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厌氧真菌在反刍动物营养中的当前作用和新潜力

The Present Role and New Potentials of Anaerobic Fungi in Ruminant Nutrition.

作者信息

Hartinger Thomas, Zebeli Qendrim

机构信息

Institute of Animal Nutrition and Functional Plant Compounds, University of Veterinary Medicine Vienna, 1210 Vienna, Austria.

出版信息

J Fungi (Basel). 2021 Mar 10;7(3):200. doi: 10.3390/jof7030200.

Abstract

The ruminal microbiota allows ruminants to utilize fibrous feeds and is in the limelight of ruminant nutrition research for many years. However, the overwhelming majority of investigations have focused on bacteria, whereas anaerobic fungi (AF) have been widely neglected by ruminant nutritionists. Anaerobic fungi are not only crucial fiber degraders but also important nutrient sources for the host. This review summarizes the current findings on AF and, most importantly, discusses their new application potentials in modern ruminant nutrition. Available data suggest AF can be applied as direct-fed microbials to enhance ruminal fiber degradation, which is indeed of interest for high-yielding dairy cows that often show depressed ruminal fibrolysis in response to high-grain feeding. Moreover, these microorganisms have relevance for the nutrient supply and reduction of methane emissions. However, to reach AF-related improvements in ruminal fiber breakdown and animal performance, obstacles in large-scale AF cultivation and applicable administration options need to be overcome. At feedstuff level, silage production may benefit from the application of fungal enzymes that cleave lignocellulosic structures and consequently enable higher energy exploitation from forages in the rumen. Concluding, AF hold several potentials in improving ruminant feeding and future research efforts are called for to harness these potentials.

摘要

瘤胃微生物群使反刍动物能够利用纤维性饲料,多年来一直是反刍动物营养研究的焦点。然而,绝大多数研究都集中在细菌上,而厌氧真菌(AF)在很大程度上被反刍动物营养学家忽视了。厌氧真菌不仅是关键的纤维降解者,也是宿主重要的营养来源。这篇综述总结了关于厌氧真菌的当前研究结果,最重要的是,讨论了它们在现代反刍动物营养中的新应用潜力。现有数据表明,厌氧真菌可以作为直接投喂微生物来增强瘤胃纤维降解,这对于高产奶牛来说确实很有意义,因为高产奶牛在高谷物饲养时瘤胃纤维分解往往会受到抑制。此外,这些微生物与营养供应和甲烷排放的减少有关。然而,要在瘤胃纤维分解和动物生产性能方面实现与厌氧真菌相关的改善,需要克服大规模厌氧真菌培养和适用给药方式方面的障碍。在饲料层面,青贮饲料生产可能会受益于应用能够分解木质纤维素结构的真菌酶,从而在瘤胃中从草料中获取更高的能量。总之,厌氧真菌在改善反刍动物饲养方面具有多种潜力,需要未来的研究努力来挖掘这些潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5afe/8000393/720cea3f03f4/jof-07-00200-g001.jpg

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