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在干奶期奶牛中补充木立芦荟:对瘤胃、直肠和牛奶微生物群的影响。

Aloe arborescens supplementation in drying-off dairy cows: influence on rumen, rectum and milk microbiomes.

作者信息

Cremonesi Paola, Biscarini Filippo, Conte Giuseppe, Piccioli-Cappelli Fiorenzo, Morandi Stefano, Silvetti Tiziana, Tringali Simona, Trevisi Erminio, Castiglioni Bianca, Brasca Milena

机构信息

Institute of Agricultural Biology and Biotechnology, Italian National Research Council, Lodi, Italy.

Dipartimento di Scienze Agrarie, Alimentari e Agro-ambientali, University of Pisa, Pisa, Italy.

出版信息

Anim Microbiome. 2024 Aug 31;6(1):49. doi: 10.1186/s42523-024-00336-1.

Abstract

BACKGROUND

In the context of the RABOLA project, which aimed to identify operational practices that lead to the reduction of antibiotic use in dairy cattle farming, lyophilised Aloe arborescens was administered orally to cows during the dry-off and peripartum periods. In this specific paper we wanted to examine whether oral administration of Aloe arborescens, in combination with the topical application of a teat sealant could exert an effect on the microbial populations of three cow microbiomes (rumen, milk, rectum), between dry-off and peripartum. Dry-off and peripartum are critical physiological phases of the cow's life, where both the mammary gland and the gastrointestinal tract undergo dramatic modifications, hence the relevance of evaluating the effects of dietary treatments.

METHODS

Thirty multiparous dairy cows were randomly allocated to three groups: Control (antibiotic treatment and internal teat sealant), Sealant (only internal teat sealant) and Aloe (internal teat sealant and Aloe arborescens homogenate administered orally). For 16S rRNA gene sequencing, rumen, rectum and milk samples were collected, not synchronously, at the most critical timepoints around dry-off and calving, considering the physiological activity of each biological site.

RESULTS

The rumen microbiome was predominantly characterized by Bacteroidetes and Firmicutes followed by Proteobacteria, while the rectum exhibited a prevalence of Firmicutes and Bacteroidetes. The milk microbiome mainly comprised Firmicutes, Proteobacteria, Actinobacteria and Bacteroidetes. Alistipes spp., Ruminococcaceae UCG-10 group, Prevotellaceae UCG-001 group, and Bacteroides spp., involved in cellulose and hemicellulose degradation, enhancement of energy metabolism, and peptide breakdown, showed increment in the rectum microbiome with Aloe supplementation. The rectum microbiome in the Aloe group exhibited a significant increase in the Firmicutes to Bacteroidetes ratio and alpha-diversity at seven days after dry-off period. Beta-diversity showed a significant separation between treatments for the rectum and milk microbiomes. Aloe supplementation seemed to enrich milk microbial composition, whereas the Sealant group showed greater diversity compared to the Control group, albeit this included an increase in microorganisms frequently associated with mastitis.

CONCLUSIONS

Aloe arborescens administration during the dry-off period did not demonstrate any observable impact on the microbial composition of the rumen, a finding further supported by volatilome analysis. Instead, the oral Aloe supplementation at dry-off appears to significantly influence the composition of the dairy cow rectum and milk microbiomes in the following lactation.

摘要

背景

在旨在确定减少奶牛养殖中抗生素使用的操作方法的RABOLA项目背景下,在干奶期和围产期给奶牛口服冻干的木立芦荟。在这篇特定的论文中,我们想研究口服木立芦荟并结合局部应用乳头密封剂是否会在干奶期和围产期之间对奶牛的三种微生物群落(瘤胃、乳汁、直肠)的微生物种群产生影响。干奶期和围产期是奶牛生命中的关键生理阶段,此时乳腺和胃肠道都会发生显著变化,因此评估日粮处理效果具有重要意义。

方法

将30头经产奶牛随机分为三组:对照组(抗生素处理和内部乳头密封剂)、密封剂组(仅使用内部乳头密封剂)和芦荟组(内部乳头密封剂并口服木立芦荟匀浆)。考虑到每个生物部位的生理活性,在干奶期和产犊前后最关键的时间点非同步采集瘤胃、直肠和乳汁样本用于16S rRNA基因测序。

结果

瘤胃微生物群落主要以拟杆菌门和厚壁菌门为主,其次是变形菌门,而直肠中厚壁菌门和拟杆菌门占优势。乳汁微生物群落主要由厚壁菌门、变形菌门、放线菌门和拟杆菌门组成。参与纤维素和半纤维素降解、增强能量代谢以及肽分解的阿里斯杆菌属、瘤胃球菌科UCG - 10组、普雷沃氏菌科UCG - 001组和拟杆菌属,在补充芦荟的直肠微生物群落中数量增加。芦荟组的直肠微生物群落在干奶期后七天的厚壁菌门与拟杆菌门的比例和α多样性显著增加。β多样性显示直肠和乳汁微生物群落的处理组之间存在显著分离。补充芦荟似乎丰富了乳汁微生物组成,而密封剂组与对照组相比显示出更大的多样性,尽管这包括与乳腺炎相关的微生物增加。

结论

干奶期给予木立芦荟对瘤胃微生物组成没有显示出任何可观察到的影响,挥发物组分析进一步支持了这一发现。相反,干奶期口服芦荟补充剂似乎会显著影响下一泌乳期奶牛直肠和乳汁微生物群落的组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8196/11366166/ba6fba013296/42523_2024_336_Fig1_HTML.jpg

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