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Age-associated changes in caecal microbiome and their apparent correlations with growth performances of layer pullets

机译:盲肠微生物组的年龄相关变化及其表观相关性与层拉链的生长性能相关

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The microbiome in gastrointestinal tracts play an important role in regulating nutrient utilization and absorption, gut immune function, and host growth or development. This study was conducted to investigate the composition and dynamic distribution of caecal microbiota in pullets during the first 16 weeks. Growth performance, immune organs index, and intestinal morphology of pullets were analyzed at 3, 6, 12 and 16 weeks of age. The caecal contents were collected for microbiota analysis by 16S rRNA gene sequencing method. With advancing ages in pullets, the gradually increased average daily feed intake (ADFI), feed conversion ratio (FCR) and intestinal villus height, but the gradually decreased organs index of thymus and bursa were determined. Meanwhile, more abundant caecal bacterial communities were determined from pullets at 12 and 16 weeks of age than those at 3 and 6 weeks of age. Furthermore, the dominant microflora of pullets from different weeks of age were analyzed by using LEfSe: The higher abundance of Blautia , Prevotella , Alistipes, and Eggerthella were found at 6 weeks; Anaerostipes , Oscillospira , Enterococcus and Methanobrevibacter were determined at 12 weeks; and the higher abundance of Parabacteroides , Anaerofustis , Lactobacillus and Butyricimonas were determined at 16 weeks. Further functional predicted analysis by PICRUSt revealed that the endocrine system and carbohydrate metabolism were significantly developed at 3 weeks. The development of the immune system was predicted to be mainly during 6 to 12 weeks, while cardiovascular diseases and circulatory system were during 12 to 16 weeks. In addition, the significantly negative correlation between Bacteroides and villus height, the significantly negative correlation between growth parameters (ADFI and FCR) and Bacteroides , Oscillospira and Alistipes ; and the significantly positive relations between growth parameters (ADFI and FCR) and Bilophila , Lactobacillus , Rikenella and Anaerofustis were determined by using Pearson analyses. In conclusion, our data demonstrated that growth performance and intestinal morphology correlate well with caecal microbiota, which could provide new insights to establish or develop nutritional strategies to manage the intestinal health or development of laying pullets.
机译:胃肠道中的微生物组在调节营养利用率和吸收,肠道免疫功能和宿主生长或发育方面发挥着重要作用。进行该研究以研究前16周内毛圈中粘颈微生物的组成和动态分布。在年龄的3,6,12和16周内分析了李拉特的生长性能,免疫器官指数和肠形态。通过16S rRNA基因测序方法收集Caecal含量以进行微生物群分析。随着鸭子的推进,逐渐增加的平均每日进饲摄取(ADFI),饲料转化率(FCR)和肠绒毛高度,但逐渐降低的胸腺和Bursa指数。与此同时,比年龄的3周和6周龄在12周龄和16周内的李子中测定了更丰富的颈部细菌社区。此外,通过使用lefse分析来自不同周龄的李子的显性微生物:在6周内发现了较高的Blautia,PREVotella,Alistipes和Eggerthella的较高的丰富。在12周内测定厌氧,散发虫,散壳,肠球菌和甲甲基杆菌杆菌;在16周内测定较高的粉碎术,Anaerofustis,乳酸杆菌和乳酸乳杆菌和丁霉素。屠杀的进一步功能预测分析显示,内分泌系统和碳水化合物代谢在3周内显着发展。预计免疫系统的发展主要是在6至12周内,而心血管疾病和循环系统在12至16周。此外,菌斑和绒毛高度之间的显着性相关性,生长参数(ADFI和FCR)和菌体,散列岛和亚斯蒂普斯之间显着负相关;通过使用Pearson分析确定了生长参数(ADFI和FCR)和嗜睡,乳酸杆菌,瑞基菌和厌氧的阳性关系。总之,我们的数据表明,生长性能和肠道形态与粘颈微生物群相关,这可以提供建立或发展营养策略以管理肠道健康或铺设垫子的发展的新见解。

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