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Mannan oligosaccharide supplementation in diets of sow and (or) their offspring improved immunity and regulated intestinal bacteria in piglet

机译:甘露甘油寡糖补充母猪饮食和(或)其后代改善仔猪中的免疫力和受管制肠细菌

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摘要

The objectives of the current study were to explore the effects of mannan oligosaccharide (MOS) supplementation in the diets of sow and (or) their offspring on intestinal bacteria, intestinal and systemic inflammation in the piglet. A total of 60 multiparous sows (4 ± 1 parity; Landrace × Yorkshire) were fed either control diet (sCON, n = 30) or a diet containing 400 mg kg−1 MOS (sMOS, n = 30) from day 86 of gestation until weaning (day 20 of postpartum). On day 7 of age, offspring (Duroc × Landrace Yorkshire) were assigned within sow treatments and fed control diet (pCON) or diet containing 800 mg kg−1 MOS (pMOS) for 28 d (end at 35 d of age), resulting in four piglet diet groups (n = 15 litters per diet group): sCON-pCON, sCON-pMOS, sMOS-pCON, and sMOS-pMOS. Results found that piglet diet MOS increased or tend to increase Lactobacillus amount in the ileum digesta (P < 0.01) and jejunum digesta (P = 0.07), respectively; while tend to decrease Escherichia coli amount in jejunum digesta (P =0.06) and cecum digesta (P = 0.08). Both sow and piglet diets add MOS (sMOS-pMOS) increased Lactobacillus amount but decreased E. coli amount in jejunum digesta (P < 0.05) compared with the sCON-pCON diet group. In addition, sow diet MOS (rather than piglet diet MOS) increased sIgA content in piglet jejunum mucosa compared with control (P = 0.04). Sow diet MOS decreased toll-like receptor 2 (TLR2), toll-like receptor 4 (TLR4), and interleukin 8 (IL-8) mRNA levels (P < 0.05) and tended to decrease nuclear factor-κB p65 (NF-κB p65) mRNA level (P = 0.07) in piglet intestinal lymphatic. The interaction effects between sow and piglet diets were found on the mRNA levels of NF- κB p65 (P = 0.03) and IL-8 (P = 0.02) in piglet jejunum. Finally, the sow diet MOS decreased proinflammatory cytokines IL-2 (P < 0.01) and IL-4 (P < 0.01) concentrations in piglet serum. Piglets diet MOS decreased the contents of IL-2 (P = 0.03), IL-4 (P = 0.01) and interferon (IFN)-γ (P < 0.01) while increased anti-inflammatory cytokine IL-10 (P < 0.01) content in serum. The interaction effects between sows and piglet diets on IL-4 (P = 0.02), IL-10 (P < 0.01), and IFN-γ (P = 0.08) were observed. In conclusion, sow and/or piglet diet MOS could improve intestinal microbiota, enhance intestinal mucosal immune competence, and suppress intestinal and systemic inflammation in the piglet.
机译:目前研究的目标是探讨甘露寡糖(MOS)补充在母猪,(或)对幼虫,肠和全身炎症的后代饲料中的饮食中的饮食的影响。总共60母猪(4±1平价; Landrace×Yorkshire)喂食控制饮食(SCON,N = 30)或含有400mg KG-1 MOS(SMOS,N = 30)的饮食从妊娠的第86天喂食直到断奶(产后第20天)。在年龄的第7天,在播种治疗和含有800mg KG-1 MOS(PMOS)的母猪治疗和喂养控制饮食(PCON)或饮食中分配了后代(Duroc×Landrace Yorkshire,为28d(在35岁处结束),产生在四颗仔猪饮食组(每个饮食组n = 15个窝):SCON-PCON,SCON-PMOS,SMOS-PCON和SMOS-PMOS。结果发现仔猪饮食MOS的增加或倾向于增加回肠消化物(P <0.01)和JEJUNUM DIGESTA(P = 0.07)中的乳酸杆菌量;虽然倾向于降低Jejunum Digesta(p = 0.06)和盲肠沸腾(p = 0.08)中的大肠杆菌量。播种和仔猪饮食添加MOS(SMOS-PMOS)增加乳酸杆菌量,但与SCON-PCON饮食组相比,Jejunum Digesta(P <0.05)中的大肠杆菌量降低。此外,播种饮食MOS(而不是仔猪饮食MOS)与对照相比,仔猪Jejunum粘膜中的SIGA含量增加(P = 0.04)。播种饮食MOS减少的Toll样受体2(TLR2),Toll样受体4(TLR4)和白细胞介素8(IL-8)mRNA水平(P <0.05),倾向于减少核因子-κBP65(NF-κB P65)PIGLIT肠淋巴细胞膜水平(p = 0.07)。在Piglet Jejunum的NF-κBp65(p = 0.03)和IL-8(P = 0.02)的MRNA水平上发现母猪和仔猪饮食之间的相互作用效应。最后,母猪饮食MOS减少了仔猪血清中的促炎细胞因子IL-2(P <0.01)和IL-4(P <0.01)浓度。仔猪饮食MOS减少IL-2(p = 0.03),IL-4(P = 0.01)和干扰素(IFN)-γ(P <0.01)的含量,而增加的抗炎细胞因子IL-10(P <0.01)血清中的内容。观察到IL-4(P = 0.02),IL-10(P <0.01)和IFN-γ(P = 0.08)上的母猪和仔猪饲料之间的相互作用效应。总之,母猪和/或仔猪饮食MOS可以改善肠道微生物群,增强肠粘膜免疫能力,抑制仔猪中的肠道和全身炎症。

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