with Richness index (P = 1.5e , r = 0.5), increasing the number of detectable species in the cecum. Among the most affected genera, Faecalibacterium (P = 0.032, r = -0.34) and Streptococcus (P = 7.9e , r = -0.39) were negatively correlated with DDGS, while Turicibacter (P = 2.8e , r = 0.52) was positively correlated with the DDGS concentration. Enzymes showed minimal effect on cecal microbiota. With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS contains very high levels of non-starch polysaccharides and could be considered a good source of fibre. Despite knowledge of the role of the fibre in modulating intestinal microbiota and consequently influencing health, there is currently little information on the interactions between DDGS and intestinal microbiota. We assessed the changes in the cecal microbiota of broilers feed rations supplemented with DDGS (five concentrations: 0, 6, 12, 18 and 24% w/w) with and without presence of digestive enzymes. DDGS concentration was strongly positively correlated (P = 3.7e-17, r = 0.74) with feed conversion efficiency (FCR), diminishing broiler performance with higher concentrations. Additionally, DDGS concentrations positively correlated with Richness index (P = 1.5e-3, r = 0.5), increasing the number of detectable species in the cecum. Among the most affected genera, Faecalibacterium (P = 0.032, r = -0.34) and Streptococcus (P = 7.9e-3, r = -0.39) were negatively correlated with DDGS, while Turicibacter (P = 2.8e-4, r = 0.52) was positively correlated with the DDGS concentration. Enzymes showed minimal effect on cecal microbiota. With the increasing production of ethanol for biofuels, a by-product of corn-based ethanol fermentation, dried distillers grains with solubles (DDGS) is finding its way into the feed of agricultural animals including cattle, pigs, poultry, sheep, goats, aquaculture species and horses. Corn DDGS contains very high levels of non-starch polysaccharides and could be considered a good source of fibre. Despite knowledge of the role of the fibre in modulating intestinal microbiota and consequently influencing health, there is currently little information on the interactions between DDGS and intestinal microbiota. We assessed the changes in the cecal microbiota of broilers feed rations supplemented with DDGS (five concentrations: 0, 6, 12, 18 and 24% w / w ) with and without presence of digestive enzymes. DDGS concentration was strongly positively correlated ( P = 3.7e −17 , r = 0.74) with feed conversion efficiency (FCR), diminishing broiler performance with higher concentrations. Additionally, DDGS concentrations positively correlated with Richness index ( P = 1.5e −3 , r = 0.5), increasing the number of detectable species in the cecum. Among the most affected genera, Faecalibacterium ( P = 0.032, r = −0.34) and Streptococcus ( P = 7.9e −3 , r = −0.39) were negatively correlated with DDGS, while Turicibacter ( P = 2.8e −4 , r = 0.52) was positively correlated with the DDGS concentration. Enzymes showed minimal effect on cecal microbiota. |
Author | Aljassim, Rafat Abudabos, Alaeldein M. Alkhulaifi, Manal M. Stanley, Dragana M. Al-Atiyat, Raed M. Albatshan, Hamad A. Aljumaah, Mashael R. |
Author_xml | – sequence: 1 givenname: Alaeldein M. surname: Abudabos fullname: Abudabos, Alaeldein M. email: aabudabos@ksu.edu.sa organization: Department of Animal Production, College of Food and Agriculture Sciences, King Saud University – sequence: 2 givenname: Raed M. surname: Al-Atiyat fullname: Al-Atiyat, Raed M. organization: Department of Animal Production, College of Food and Agriculture Sciences, King Saud University – sequence: 3 givenname: Hamad A. surname: Albatshan fullname: Albatshan, Hamad A. organization: Department of Animal Production, College of Food and Agriculture Sciences, King Saud University – sequence: 4 givenname: Rafat surname: Aljassim fullname: Aljassim, Rafat organization: Centre for Animal Science, Queensland Alliance for Agriculture and Food Innovation (QAAFI), The University of Queensland – sequence: 5 givenname: Mashael R. surname: Aljumaah fullname: Aljumaah, Mashael R. organization: Department of Botany and Microbiology, College of Science, King Saud University – sequence: 6 givenname: Manal M. surname: Alkhulaifi fullname: Alkhulaifi, Manal M. organization: Department of Botany and Microbiology, College of Science, King Saud University – sequence: 7 givenname: Dragana M. surname: Stanley fullname: Stanley, Dragana M. organization: Institute for Future Farming Systems, Central Queensland University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28770304$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Applied Microbial and Cell Physiology Aquaculture Biofuels Biomedical and Life Sciences Biotechnology Cecum Chickens Corn Correlation Digestive enzymes Enzymes Ethanol Feed conversion Fermentation Goats Horses Intestinal microflora Intestine Life Sciences Microbial Genetics and Genomics Microbiology Microbiota Non-starch polysaccharides Pigs Polysaccharides Poultry Rations Saccharides Sheep Starch Supplements Zea mays |
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Title | Effects of concentration of corn distillers dried grains with solubles and enzyme supplementation on cecal microbiota and performance in broiler chickens |
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