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玉米赤霉烯酮及其新兴代谢物迅速影响采食富含粗饲料日粮的荷斯坦奶牛瘤胃微生物区系。

Zearalenone and Its Emerging Metabolites Promptly Affect the Rumen Microbiota in Holstein Cows Fed a Forage-Rich Diet.

机构信息

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

Biomin Research Center, Biomin Holding GmbH, 3430 Tulln, Austria.

出版信息

Toxins (Basel). 2023 Feb 28;15(3):185. doi: 10.3390/toxins15030185.

Abstract

The study investigated the short-term effects of a single oral bolus of zearalenone (ZEN) on the rumen microbiota and fermentation patterns in four rumen-cannulated Holstein cows fed a forage diet with daily 2 kg/cow concentrate. During the baseline day, cows received uncontaminated concentrate, followed by ZEN-contaminated concentrate on the second day, and again the uncontaminated concentrate on day three. Free rumen liquid (FRL) and particle-associated rumen liquid (PARL) were collected at different hours post-feeding on all days to analyze the prokaryotic community composition, absolute abundances of bacteria, archaea, protozoa, and anaerobic fungi, as well as short-chain fatty acid (SCFA) profiles. The ZEN reduced the microbial diversity in FRL but not in the PARL fraction. The abundance of protozoa was higher after ZEN exposure in PARL, which may be related to their strong biodegradation capacity that, therefore, promoted protozoal growth. In contrast, α-zearalenol might compromise anaerobic fungi as indicated by reduced abundances in FRL and fairly negative correlations in both fractions. Total SCFA significantly increased in both fractions after ZEN exposure, while the SCFA profile only changed marginally. Concluding, a single ZEN challenge caused changes in the rumen ecosystem soon after intake, including ruminal eukaryotes, that should be the subject of future studies.

摘要

本研究调查了单口服玉米赤霉烯酮(ZEN)对四头饲喂含每日 2 公斤/牛浓缩物的草料日粮的荷斯坦奶牛瘤胃微生物区系和发酵模式的短期影响。在基线日,奶牛接受未污染的浓缩物,然后在第二天接受污染的浓缩物,第三天再次接受未污染的浓缩物。在所有日子的不同时间收集自由瘤胃液(FRL)和颗粒相关瘤胃液(PARL),以分析原核生物群落组成、细菌、古菌、原生动物和厌氧真菌的绝对丰度以及短链脂肪酸(SCFA)谱。ZEN 降低了 FRL 中的微生物多样性,但对 PARL 部分没有影响。在 PARL 中暴露于 ZEN 后,原生动物的丰度更高,这可能与其强大的生物降解能力有关,因此促进了原生动物的生长。相比之下,α-玉米赤霉烯醇可能会损害厌氧真菌,这在两个部分都表现为丰度降低和相当负面的相关性。在 ZEN 暴露后,两个部分的总 SCFA 都显著增加,而 SCFA 谱仅略有变化。总之,单次 ZEN 挑战在摄入后不久就会引起瘤胃生态系统的变化,包括瘤胃真核生物,这应该是未来研究的主题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2572/10053043/6e7ff2a329d3/toxins-15-00185-g001.jpg

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