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奶牛日粮中用非饲料纤维来源替代饲料纤维会改变乳细胞外囊泡-miRNA 的表达。

Replacement of forage fiber with non-forage fiber sources in dairy cow diets changes milk extracellular vesicle-miRNA expression.

机构信息

State Key Laboratory of Animal Nutrition, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

Beijing Key Laboratory for Dairy Cow Nutrition, Beijing University of Agriculture, Beijing 102206, China.

出版信息

Food Funct. 2020 Mar 26;11(3):2154-2162. doi: 10.1039/c9fo03097b.

Abstract

Milk is a dynamic source of nutrients and bioactive factors, varying with the nutrition status of the cattle. We partly replaced alfalfa hay with whole cotton seed and soybean hull (non-forage fiber source, NFFS) in the feed formula of treated cows and evaluated the effects on milk extracellular vesicles (EVs). The NFFS supplement did not affect the shape of milk EVs observed using a transmission electron microscope. Nanoparticle tracking analysis revealed that the EV concentration increased significantly in treated cows (P = 0.019), with the peak diameter unaffected by the treatment. The EV-RNA concentration and small RNA content, particularly rRNAs and tRNAs, significantly increased in the treated cows (P < 0.05). The other small RNAs, i.e. miRNAs, cis-regulatory elements, snRNAs, and other Rfam RNAs showed no significant difference between the two groups. Totally 276 milk EV-miRNAs were identified. Thirteen miRNAs, accounting for 76%, in the highly expressed top 20, were immune-related. In addition, 9 differently expressed miRNAs (4 up-regulated and 5 down-regulated) were identified (P < 0.05). Kyoto Encyclopedia of Genes and Genomes pathway analysis showed that the differently expressed miRNAs were related to the citrate cycle, fat digestion and absorption process, taurine and hypo-taurine metabolism, and glycosphingolipid biosynthesis. This study documents the milk nutrition assessment from macromolecules, especially EVs.

摘要

牛奶是营养和生物活性因子的动态来源,其随奶牛的营养状况而变化。我们在处理奶牛的饲料配方中部分用全棉籽和大豆皮(非饲料纤维来源,NFFS)代替紫花苜蓿干草,并评估其对牛奶细胞外囊泡(EVs)的影响。用透射电子显微镜观察,非饲料纤维来源的添加并未改变牛奶 EVs 的形态。纳米颗粒跟踪分析显示,处理组奶牛的 EV 浓度显著增加(P=0.019),而处理对 EV 粒径没有影响。处理组奶牛的 EV-RNA 浓度和小 RNA 含量,特别是 rRNAs 和 tRNAs,显著增加(P<0.05)。两组间其他小 RNA,如 miRNA、顺式调控元件、snRNA 和其他 Rfam RNA 没有显著差异。共鉴定出 276 种牛奶 EV-miRNA。高度表达的前 20 位中有 13 种 miRNA(占 76%)与免疫有关。此外,还鉴定出 9 种差异表达的 miRNA(4 种上调和 5 种下调)(P<0.05)。京都基因与基因组百科全书通路分析表明,差异表达的 miRNA 与柠檬酸循环、脂肪消化吸收过程、牛磺酸和低牛磺酸代谢以及糖脂生物合成有关。本研究从大分子,特别是 EVs 方面记录了牛奶营养评估。

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