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富含淀粉的日粮诱导不同泌乳阶段奶牛的瘤胃酸中毒和后肠道微生物群失调。

Starch-Rich Diet Induced Rumen Acidosis and Hindgut Dysbiosis in Dairy Cows of Different Lactations.

作者信息

Neubauer Viktoria, Petri Renee M, Humer Elke, Kröger Iris, Reisinger Nicole, Baumgartner Walter, Wagner Martin, Zebeli Qendrim

机构信息

Unit of Food Microbiology, Institute of Food Safety, Food Technology, and Veterinary Public Health, University of Veterinary Medicine, 1210 Vienna, Austria.

FFoQSI GmbH-Austrian Competence Centre for Feed and Food Quality, Safety & Innovation, 3430 Tulln, Austria.

出版信息

Animals (Basel). 2020 Sep 23;10(10):1727. doi: 10.3390/ani10101727.

Abstract

Starch-rich diets can cause subacute ruminal acidosis (SARA) in dairy cows with potentially different susceptibility according to lactation number. We wanted to evaluate the bacterial community and the fermentation end products in feces to study susceptibility to hindgut acidosis and dysbiosis. Sixteen dairy cows received a medium-concentrate diet (MC, 40% concentrate, 18.8% starch) for one week and a high-concentrate diet (HC, 60% concentrate, 27.7% starch, DM) for four weeks. Milk yield, dry-matter intake, chewing activity, ruminal pH, milk constituents, and fecal samples for short-chain fatty acids (SCFA), pH, and 16S rRNA-gene sequencing were investigated. The HC feeding caused a reduction in fecal pH, bacterial diversity and richness, an increase in total SCFA, and a separate phylogenetic clustering of MC and HC samples. Ruminal and fecal pH had fair correlation ( = 0.5). Cows in the second lactation (2ndL) had lower dry matter intake (DMI) than cows of third or fourth or more lactations (3rdL; ≥4 L), whereas DMI/kg body weight was lower for ≥4 L than for 2ndL and 3rdL cows. The mean ruminal pH was highest in ≥4 L, whereas the time spent below the SARA threshold was highest for 3rdL cows. The latter also had higher total SCFA in the feces. Our results suggest that hindgut dysbiosis is caused by increased substrate flow to the hindgut, but further investigations are needed to define hindgut acidosis. The 3rdL cows were most susceptible to rumen acidosis and hindgut dysbiosis due to high DMI level, but missing counter regulations, as suggested happening in 2ndL and ≥4 L cows.

摘要

富含淀粉的日粮会导致奶牛发生亚急性瘤胃酸中毒(SARA),且根据泌乳次数不同,奶牛的易感性可能存在差异。我们想要评估粪便中的细菌群落和发酵终产物,以研究后肠道酸中毒和微生物群落失调的易感性。16头奶牛先接受一周的中等精料日粮(MC,40%精料,18.8%淀粉),然后接受四周的高精料日粮(HC,60%精料,27.7%淀粉,干物质基础)。对产奶量、干物质采食量、咀嚼活动、瘤胃pH值、乳成分以及用于分析短链脂肪酸(SCFA)、pH值和16S rRNA基因测序的粪便样本进行了研究。高精料饲喂导致粪便pH值降低、细菌多样性和丰富度降低、总SCFA增加,以及MC组和HC组样本出现不同的系统发育聚类。瘤胃和粪便pH值具有中等相关性(r = 0.5)。第二泌乳期(2ndL)的奶牛干物质采食量(DMI)低于第三或第四及以上泌乳期(3rdL;≥4L)的奶牛,而≥4L奶牛的DMI/体重低于2ndL和3rdL奶牛。平均瘤胃pH值在≥4L奶牛中最高,而低于SARA阈值的时间在3rdL奶牛中最长。3rdL奶牛粪便中的总SCFA也更高。我们的结果表明,后肠道微生物群落失调是由进入后肠道的底物流量增加引起的,但需要进一步研究来确定后肠道酸中毒。3rdL奶牛由于高DMI水平,但缺乏像2ndL和≥4L奶牛中可能存在的代偿调节机制,因此对瘤胃酸中毒和后肠道微生物群落失调最为敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb94/7598178/e467e55a61f2/animals-10-01727-g001.jpg

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