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植物乳杆菌、戊糖乳杆菌和菊粉饲料添加物可增强肉鸡的宏基因组功能。

Lactiplantibacillus plantarum, lactiplantibacillus pentosus and inulin meal inclusion boost the metagenomic function of broiler chickens.

作者信息

Ferrocino Ilario, Biasato Ilaria, Dabbou Sihem, Colombino Elena, Rantsiou Kalliopi, Squara Simone, Gariglio Marta, Capucchio Maria Teresa, Gasco Laura, Cordero Chiara Emilia, Liberto Erica, Schiavone Achille, Cocolin Luca

机构信息

Department of Agricultural, Forest and Food Sciences, University of Turin, Turin, Italy.

Center Agriculture Food Environment (C3A), University of Trento, Turin, Italy.

出版信息

Anim Microbiome. 2023 Aug 3;5(1):36. doi: 10.1186/s42523-023-00257-5.

Abstract

BACKGROUND

The inclusion of alternative ingredients in poultry feed is foreseen to impact poultry gut microbiota. New feeding strategies (probiotics/prebiotics) must be adopted to allow sustainable productions. Therefore, the current study aimed to use metagenomics approaches to determine how dietary inclusion of prebiotic (inulin) plus a multi-strain probiotic mixture of Lactiplantibacillus plantarum and Lactiplantibacillus pentosus affected microbiota composition and functions of the gastro-intestinal tract of the broilers during production. Fecal samples were collected at the beginning of the trial and after 5, 11 and 32 days for metataxonomic analysis. At the end of the trial, broilers were submitted to anatomo-pathological investigations and caecal content was subjected to volatilome analysis and DNAseq.

RESULTS

Probiotic plus prebiotic inclusion did not significantly influence bird performance and did not produce histopathological alterations or changes in blood measurements, which indicates that the probiotic did not impair the overall health status of the birds. The multi-strain probiotic plus inulin inclusion in broilers increased the abundance of Blautia, Faecalibacterium and Lachnospiraceae and as a consequence an increased level of butyric acid was observed. In addition, the administration of probiotics plus inulin modified the gut microbiota composition also at strain level since probiotics alone or in combination with inulin select specific Faecalibacterium prausnitzi strain populations. The metagenomic analysis showed in probiotic plus prebiotic fed broilers a higher number of genes required for branched-chain amino acid biosynthesis belonging to selected F. prausnitzi strains, which are crucial in increasing immune function resistance to pathogens. In the presence of the probiotic/prebiotic a reduction in the occurrence of antibiotic resistance genes belonging to aminoglycoside, beta-lactamase and lincosamide family was observed.

CONCLUSIONS

The positive microbiome modulation observed is particularly relevant, since the use of these alternative ingredients could promote a healthier status of the broiler's gut.

摘要

背景

预计在禽类饲料中添加替代成分会影响禽类肠道微生物群。必须采用新的饲养策略(益生菌/益生元)以实现可持续生产。因此,本研究旨在使用宏基因组学方法来确定在生产过程中,日粮中添加益生元(菊粉)以及植物乳杆菌和戊糖乳杆菌的多菌株益生菌混合物如何影响肉鸡胃肠道的微生物群组成和功能。在试验开始时以及第5、11和32天后采集粪便样本进行宏分类分析。试验结束时,对肉鸡进行解剖病理学检查,并对盲肠内容物进行挥发物分析和DNA测序。

结果

添加益生菌和益生元对鸡的生长性能没有显著影响,也未产生组织病理学改变或血液指标变化,这表明益生菌不会损害鸡的整体健康状况。在肉鸡中添加多菌株益生菌和菊粉增加了布劳特氏菌属、粪杆菌属和毛螺菌科的丰度,结果观察到丁酸水平升高。此外,添加益生菌和菊粉还在菌株水平上改变了肠道微生物群组成,因为单独使用益生菌或与菊粉联合使用时会选择特定的普拉梭菌菌株群体。宏基因组分析显示,在添加益生菌和益生元的肉鸡中,属于选定普拉梭菌菌株的支链氨基酸生物合成所需基因数量更多,这些基因对于提高对病原体的免疫功能抗性至关重要。在存在益生菌/益生元的情况下,观察到属于氨基糖苷、β-内酰胺酶和林可酰胺家族的抗生素抗性基因的出现有所减少。

结论

观察到的积极的微生物群调节作用尤为重要,因为使用这些替代成分可以促进肉鸡肠道更健康的状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb7d/10399007/38712ed8bfb4/42523_2023_257_Fig1_HTML.jpg

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