首页> 外文OA文献 >Effects of Achyranthes bidentata Polysaccharides on Intestinal Morphology, Immune Response, and Gut Microbiome in Yellow Broiler Chickens Challenged with Escherichia coli K88
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Effects of Achyranthes bidentata Polysaccharides on Intestinal Morphology, Immune Response, and Gut Microbiome in Yellow Broiler Chickens Challenged with Escherichia coli K88

机译:黄肉鸡鸡肠道形态,免疫反应和肠道微生物症对大肠杆菌K88攻击的抗脑膜形态,免疫反应和肠道微生物的影响

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摘要

The present study was conducted to investigate the effects of dietary Achyranthes bidentata polysaccharide (ABPS) supplementation on performance, immune response, intestinal mucosal morphology, and gut microbiome in yellow-feathered broilers challenged with Escherichia coli K88. A 2 × 2 factorial design was used for the trial. Two hundred and forty one-day-old female broilers were randomly assigned to four treatments: (1) negative-control broilers were fed by a basal diet and saline (NG); (2) positive-control broilers were fed by a basal diet and orally challenged with 108 CFU E. coli K88 (CNG); (3) ABP group broilers were fed by a basal diet containing ABPS (500 mg/kg of feed) and saline; (4) CABP group broilers were fed by a basal diet containing ABPS (500 mg/kg of feed) and orally challenged with 108 CFU E. coli K88. Growth performance, serum biochemical indexes, immune responses, intestinal mucosal morphology, and cecal microbial community structure were evaluated. The ABP group had greatest body weight (BW), average daily body weight gain (ADG), and intestinal villus height compared to other treatments (p < 0.05). The CABP group had a higher villus height/crypt depth ratio (V/C) compared with other treatments (p < 0.05). The expression levels of NF-κB were lower in the ABP group. The CNG group had higher Escherichia coli and Enterococcus contents in cecal samples compared to other treatments (p < 0.05). Serum glucose, uric acid, TNF-α, and Secretory Immunoglobulin A (S-IgA) levels were higher in broilers challenged with E. coli (p < 0.001) than that with saline. Broilers challenged with E. coli had reduced taxa richness in the cecal samples. Sequencing of 16S rRNA genes in cecal samples revealed that a lower proportion of Firmicutes and a higher proportion of Proteobacteria were detected in the broilers challenged with E. coli. Compared with the controls, dietary ABPS supplementation increased serum total protein, albumin, and S-IgA levels, but decreased serum glucose, uric acid, and TNF-α levels in broilers (p < 0.05). Diet supplemented with ABPS increased the Firmicutes/Bacteroidetes ratio and the abundance of Ruminococcaceae and Lachnospiraceae, and altered cecal microbiota community structure. These results suggest that ABPS can promote growth performance and improve intestinal morphology and microbiota community structure in broilers challenged with E. coli K88.
机译:进行了本研究以研究膳食achyranths多糖(ABP)对性能,免疫反应,肠粘膜形态学和肠道肉鸡挑战性大肠杆菌K88挑战的肠道微生物组的影响。 2×2因子设计用于试验。两百四十一天的雌性肉鸡随机分配到四种治疗方法:(1)负对照肉鸡被基础饮食和盐水(Ng)喂养; (2)阳性对照肉鸡通过基础饮食喂养,口服攻击108 CFU大肠杆菌K88(CNG); (3)ABP组肉鸡被含有ABPS(500mg / kg饲料)和盐水的基础饮食喂养; (4)CABP组肉鸡被含有ABPS(500mg / kg饲料)的基础饮食喂养,口服攻击108 CFU大肠杆菌K88。评估生长性能,血清生物化学指标,免疫应答,肠粘膜粘膜粘膜形态和脑微生物群落结构。 ABP组体重最大(BW),平均每日体重增加(ADG)和肠绒毛高度与其他处理相比(P <0.05)。与其他处理相比,CABP组具有更高的绒毛高度/隐窝深度比(v / c)(P <0.05)。 ABP组中NF-κB的表达水平较低。与其他处理相比,CNG组在Cechal样品中具有较高的大肠杆菌和肠球菌含量(P <0.05)。血清葡萄糖,尿酸,TNF-α和分泌物免疫球蛋白A(S-IGA)水平较高,肉鸡挑战大肠杆菌(P <0.001)比用盐水攻击。用大肠杆菌挑战的肉鸡在CECAL样品中减少了富有征集性的富有征集性。肠样品中16S rRNA基因的测序显示,在用大肠杆菌攻击的肉鸡中检测到较低比例的压力和较高比例的植物菌。与对照组相比,膳食ABPS补充增加血清总蛋白,白蛋白和S-IgA水平,但血清葡萄糖,尿酸和肉鸡的TNF-α水平降低(P <0.05)。补充了ABP的饮食增加了常规/菌斑比和喇菇和Lachnospiraceae的丰富,并改变了肠髓癌群落结构。这些结果表明,ABP可以促进生长性能,并改善肉鸡与大肠杆菌K88挑战肉鸡的肠形态和微生物群落结构。

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