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饲料添加剂对富含精料的牛瘤胃壁微生物群和宿主上皮基因表达有不同影响。

Feed Additives Differentially Impact the Epimural Microbiota and Host Epithelial Gene Expression of the Bovine Rumen Fed Diets Rich in Concentrates.

作者信息

Petri Renee Maxine, Neubauer Viktoria, Humer Elke, Kröger Iris, Reisinger Nicole, Zebeli Qendrim

机构信息

Institute of Animal Nutrition and Functional Plant Compounds, University of Veterinary Medicine, Vienna, Austria.

Institute for Food Safety, Food Technology and Veterinary Public Health - Unit for Food Microbiology, Department for Farm Animals and Veterinary Public Health, University of Veterinary Medicine, Vienna, Austria.

出版信息

Front Microbiol. 2020 Feb 19;11:119. doi: 10.3389/fmicb.2020.00119. eCollection 2020.

Abstract

The success of nutritional strategies for the prevention of subacute ruminal acidosis (SARA) and the related microbial dysbiosis still remains unpredictable due to the complexity of the rumen ecosystem. The rumen epimural community, due to proximity, has the greatest opportunity to influence host gene expression. The aim of this study was to determine the effect of two separate feed additives on the rumen epimural community and host epithelial gene expression. Eight rumen cannulated Holstein cows were randomly assigned to one of three feeding groups: autolyzed yeast (AY), phytogenics (PHY) and control (CON) using a 3 × 3 Latin square design. Cows were fed an intermittent SARA model that started with 100% forage diet (Baseline) followed by two 65% concentrate-diet induced SARA challenges (SARAI, SARAII), separated by 1 week of forage only feeding. Rumen papillae samples were collected via the cannula during the Baseline, SARAI and SARAII periods. Microbial DNA was extracted and sequenced targeting the 16S rRNA gene and host RNA was analyzed using RT-qPCR. Analysis of the taxonomic composition at the genera level showed a tendency to increase in the relative abundances of ( = 0.06), ( = 0.07) and significantly increase in SHD-231 ( = 0.01) in PHY treated animals, whereas tended to decrease in both PHY and AY treated animals compared to the control. Linear discriminant analysis effect size testing was performed and based on treatment × feeding phase interaction, a number of biomarker genera were identified including the previously identified . Supplementation with AY correlated positively with and expression and negatively to , , and expression. Supplementation with PHY showed a negative correlation to gene expression. showed the highest positive Pearson correlations to biogenic amines tested in the rumen fluid including putrescine ( = 0.67), cadaverine ( = 0.84), and tyramine ( = 0.83). These results show that supplementing feed additives to high grain diets can have a positive influence on the stability of the epimural populations, and that changes in the epimural community are correlated with changes in host epithelial gene expression.

摘要

由于瘤胃生态系统的复杂性,预防亚急性瘤胃酸中毒(SARA)及相关微生物群落失调的营养策略的成功与否仍然难以预测。瘤胃壁外群落由于距离较近,最有机会影响宿主基因表达。本研究的目的是确定两种不同的饲料添加剂对瘤胃壁外群落和宿主上皮基因表达的影响。使用3×3拉丁方设计,将八头装有瘤胃瘘管的荷斯坦奶牛随机分配到三个饲养组之一:自溶酵母(AY)组、植物源添加剂(PHY)组和对照组(CON)。给奶牛饲喂间歇性SARA模型,开始时为100%粗饲料日粮(基线期),随后是两次65%精料日粮诱导的SARA挑战期(SARA I、SARA II),中间间隔1周只喂粗饲料。在基线期、SARA I期和SARA II期通过瘘管采集瘤胃乳头样本。提取微生物DNA并针对16S rRNA基因进行测序,使用RT-qPCR分析宿主RNA。属水平的分类组成分析表明,PHY处理的动物中,[具体属名1](P = 0.06)、[具体属名2](P = 0.07)的相对丰度有增加趋势,SHD - 231(P = 0.01)显著增加,而与对照组相比,PHY和AY处理的动物中[具体属名3]均有下降趋势。进行了线性判别分析效应大小测试,并基于处理×饲喂阶段相互作用,鉴定出许多生物标志物属,包括先前鉴定的[具体属名4]。补充AY与[基因名1]和[基因名2]的表达呈正相关,与[基因名3]、[基因名4]和[基因名5]的表达呈负相关。补充PHY与[基因名6]的表达呈负相关。[具体属名5]与瘤胃液中测试的生物胺,包括腐胺(r = 0.67)、尸胺(r = 0.84)和酪胺(r = 0.83),显示出最高的正皮尔逊相关性。这些结果表明,在高谷物日粮中添加饲料添加剂可对壁外菌群的稳定性产生积极影响,并且壁外群落的变化与宿主上皮基因表达的变化相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0056/7043141/82547c808bac/fmicb-11-00119-g001.jpg

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