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Peculiarities of Enhancing Resistant Starch in Ruminants Using Chemical Methods: Opportunities and Challenges

机译:使用化学方法增强反刍动物抗性淀粉的特殊性:机遇与挑战

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摘要

High-producing ruminants are fed high amounts of cereal grains, at the expense of dietary fiber, to meet their high energy demands. Grains consist mainly of starch, which is easily degraded in the rumen by microbial glycosidases, providing energy for rapid growth of rumen microbes and short-chain fatty acids (SCFA) as the main energy source for the host. Yet, low dietary fiber contents and the rapid accumulation of SCFA lead to rumen disorders in cattle. The chemical processing of grains has become increasingly important to confer their starch resistances against rumen microbial glycosidases, hence generating ruminally resistant starch (RRS). In ruminants, unlike monogastric species, the strategy of enhancing resistant starch is useful, not only in lowering the amount of carbohydrate substrates available for digestion in the upper gut sections, but also in enhancing the net hepatic glucose supply, which can be utilized by the host more efficiently than the hepatic gluconeogenesis of SCFA. The use of chemical methods to enhance the RRS of grains and the feeding of RRS face challenges in the practice; therefore, the present article attempts to summarize the most important achievements in the chemical processing methods used to generate RRS, and review advantages and challenges of feeding RRS to ruminants.
机译:向高产反刍动物喂食大量谷物,但以膳食纤维为代价,以满足其高能量需求。谷物主要由淀粉组成,淀粉在瘤胃中很容易被微生物糖苷酶降解,为瘤胃微生物的快速生长提供能量,而短链脂肪酸(SCFA)是宿主的主要能源。然而,低膳食纤维含量和SCFA的快速积累导致牛瘤胃疾病。赋予谷物抗瘤胃微生物糖苷酶的淀粉抗性,从而产生反刍动物抗性淀粉(RRS),谷物的化学加工变得越来越重要。在反刍动物中,与单胃动物不同,增强抗性淀粉的策略不仅在减少上消化道中可用于消化的碳水化合物底物的数量方面有用,而且在增强肝脏净葡萄糖供应方面也很有用。比SCFA的肝糖异生更有效。在实践中使用化学方法增强谷物的RRS和RRS的饲喂面临着挑战。因此,本文试图总结用于产生RRS的化学加工方法中最重要的成就,并回顾将RRS喂给反刍动物的优势和挑战。

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