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Community composition of cecal microbiota in commercial yellow broilers with high and low feed efficiencies

机译:高低饲期效率的商业黄色肉鸡羊毛微生物的社区组成

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摘要

The cecal microbiota plays important roles in host food digestion and nutrient absorption, which may in part affect feed efficiency (FE). To investigate the composition and functional differences of cecal microbiota between high (n = 30) and low (n = 29) feed conversion ratio (FCR; metric for FE) groups, we performed 16S rRNA gene sequencing and predicted the metagenome function using Phylogenetic Investigation of Communities by Reconstruction of Unobserved Species in yellow broilers. The results showed that the 2 groups had the same prominent microbes but with differing abundance. Firmicutes, Bacteroidetes, and Actinobacteria were 3 prominent bacterial phyla in the cecal microbial community. Although there were no differences in microbial diversity, compositional differences related to FCR were found via linear discriminant analysis (LDA) effect size; the genus Bacteroides had a significantly higher abundance (LDA >2) in the high FE (HFE) group than in the low FE group. Furthermore, genus Bacteroides had a negative FCR-associated correlation (P < 0.05). Oscillospira was positively correlated with Bacteroides in both groups, whereas Dorea was negatively correlated with Bacteroides in the HFE group. Predictive functional analysis revealed that metabolic pathways such as “starch and sucrose metabolism,” “phenylalanine, tyrosine and tryptophan biosynthesis,” and “carbohydrate metabolism” were significantly enriched in the HFE group. The relatively subtle differences in FE-associated cecal microbiota composition suggest a possible link between cecal microbiota and FE. Moreover, Bacteroides may potentially be used as biomarkers for FE to improve growth performance in yellow broilers.
机译:宫颈微生物群在宿主食品消化和营养吸收中起重要作用,这部分可以部分地影响饲料效率(Fe)。为了研究高(n = 30)和低(n = 29)饲料转化比(FCR; FE)基团之间的CeCal Microbiota的组成和功能差异,我们通过系统发育研究进行了16S rRNA基因测序并预测了梅塔群功能黄肉鸡中未观察品种的群落。结果表明,2组具有相同突出的微生物,但具有不同的丰富。对肠微生物群落中的3个突出的细菌肌菌是突出的细菌植物。虽然微生物多样性没有差异,但通过线性判别分析(LDA)效应大小,发现与FCR相关的组成差异; Bractoides在高Fe(HFE)组中具有比低Fe组在低Fe(HFE)组中具有显着高的丰度(LDA> 2)。此外,组织菌具有负相关的相关性(P <0.05)。 Oscillospira与两组中的菌体呈正相关,而Dorea与HFE组中的菌体呈负相关。预测功能分析表明,在HFE组中显着富集了诸如“淀粉和蔗糖代谢”,“苯丙胺,酪氨酸和色氨酸生物合成”,“苯丙氨酸,酪氨酸和色氨酸生物合成”等代谢途径。 Fe相关盲肠微生物群组合物的相对细微的差异表明了CeCal Microbiota和Fe之间可能的联系。此外,拟菌物可能被用作Fe的生物标志物,以改善黄色肉鸡的生长性能。

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