Ahmad Amin, Chahrazed Mekadim, Nikol Modrackova, Petra Bolechova, Jakub Mrazek, Vera Neuzil-Bunesova
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The anteater fecal microbiome was dominated by the phyla Bacillota and Bacteroidota, while Pseudomonadota, Spirochaetota, and Actinobacteriota were less abundant. At the taxonomic family level, Lachnospiraceae, Prevotellaceae, Bacteroidaceae, Oscillospiraceae, Erysipelotrichaceae, Spirochaetaceae, Ruminococcaceae, Leuconostocaceae, and Streptococcaceae were mainly represented in the fecal microbiome of animals from all locations. Interestingly, Lactobacillaceae dominated in the location with a zoo-made diet. These animals also had significantly lower diversity of gut microbiome in comparison with animals from other locations fed mainly with a complete commercial diet. Moreover, captive conditions of analyzed anteater included other factors such as the enrichment of the diet with insect-based products, probiotic interventions, the presence of other animals in the exposure, which can potentially affect the composition of the microbiome and cultivable microbes. In total, 63 bacterial species from beneficial commensal to opportunistic pathogen were isolated and identified using MALDI-TOF MS in the set of more than one thousand selected isolates. 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引用次数: 0
摘要
南方狨(Tamandua tetradactyla)属于专门的胎盘栉水母。关于它们肠道微生物群的信息并不多。此外,由于它们的食物专一性,很难在饲养条件下提供充足的食物。因此,我们使用 16S rDNA 扩增子测序法分析了捷克共和国四个地方圈养的南方狨猴的粪便微生物组,并评估了进食和设施条件对微生物组组成的影响。在进行微生物组分析的同时,我们还对可培养的共生动物进行了量化和鉴定。食蚁兽粪便微生物组以芽孢杆菌科(Bacillota)和类杆菌科(Bacteroidota)为主,而假单胞菌科(Pseudomonadota)、螺旋体科(Spirochaetota)和放线菌科(Actinobacteriota)的数量较少。在分类学科一级,所有地点的动物粪便微生物组中主要有乳酸菌科(Lachnospiraceae)、前鞭毛菌科(Prevotellaceae)、类杆菌科(Bacteroidaceae)、震旦菌科(Oscillospiraceae)、酵母菌科(Erysipelotrichaceae)、螺旋藻科(Spirochaetaceae)、反刍球菌科(Ruminococcaceae)、亮球菌科(Leuconostocaceae)和链球菌科(Streptococcaceae)。有趣的是,乳酸菌科在动物园食谱中占主导地位。这些动物的肠道微生物组多样性也明显低于其他地点主要以全价商品饲料喂养的动物。此外,被分析食蚁兽的圈养条件还包括其他一些因素,如在食物中添加昆虫产品、益生菌干预、接触其他动物等,这些因素都可能影响微生物组的组成和可培养的微生物。利用 MALDI-TOF MS 技术,从一千多个精选分离物中分离并鉴定了从有益共生菌到机会性病原体的 63 种细菌。检测到的物种中有一半存在于大多数动物的粪便微生物群中,其余物种则因动物和地点而异。
Microbiome composition and presence of cultivable commensal groups of Southern Tamanduas (Tamandua tetradactyla) varies with captive conditions.
Southern Tamanduas (Tamandua tetradactyla) belong to the specialized placental myrmecophages. There is not much information about their intestinal microbiome. Moreover, due to their food specialization, it is difficult to create an adequate diet under breeding conditions. Therefore, we used 16S rDNA amplicon sequencing to analyze the fecal microbiome of captive Southern Tamanduas from four locations in the Czech Republic and evaluated the impact of the incoming diet and facility conditions on microbiome composition. Together with the microbiome analysis, we also quantified and identified cultivable commensals. The anteater fecal microbiome was dominated by the phyla Bacillota and Bacteroidota, while Pseudomonadota, Spirochaetota, and Actinobacteriota were less abundant. At the taxonomic family level, Lachnospiraceae, Prevotellaceae, Bacteroidaceae, Oscillospiraceae, Erysipelotrichaceae, Spirochaetaceae, Ruminococcaceae, Leuconostocaceae, and Streptococcaceae were mainly represented in the fecal microbiome of animals from all locations. Interestingly, Lactobacillaceae dominated in the location with a zoo-made diet. These animals also had significantly lower diversity of gut microbiome in comparison with animals from other locations fed mainly with a complete commercial diet. Moreover, captive conditions of analyzed anteater included other factors such as the enrichment of the diet with insect-based products, probiotic interventions, the presence of other animals in the exposure, which can potentially affect the composition of the microbiome and cultivable microbes. In total, 63 bacterial species from beneficial commensal to opportunistic pathogen were isolated and identified using MALDI-TOF MS in the set of more than one thousand selected isolates. Half of the detected species were present in the fecal microbiota of most animals, the rest varied across animals and locations.