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Optimization of Fermented Maize Stover for the Fattening Phase of Geese: Effect on Production Performance and Gut Microflora

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Journal Animals (Basel)
Date 2024 Feb 10
PMID 38338076
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Abstract

To optimize the utilization of fermented maize stover (FMS) feed during the fattening phase of Xianghai flying geese (XFG), a total of 300 XFG at 125 days of age were randomly assigned to four dietary treatment groups with three replicates of 25 in each set. Group A was fed the basal fattening diet, while the B, C, and D groups were fed the basic fattening diet and diets supplemented with 5%, 10% or 15% FMS, respectively. The findings indicate that the production performance indicators (especially the dressed, eviscerated and breast muscle yield) of Group D closely resembled Group A more than Groups B and C. Intestinal morphometry found that the jejunal villus height and the villus height/crypt depth were significantly increased in Group D compared to Group A. Next, 16S rRNA amplicon sequencing of the extracted DNA revealed that beneficial microbiota ( and ) showed increased abundance in Group D. Cecal flora function analysis further revealed that some amino acid and glycerol biosynthesis were found to be associated with growth performance in geese. These findings suggest that incorporating 15% FMS as a substitute for a portion of the feed during the fattening phase of XFG can effectively sustain their production performance, optimize the gut microbial community and morphometrical traits, provide new insight into using non-conventional feed resources to reduce feed cost and improve economic benefits in the breeding industry.

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References
1.
Yan J, Zhou B, Xi Y, Huan H, Li M, Yu J . Fermented feed regulates growth performance and the cecal microbiota community in geese. Poult Sci. 2019; 98(10):4673-4684. DOI: 10.3382/ps/pez169. View

2.
Huang P, Liu Y . A Reasonable Diet Promotes Balance of Intestinal Microbiota: Prevention of Precolorectal Cancer. Biomed Res Int. 2019; 2019:3405278. PMC: 6683831. DOI: 10.1155/2019/3405278. View

3.
Lu Z, Zeng N, Jiang S, Wang X, Yan H, Gao C . Dietary replacement of soybean meal by fermented feedstuffs for aged laying hens: effects on laying performance, egg quality, nutrient digestibility, intestinal health, follicle development, and biological parameters in a long-term feeding period. Poult Sci. 2023; 102(3):102478. PMC: 9879788. DOI: 10.1016/j.psj.2023.102478. View

4.
Rios-Covian D, Ruas-Madiedo P, Margolles A, Gueimonde M, de Los Reyes-Gavilan C, Salazar N . Intestinal Short Chain Fatty Acids and their Link with Diet and Human Health. Front Microbiol. 2016; 7:185. PMC: 4756104. DOI: 10.3389/fmicb.2016.00185. View

5.
Flint H, Bayer E . Plant cell wall breakdown by anaerobic microorganisms from the Mammalian digestive tract. Ann N Y Acad Sci. 2008; 1125:280-8. DOI: 10.1196/annals.1419.022. View