Wenderlein Jasmin, Böswald Linda F, Ulrich Sebastian, Kienzle Ellen, Neuhaus Klaus, Lagkouvardos Ilias, Zenner Christian, Straubinger Reinhard K
Chair of Bacteriology and Mycology, Institute for Infectious Diseases and Zoonosis, Department of Veterinary Sciences, Faculty of Veterinary Medicine, LMU Munich, Veterinärstr. 13, 80539 Munich, Germany.
Chair of Animal Nutrition and Dietetics, Department of Veterinary Sciences, Faculty of Veterinary Medicine, LMU Munich, Schönleutenerstr. 8, 85764 Oberschleißheim, Germany.
Animals (Basel). 2021 Mar 18;11(3):862. doi: 10.3390/ani11030862.
The composition of the microbiome is subject to the host's diet. In commercial laboratory mouse diets, different physical forms of the same diets are available, containing-according to their labels-identical ingredients and nutrient compositions. However, variations in nutrient composition and starch gelatinization due to production processes and their impact on digestibility have been described. In this study, a total of 48 C57BL/J6 mice were assigned to two equal groups and were fed diets (produced with different processes-extruded vs. pelleted) for eight weeks in two biological replicates. At the end of the experiment, samples were collected from five different gastrointestinal regions, including the stomach, small intestine, cecum, large intestine, and an extracorporeal region (feces), and the microbiome was analyzed with 16S rRNA gene amplicon sequencing. The replicates in both experiments differed significantly in their relative abundances of Muribaculaceae species. Furthermore, the gastrointestinal content of pellet-fed mice contained larger numbers of species. These results indicate that starch gelatinization and ingredient composition significantly influence microbial makeup. In conclusion, different feed processing methods may affect fundamental digestive and metabolic processes, impacting animal experiments and biasing microbiome data.
微生物组的组成受宿主饮食的影响。在商业实验室小鼠饲料中,相同饲料有不同的物理形态,根据标签显示,它们含有相同的成分和营养成分。然而,已经有人描述了由于生产工艺导致的营养成分和淀粉糊化的变化及其对消化率的影响。在本研究中,总共48只C57BL/J6小鼠被分为两组,每组数量相等,并在两个生物学重复中分别喂食两种不同工艺生产的饲料(挤压饲料与颗粒饲料),持续八周。在实验结束时,从五个不同的胃肠道区域采集样本,包括胃、小肠、盲肠、大肠和体外区域(粪便),并通过16S rRNA基因扩增子测序分析微生物组。在两个实验中,Muribaculaceae物种的相对丰度在重复样本之间存在显著差异。此外,颗粒饲料喂养的小鼠胃肠道内容物中含有更多数量的物种。这些结果表明,淀粉糊化和成分组成会显著影响微生物组成。总之,不同的饲料加工方法可能会影响基本的消化和代谢过程,从而影响动物实验并使微生物组数据产生偏差。