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硫胺素状况、代谢及其在奶牛中的应用:综述。

Thiamine status, metabolism and application in dairy cows: a review.

机构信息

1State Key Laboratory of Animal Nutrition,Institute of Animal Science,Chinese Academy of Agricultural Sciences,Beijing 100193,People's Republic of China.

3Beijing Key Laboratory for Dairy Cow Nutrition,Beijing University of Agriculture,Beijing 102206,People's Republic of China.

出版信息

Br J Nutr. 2018 Sep;120(5):491-499. doi: 10.1017/S0007114518001666. Epub 2018 Jul 10.

Abstract

As the co-enzyme of pyruvate dehydrogenase and α-ketoglutarate dehydrogenase, thiamine plays a critical role in carbohydrate metabolism in dairy cows. Apart from feedstuff, microbial thiamine synthesis in the rumen is the main source for dairy cows. However, the amount of ruminal thiamine synthesis, which is influenced by dietary N levels and forage to concentrate ratio, varies greatly. Notably, when dairy cows are overfed high-grain diets, subacute ruminal acidosis (SARA) occurs and results in thiamine deficiency. Thiamine deficiency is characterised by decreased ruminal and blood thiamine concentrations and an increased blood thiamine pyrophosphate effect to >45 %. Thiamine deficiency caused by SARA is mainly related to the increased thiamine requirement during high grain feeding, decreased bacterial thiamine synthesis in the rumen, increased thiamine degradation by thiaminase, and decreased thiamine absorption by transporters. Interestingly, thiamine deficiency can be reversed by exogenous thiamine supplementation in the diet. Besides, thiamine supplementation has beneficial effects in dairy cows, such as increased milk and component production and attenuated SARA by improving rumen fermentation, balancing bacterial community and alleviating inflammatory response in the ruminal epithelium. However, there is no conclusive dietary thiamine recommendation for dairy cows, and the impacts of thiamine supplementation on protozoa, solid-attached bacteria, rumen wall-adherent bacteria and nutrient metabolism in dairy cows are still unclear. This knowledge is critical to understand thiamine status and function in dairy cows. Overall, the present review described the current state of knowledge on thiamine nutrition in dairy cows and the major problems that must be addressed in future research.

摘要

作为丙酮酸脱氢酶和α-酮戊二酸脱氢酶的辅酶,硫胺素在奶牛的碳水化合物代谢中起着关键作用。除了饲料外,瘤胃中的微生物合成硫胺素是奶牛的主要来源。然而,瘤胃中硫胺素的合成量受日粮氮水平和粗饲料与精饲料的比例影响,变化很大。值得注意的是,当奶牛过量饲喂高谷物日粮时,会发生亚急性瘤胃酸中毒(SARA),导致硫胺素缺乏。硫胺素缺乏的特征是瘤胃和血液中硫胺素浓度降低,血液中硫胺素焦磷酸效应增加到>45%。由 SARA 引起的硫胺素缺乏主要与高谷物喂养期间增加的硫胺素需求、瘤胃中细菌合成硫胺素减少、硫胺素酶增加硫胺素降解以及转运体减少硫胺素吸收有关。有趣的是,日粮中添加外源性硫胺素可以逆转由 SARA 引起的硫胺素缺乏。此外,硫胺素补充对奶牛有有益的影响,如增加牛奶和成分的产量,并通过改善瘤胃发酵、平衡细菌群落和减轻瘤胃上皮的炎症反应来减轻 SARA。然而,目前对于奶牛没有明确的日粮硫胺素推荐量,并且硫胺素补充对原虫、固着细菌、瘤胃壁附着细菌和奶牛营养代谢的影响仍不清楚。这些知识对于了解奶牛的硫胺素状态和功能至关重要。总的来说,本综述描述了奶牛硫胺素营养的现状以及未来研究中必须解决的主要问题。

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