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Responses of broiler chickens to Eimeria challenge when fed a nucleotide-rich yeast extract

机译:肉鸡对富含核苷酸酵母提取物时肉鸡对eimeria挑战的反应

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摘要

Nucleotide-rich yeast extract (YN) was investigated for effects on growth performance, jejunal physiology, and cecal microbial activity in Eimeria-challenged broiler chickens. A total of 360-day-old male chicks (Ross x Ross 708) were placed on floor pens and provided a corn-soybean meal-based diet without or with YN (500 g/MT; n = 12). On d 10, 6 replicates per diet were orally administered with 1 mL of E. acervulina and E. maxima sporulated oocysts and the rest (non-challenged control) were administered with 1 mL of distilled water. On d 15, 5 birds/pen were then necropsied for intestinal lesion scores, histomorphology and cecal digesta pH, short chain fatty acids (SCFA), and microbial community using Illumina Miseq platform. Supplemental YN improved (P = 0.01) Feed conversion ratio (FCR) during the prechallenge phase (d 0 to 10). In the postchallenge period (d 11 to 15), Eimeria depressed (P 0.05) Body weight gain (BWG) relative to non-challenged birds, whereas YN-fed birds had a higher (P = 0.05) BWG compared to that of non-YNfed birds. There was an interaction between YN and Eimeria on jejunal villi height (VH) (P = 0.001) and expression of cationic amino acid transporter 1(CAT1) (P = 0.04). Specifically, in the absence of Eimeria, YN-fed birds had a shorter VH (892 vs. 1,020 mu m) relative to that of control but longer VH (533 vs. 447 mu m) in the presence of Eimeria. With respect to CAT1, YN-fed birds had a higher (1.65 vs. 0.78) expression when subjected to Eimeria than when not challenged. Independently, Eimeria decreased (P 0.01) the jejunal expression of maltase, Na glucose transporter 1 and occludin genes, ceca digesta abundance of genus Clostridium cluster XlVa and Oscillibacter but increased (P 0.01) jejunal proliferating cell nuclear antigen and interleukin 10. Interaction between YN and Eimeria was observed for ceca digesta pH (P = 0.04) and total SCFA (P = 0.01) such that YN increased SCFA in the absence of Eimeria but reduced SCFA and increased pH in the presence of Eimeria. In summary, Eimeria impaired performance and gut function and shifted gut microbiome; YN improved performance independently, attenuated Eimeria damage on indices of gut function, and modulated cecal microbiome.
机译:研究了核苷酸富含酵母提取物(YN),用于对Eimeria挑战性肉鸡的生长性能,Jejunal生理学和CeNal微生物活性的影响。总共360天的雄性小鸡(罗斯X罗斯708)被放置在地板上,并提供玉米豆粕的饮食,没有或用Yn(500克/毫秒; n = 12)。在D 10,6每饮食重复,口服施用1ml E.Cervulina和E.Maxima孢子状的卵囊,其余(非攻击对照)用1ml蒸馏水施用。在D 15,5只鸟类/笔是尸检用于肠病变评分,组织形态学和肠道Digesta pH,短链脂肪酸(SCFA)和使用Illumina Miseq平台的微生物群落。补充Yn改善(P = 0.01)进料转化比(FCR)在预充电阶段(D 0至10)。在后期(D 11至15)中,相对于非攻击性鸟类抑制(P <0.05)体重增加(BWG),而与之相比,YN喂鸟的鸟类具有更高(P = 0.05)BWG非YNFED鸟类。 Yn和Eimeria之间的相互作用在Jejunal Villi Height(VH)(p = 0.001)和阳离子氨基酸转运蛋白1(CAT1)的表达(P = 0.04)。具体地,在没有eimeria的情况下,在eimeria存在下,Yn-Fed鸟类相对于对照的较短VH(892vs.1.020μm),但在eimeria存在下越长(533与447μm)。关于CAT1,当受到非艾米氏症时,Yn-Fed鸟类表达越高(1.65 vs.0.78)表达而不是不挑战。独立地,Eimeria降低(p& 0.01)麦芽酶,Na葡萄糖转运蛋白1和occludin基因的Jejunal表达,CECA Digesta属植物簇XLVA和振动杆菌(P <0.01)Jejunal增殖细胞核抗原和白细胞介素10 。对于CECA Digesta pH(p = 0.04)和总SCA(p = 0.01),观察到Yn和eimeria之间的相互作用,使得YN在没有eimeria的情况下增加SCFA,但在eimeria存在下降低了pH。总之,Eimeria的性能和肠道功能和移位肠道微生物组; YN独立改进性能,对肠道功能指数衰减的eimeria损伤,并调制盲肠微生物组。

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