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首页> 外文期刊>PLoS One >A mixture of quebracho and chestnut tannins drives butyrate-producing bacteria populations shift in the gut microbiota of weaned piglets
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A mixture of quebracho and chestnut tannins drives butyrate-producing bacteria populations shift in the gut microbiota of weaned piglets

机译:Quebracho和栗子单宁的混合物驱动丁酸盐产生的细菌种群在断奶仔猪的肠道微生物群中

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Weaning is a critical period for piglets, in which unbalanced gut microbiota and/or pathogen colonisation can contribute to diseases that interfere with animal performance. Tannins are natural compounds that could be used as functional ingredients to improve gut health in pig farming thanks to their antibacterial, antioxidant, and antidiarrhoeal properties. In this study, a mixture of quebracho and chestnut tannins (1.25%) was evaluated for its efficacy in reducing the negative weaning effects on piglet growth. Microbiota composition was assessed by Illumina MiSeq 16S rRNA gene sequencing of DNA extracted from stools at the end of the trial. Sequence analysis revealed an increase in the genera Shuttleworthia , Pseudobutyrivibrio , Peptococcus , Anaerostipes , and Solobacterium in the tannin-supplemented group. Conversely, this dietary intervention reduced the abundance of the genera Syntrophococcus , Atopobium , Mitsuokella , Sharpea , and Prevotella . The populations of butyrate-producing bacteria were modulated by tannin, and higher butyrate concentrations in stools were detected in the tannin-fed pigs. Co-occurrence analysis revealed that the operational taxonomic units (OTUs) belonging to the families Veillonellaceae , Lachnospiraceae , and Coriobacteriaceae occupied the central part of the network in both the control and the tannin-fed animals. Instead, in the tannin group, the OTUs belonging to the families Acidaminococcaceae , Alcaligenaceae , and Spirochaetaceae characterised its network, whereas Family XIII Incertae Sedis occupied a more central position than in the control group. Conversely, the presence of Desulfovibrionaceae characterised the network of the control group, and this family was not present in the network of the tannin group. Moreover, the prediction of metabolic pathways revealed that the gut microbiome of the tannin group possessed an enhanced potential for carbohydrate transport and metabolism, as well as a lower abundance of pathways related to cell wall/membrane/envelope biogenesis and inorganic ion transport. In conclusion, the tested tannins seem to modulate the gut microbiota, favouring groups of butyrate-producing bacteria.
机译:断奶是仔猪的关键时期,其中肠道微生物群和/或病原体殖民化可以有助于干扰动物性能的疾病。单宁是天然化合物,可用作抗菌,抗氧化剂和抗神经性质的猪耕种中的功能成分。在该研究中,评估了Quebracho和栗子单宁(1.25%)的混合物,以减少对仔猪生长的负面断奶效果的功效。通过Illumina miseq 16s评估Microbiota组合物在试验结束时从粪便中提取的DNA的RRNA基因测序。序列分析显示,在补充丹宁组中,Pseudobutrivirio,Pseudobutrivirio,Peptococcus,Anaerostipes和Solobacterium的增加。相反,这种膳食干预减少了属于Syntrophococcus,Atopobium,Mitsuokella,Sharpea和Pvototella的丰富。产生丁酸盐的细菌的种群被单宁调节,在单宁喂猪中检测到粪便中的更高丁酸盐浓度。共同发生分析表明,属于家庭Veillonellaceae,Lachnospheae和Coriobacteriaceae的运营分类单位(Otus)占据了控制和单宁美联储动物的网络中央部分。相反,在单宁集团,属于家庭酰氨酸氨基葡聚糖,alcaligenaceae和Spirochaetaceae的Otus表征了它的网络,而Sampers Xiii Incertae Sedis占据了比对照组更为中心的位置。相反,脱硫的存在表征了对照组的网络,并且该家族不存在于单宁组的网络中。此外,代谢途径的预测表明,单宁组的肠道微生物组具有碳水化合物运输和代谢的增强潜力,以及与细胞壁/膜/包膜生物发生和无机离子转运相关的途径较低的途径。总之,经过测试的单宁似乎调节肠道微生物,优选丁酸丁酯的细菌。

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