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整合多组学分析揭示了柑橘类黄酮通过调节高脂肪淀粉日粮泌乳中期奶牛的鞘脂代谢,对后肠微生物群和宿主稳态的积极影响。

Integrated multi-omics analysis reveals the positive leverage of citrus flavonoids on hindgut microbiota and host homeostasis by modulating sphingolipid metabolism in mid-lactation dairy cows consuming a high-starch diet.

机构信息

Beijing Key Laboratory of Dairy Cow Nutrition, College of Animal Science and Technology, Beijing University of Agriculture, Beijing, 102206, China.

出版信息

Microbiome. 2023 Oct 25;11(1):236. doi: 10.1186/s40168-023-01661-4.

Abstract

BACKGROUND

Modern dairy diets have shifted from being forage-based to grain and energy dense. However, feeding high-starch diets can lead to a metabolic disturbance that is linked to dysregulation of the gastrointestinal microbiome and systemic inflammatory response. Plant flavonoids have recently attracted extensive interest due to their anti-inflammatory effects in humans and ruminants. Here, multi-omics analysis was conducted to characterize the biological function and mechanisms of citrus flavonoids in modulating the hindgut microbiome of dairy cows fed a high-starch diet.

RESULTS

Citrus flavonoid extract (CFE) significantly lowered serum concentrations of lipopolysaccharide (LPS) proinflammatory cytokines (TNF-α and IL-6), acute phase proteins (LPS-binding protein and haptoglobin) in dairy cows fed a high-starch diet. Dietary CFE supplementation increased fecal butyrate production and decreased fecal LPS. In addition, dietary CFE influenced the overall hindgut microbiota's structure and composition. Notably, potentially beneficial bacteria, including Bacteroides, Bifidobacterium, Alistipes, and Akkermansia, were enriched in CFE and were found to be positively correlated with fecal metabolites and host metabolites. Fecal and serum untargeted metabolomics indicated that CFE supplementation mainly emphasized the metabolic feature "sphingolipid metabolism." Metabolites associated with the sphingolipid metabolism pathway were positively associated with increased microorganisms in dairy cows fed CFE, particularly Bacteroides. Serum lipidomics analysis showed that the total contents of ceramide and sphingomyelin were decreased by CFE addition. Some differentially abundant sphingolipid species were markedly associated with serum IL-6, TNF-α, LPS, and fecal Bacteroides. Metaproteomics revealed that dietary supplementation with CFE strongly impacted the overall fecal bacterial protein profile and function. In CFE cows, enzymes involved in carbon metabolism, sphingolipid metabolism, and valine, leucine, and isoleucine biosynthesis were upregulated.

CONCLUSIONS

Our research indicates the importance of bacterial sphingolipids in maintaining hindgut symbiosis and homeostasis. Dietary supplementation with CFE can decrease systemic inflammation by maintaining hindgut microbiota homeostasis and regulating sphingolipid metabolism in dairy cows fed a high-starch diet. Video Abstract.

摘要

背景

现代奶牛的日粮已从以草料为基础转变为以谷物和高能量为主。然而,饲喂高淀粉日粮会导致代谢紊乱,这与胃肠道微生物组的失调和全身炎症反应有关。植物类黄酮由于其在人类和反刍动物中的抗炎作用,最近引起了广泛的关注。在这里,进行了多组学分析,以表征柑橘类黄酮调节饲喂高淀粉日粮的奶牛后肠微生物组的生物学功能和机制。

结果

柑橘类黄酮提取物(CFE)显著降低了饲喂高淀粉日粮奶牛的血清中脂多糖(LPS)促炎细胞因子(TNF-α和 IL-6)和急性期蛋白(LPS 结合蛋白和触珠蛋白)的浓度。日粮 CFE 补充增加了粪便丁酸的产生,并降低了粪便 LPS。此外,日粮 CFE 影响了整个后肠微生物群的结构和组成。值得注意的是,有益的潜在细菌,包括拟杆菌、双歧杆菌、阿克曼氏菌和阿克曼氏菌,在 CFE 中得到了富集,并发现与粪便代谢物和宿主代谢物呈正相关。粪便和血清无靶向代谢组学表明,CFE 补充主要强调“鞘脂代谢”的代谢特征。与 CFE 喂养奶牛中微生物增加相关的代谢物与鞘脂代谢途径呈正相关。血清脂质组学分析表明,鞘氨醇和神经鞘氨醇的总含量因 CFE 的添加而降低。一些差异丰度的鞘脂种类与血清 IL-6、TNF-α、LPS 和粪便拟杆菌显著相关。代谢组学分析表明,CFE 的添加强烈影响了粪便细菌蛋白谱和功能的整体。在 CFE 奶牛中,与碳代谢、鞘脂代谢以及缬氨酸、亮氨酸和异亮氨酸生物合成相关的酶被上调。

结论

我们的研究表明细菌鞘脂在维持后肠共生和内稳态中的重要性。饲喂 CFE 可以通过维持后肠微生物群的稳态和调节饲喂高淀粉日粮的奶牛的鞘脂代谢来降低全身炎症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92a9/10598921/cd5adb8d2bc9/40168_2023_1661_Fig1_HTML.jpg

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