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The active core microbiota of two high-yielding laying hen breeds fed with different levels of calcium and phosphorus
The nutrient availability and supplementation of dietary phosphorus (P) and calcium (Ca) in avian feed, especially in laying hens, plays a vital role in phytase degradation and mineral utilization during the laying phase. The required concentration of P and Ca peaks during the laying phase, and the...
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Published in: | Frontiers in physiology 2022-09, Vol.13, p.951350-951350 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | The nutrient availability and supplementation of dietary phosphorus (P) and calcium (Ca) in avian feed, especially in laying hens, plays a vital role in phytase degradation and mineral utilization during the laying phase. The required concentration of P and Ca peaks during the laying phase, and the direct interaction between Ca and P concentration shrinks the availability of both supplements in the feed. Our goal was to characterize the active microbiota of the entire gastrointestinal tract (GIT) (crop, gizzard, duodenum, ileum, caeca), including digesta- and mucosa-associated communities of two contrasting high-yielding breeds of laying hens (Lohmann Brown Classic, LB; Lohmann LSL-Classic, LSL) under different P and Ca supplementation levels. Statistical significances were observed for breed, GIT section, Ca, and the interaction of GIT section x breed, P x Ca, Ca x breed and P x Ca x breed (
p
< 0.05). A core microbiota of five species was detected in more than 97% of all samples. They were represented by an uncl.
Lactobacillus
(average relative abundance (av. abu.) 12.1%),
Lactobacillus helveticus
(av. abu. 10.8%),
Megamonas funiformis
(av. abu. 6.8%),
Ligilactobacillus salivarius
(av. abu. 4.5%), and an uncl.
Fusicatenibacter
(av. abu. 1.1%). Our findings indicated that Ca and P supplementation levels 20% below the recommendation have a minor effect on the microbiota compared to the strong impact of the bird’s genetic background. Moreover, a core active microbiota across the GIT of two high-yielding laying hen breeds was revealed for the first time. |
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ISSN: | 1664-042X 1664-042X |
DOI: | 10.3389/fphys.2022.951350 |