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Insight Into Dynamics of Gut Microbial Community of Broilers Fed With Fructooligosaccharides Supplemented Low Calcium and Phosphorus Diets

机译:饲喂低聚果糖和低钙低磷饮食的肉仔鸡肠道微生物群落的动态

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摘要

We investigated how the microbiota in the ileum and cecum of broiler chickens fed a diet of low calcium (Ca) and available phosphorus (aP) and prebiotic fructooligosaccharides (FOS) supplements changed over a 3 weeks period. Three dietary treatments were randomly assigned to four replicate cages of five birds each, including: positive control (PC), a wheat-corn-soybean meal-based diet; negative control (NC), as PC with 0.2% reduced Ca and aP; and NC + FOS, as NC supplemented with 0.5% of FOS. Ileal and cecal digesta were sampled from each replicate (n = 4) on d21 and processed for 16S rRNA gene amplicon (V4 region) sequencing using Illumina platform. Statistical differences were observed in the microbiome by GI location as determined by 2-way ANOVA and Permutational MANOVA. On average, 24,216 sequence reads per sample were generated resulting in 800 and 1,280 operational taxonomic units in the ileal and cecal digesta, respectively. Difference (P < 0.0001) on alpha diversity and abundances of several phyla was observed between ileal and cecal digesta. ß-diversity was different (P < 0.05) between each treatment groups in the ileum but not in the cecum. In the cecum, species richness, phylogenetic diversity, and the number of observed species were higher in PC compared to NC + FOS (P < 0.05). Several phyla, including Cyanobacteria, Firmicutes, and Proteobacteria, had significantly different abundance in the ileal and cecal digesta (P < 0.05). In the ileal digesta, positive correlation were observed between Salinibacterium and Lysobacter and PC diet. Blautia, Faecalibacterium and Pseudomonas and the NC diet and Lactobacillus and Escherichia and the NC + FOS diet. In the cecal digesta, Butyrivibrio, and Allobaculum were positively correlated to PC. Although, Clostridium and Anaerotruncus were positively correlated to NC + FOS, they showed negative correlation to PC and NC. The study concludes that dietary Ca and aP level and FOS supplementation alters ileal microbiota of the broiler chickens.
机译:我们调查了饲喂低钙(Ca)和有效磷(aP)以及益生元低聚果糖(FOS)补充剂饮食的肉鸡回肠和盲肠中的微生物群在3周内如何变化。将三种饮食方法随机分配给四个重复的笼子,每只笼子中有五只鸟,包括:阳性对照(PC),基于小麦-玉米-豆粕的饮食;阴性对照(NC),因为PC的Ca和aP降低了0.2%;和NC + FOS,因为NC补充有0.5%的FOS。在d21上从每个重复样本(n = 4)采样回肠和盲肠消化物,并使用Illumina平台进行16S rRNA基因扩增子(V4区域)测序。通过2-way ANOVA和置换MANOVA确定的GI位置在微生物组中观察到统计学差异。平均每个样品产生24,216个序列读数,在回肠和盲肠消化区分别产生800和1,280个操作分类单元。回肠和盲肠消化道之间的α多样性和丰富度存在差异(P <0.0001)。回肠中每个治疗组之间的β-多样性不同(P <0.05),但盲肠中没有。在盲肠中,与NC + FOS相比,PC中的物种丰富度,系统发育多样性和观察到的物种数量更高(P <0.05)。在回肠和盲肠的消化中,包括蓝细菌,菌毛和变形杆菌在内的几种门的丰度有显着差异(P <0.05)。在回肠消化物中,盐杆菌和溶菌与PC饮食之间存在正相关。 Blautia,Faecalibacterium和Pseudomonas和NC饮食以及Lactobacillus和Escherichia和NC + FOS饮食。在盲肠中,Butyrivibrio和Allobaculum与PC呈正相关。尽管梭状芽胞杆菌和厌食runcus与NC + FOS呈正相关,但与PC和NC呈负相关。研究得出的结论是,饮食中的Ca和aP水平以及FOS的添加会改变肉鸡的回肠菌群。

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