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Broiler gut microbiota and expressions of gut barrier genes affected by cereal type and phytogenic inclusion

机译:谷物类型和植物源性包裹体对肉鸡肠道菌群和肠道屏障基因表达的影响

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摘要

The present study assessed the effects of cereal type and the inclusion level of a phytogenic feed additive (PFA) on broiler ileal and cecal gut microbiota composition, volatile fatty acids (VFA) and gene expression of toll like receptors (TLR), tight junction proteins, mucin 2 (MUC2) and secretory immunoglobulin A (sIgA). Depending on cereal type (i.e. maize or wheat) and PFA inclusion level (i.e. 0, 100 and 150 mg/kg diet), 450 one-day-old male broilers were allocated in 6 treatments according to a 2 × 3 factorial arrangement with 5 replicates of 15 broilers each, for 42 d. Significant interactions (P ≤ 0.05) between cereal type and PFA were shown for cecal digesta Bacteroides and Clostridium cluster XIVa, ileal digesta propionic and branched VFA, ileal sIgA gene expression, as well as cecal digesta branched and other VFA molar ratios. Cereal type affected the cecal microbiota composition. In particular, wheat-fed broilers had higher levels of mucosa-associated Lactobacillus (PCT = 0.007) and digesta Bifidobacterium (PCT < 0.001), as well as lower levels of total bacteria (PCT = 0.004) and Clostridia clusters I, IV and XIVa (PCT ≤ 0.05), compared with maize-fed ones. In addition, cereal type gave differences in fermentation intensity (PCT = 0.021) and in certain individual VFA molar ratios. Wheat-fed broilers had higher (P ≤ 0.05) ileal zonula occluden 2 (ZO-2) and lower ileal and cecal TLR2 and sIgA levels, compared with maize-fed broilers. On the other hand, PFA inclusion at 150 mg/kg had a stimulating effect on microbial fermentation at ileum and a retarding effect in ceca with additional variable VFA molar patterns. In addition, PFA inclusion at 100 mg/kg increased the ileal mucosa expression of claudin 5 (CLDN5) (PPFA = 0.023) and MUC2 (PPFA = 0.001) genes, and at 150 mg/kg decreased cecal TLR2 (PPFA = 0.022) gene expression compared with the un-supplemented controls. In conclusion, cereal type and PFA affected in combination and independently broiler gut microbiota composition and metabolic activity as well as the expression of critical gut barrier genes including TLR2. Further exploitation of these properties in cases of stressor challenges is warranted.
机译:本研究评估了谷物类型和植物性饲料添加剂(PFA)的包合水平对肉鸡回肠和盲肠肠道菌群组成,挥发性脂肪酸(VFA)以及收费样受体(TLR),紧密连接蛋白的基因表达的影响,粘蛋白2(MUC2)和分泌性免疫球蛋白A(sIgA)。根据谷物类型(即玉米或小麦)和PFA的包合水平(即0、100和150 mg / kg饮食),根据2×3因子安排(其中5种为5种)分配了450种1日龄雄性肉鸡用于6种处理每只重复15只肉鸡,重复42天。盲肠消化细菌,梭状芽胞杆菌XIVa,回肠消化丙酸和支链VFA,回肠sIgA基因表达,盲肠消化分支和其他VFA摩尔比显示谷物类型和PFA之间有显着的相互作用(P≤0.05)。谷物类型影响盲肠微生物群的组成。特别是,小麦饲喂的肉鸡的粘膜相关乳杆菌(PCT = 0.007)和双歧杆菌消化物(PCT <0.001)含量较高,总细菌含量(PCT = 0.004)和梭状芽胞杆菌I,IV和XIVa含量较低。 (PCT≤0.05),与玉米喂养的相比。此外,谷物类型在发酵强度(PCT = 0.021)和某些单独的VFA摩尔比上存在差异。小麦饲喂的肉鸡回肠小带阻塞2( ZO-2 )较高(P≤0.05),回肠和盲肠 TLR2 sIgA 较低,与玉米饲养的肉鸡相比。另一方面,以150 mg / kg的PFA含量对回肠中的微生物发酵有刺激作用,而在盲肠中具有额外的可变VFA摩尔模式也有抑制作用。此外,以100 mg / kg的PFA含量增加了claudin 5( CLDN5 )( P PFA = 0.023)和 MUC2 的回肠粘膜表达。 ( P PFA = 0.001)基因,盲肠 TLR2 P PFA = 0.022)基因表达与未表达相比降低了-补充控件。综上所述,谷物类型和PFA共同影响着肉鸡肠道菌群组成和代谢活性,以及​​影响肠道关键屏障基因(包括 TLR2 )的表达。在压力源挑战的情况下,有必要进一步利用这些属性。

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