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在热应激条件下,硒纳米颗粒通过调节奶山羊瘤胃微生物群和代谢过程来促进泌乳。

Under heat stress conditions, selenium nanoparticles promote lactation through modulation of rumen microbiota and metabolic processes in dairy goats.

作者信息

Ying Zaixiang, Xie Shan, Xiu Ziqing, Sun Yawang, Yang Qinlin, Gao Hanyu, Fan Wenqiao, Wu Yongjiang

机构信息

College of Smart Agriculture, Chongqing University of Arts and Sciences, Yongchuan, 402160, China.

College of Biology and Food Engineering, Chongqing Three Gorges University, Wanzhou, 404100, China.

出版信息

Sci Rep. 2025 Mar 17;15(1):9063. doi: 10.1038/s41598-025-93710-1.

Abstract

This study aimed to investigate the effects of dietary supplementation with Selenium nanoparticles (SeNPs) on lactation performance, rumen microbial communities, and metabolism in dairy goats under heat stress conditions. Twenty Guanzhong dairy goats with the same parity, similar lactation period (120 ± 15 days), and similar milk yield (1.20 ± 0.16 kg/day) were randomly divided into two groups, with 10 replicates in each group. The control group was fed a standard diet, while the experimental group was supplemented with 0.5 mg SeNPs/kg DM based on the standard diet. The pretrial period lasted for seven days, followed by a 30-day trial period. The results showed that dietary supplementation with SeNPs significantly increased milk yield, milk fat and lactose content in dairy goats, under heat stress conditions. SeNPs significantly altered the composition of the rumen microbiota, increasing the relative abundance of Prevotella and Ruminococcus while decreasing the relative abundance of Succiniclasticum. This enhanced the rumen's ability to degrade starch and fiber under heat stress conditions. Non-targeted metabolomic analysis revealed a total of 119 differential metabolites between the two groups, indicating changes in rumen metabolism. Further correlation analysis indicated that Rumen bacterium R-21 was positively correlated with propionate, while Ralstonia insidiosa was negatively correlated with γ-glutamylcysteine. Additionally, several differential microbes, including Succinivibrio dextrinosolvens, Rummeliibacillus pycnus, Ralstonia insidiosa, and Prevotella sp BP1-56, were significantly correlated with milk composition. In conclusion, dietary supplementation with SeNPs can positively impact milk yield, milk components, and metabolism in dairy goats by improving the composition of the rumen microbiota under heat stress conditions.

摘要

本研究旨在探讨在热应激条件下,日粮中添加纳米硒(SeNPs)对奶山羊泌乳性能、瘤胃微生物群落及代谢的影响。选取20只胎次相同、泌乳期相近(120±15天)、产奶量相近(1.20±0.16千克/天)的关中奶山羊,随机分为两组,每组10个重复。对照组饲喂标准日粮,试验组在标准日粮基础上添加0.5毫克SeNPs/千克干物质。预试期持续7天,随后是30天的试验期。结果表明,在热应激条件下,日粮中添加SeNPs可显著提高奶山羊的产奶量、乳脂和乳糖含量。SeNPs显著改变了瘤胃微生物群的组成,增加了普雷沃氏菌属和瘤胃球菌属的相对丰度,同时降低了琥珀酸分解菌属的相对丰度。这增强了热应激条件下瘤胃降解淀粉和纤维的能力。非靶向代谢组学分析显示两组间共有119种差异代谢物,表明瘤胃代谢发生了变化。进一步的相关性分析表明,瘤胃细菌R-21与丙酸呈正相关,而内氏罗尔斯通氏菌与γ-谷氨酰半胱氨酸呈负相关。此外,几种差异微生物,包括嗜淀粉琥珀酸弧菌、致密瘤胃杆菌、内氏罗尔斯通氏菌和普雷沃氏菌属BP1-56,与乳成分显著相关。总之,在热应激条件下,日粮中添加SeNPs可通过改善瘤胃微生物群组成,对奶山羊的产奶量、乳成分和代谢产生积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa21/11914082/e94091a3b5f9/41598_2025_93710_Fig1_HTML.jpg

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