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Diurnal heat stress reduces pig intestinal integrity and increases endotoxin translocation.昼夜热应激会降低猪的肠道完整性,并增加内毒素易位。
Transl Anim Sci. 2018 Jan 25;2(1):1-10. doi: 10.1093/tas/txx003. eCollection 2018 Feb.
2
A dietary carbohydrase blend improved intestinal barrier function and growth rate in weaned pigs fed higher fiber diets.饲粮中添加一种复合碳水化合物酶制剂改善了断奶仔猪饲粮中高纤维日粮对肠道屏障功能和生长性能的影响。
J Anim Sci. 2018 Dec 3;96(12):5233-5243. doi: 10.1093/jas/sky383.
3
Lipopolysaccharide immune stimulation but not β-mannanase supplementation affects maintenance energy requirements in young weaned pigs.脂多糖免疫刺激而非β-甘露聚糖酶添加影响断奶仔猪的维持能量需求。
J Anim Sci Biotechnol. 2018 Jun 15;9:47. doi: 10.1186/s40104-018-0264-y. eCollection 2018.
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Effects of Early Intervention with Sodium Butyrate on Gut Microbiota and the Expression of Inflammatory Cytokines in Neonatal Piglets.丁酸钠早期干预对新生仔猪肠道微生物群及炎性细胞因子表达的影响
PLoS One. 2016 Sep 9;11(9):e0162461. doi: 10.1371/journal.pone.0162461. eCollection 2016.
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The evolving role of interferons in viral eradication strategies.干扰素在病毒清除策略中的作用演变。
J Virus Erad. 2016 Apr 1;2(2):121-3. doi: 10.1016/S2055-6640(20)30467-2.
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Arabinoxylans, gut microbiota and immunity.阿拉伯木聚糖、肠道微生物群和免疫。
Carbohydr Polym. 2016 Mar 30;139:159-66. doi: 10.1016/j.carbpol.2015.11.068. Epub 2015 Nov 29.
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Effect of xylanases on ileal viscosity, intestinal fiber modification, and apparent ileal fiber and nutrient digestibility of rye and wheat in growing pigs.木聚糖酶对生长猪回肠黏度、肠道纤维改性以及黑麦和小麦表观回肠纤维与养分消化率的影响。
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Xylanase increased the ileal digestibility of nonstarch polysaccharides and concentration of low molecular weight nondigestible carbohydrates in pigs fed high levels of wheat distillers dried grains with solubles.木聚糖酶提高了饲喂高水平小麦干酒糟及其可溶物的猪的回肠非淀粉多糖消化率和低分子量不可消化碳水化合物的浓度。
J Anim Sci. 2015 Jun;93(6):2885-93. doi: 10.2527/jas.2014-8829.
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Effects of dietary supplementation of multi-enzyme on growth performance, nutrient digestibility, small intestinal digestive enzyme activities, and large intestinal selected microbiota in weanling pigs.日粮添加复合酶对断奶仔猪生长性能、养分消化率、小肠消化酶活性及大肠特定微生物群的影响。
J Anim Sci. 2014 May;92(5):2063-9. doi: 10.2527/jas.2013-6672. Epub 2014 Mar 18.
10
Dietary fibre affects intestinal mucosal barrier function and regulates intestinal bacteria in weaning piglets.膳食纤维影响断奶仔猪肠道黏膜屏障功能,并调节肠道细菌。
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外源碳水化合物添加到起始日粮中可降低断奶仔猪的系统免疫激活标志物,并减少乳酸杆菌。

Exogenous carbohydrases added to a starter diet reduced markers of systemic immune activation and decreased Lactobacillus in weaned pigs1.

机构信息

Department of Animal Science, Iowa State University, Ames, IA.

USDA-ARS-National Animal Disease Center, Ames, IA.

出版信息

J Anim Sci. 2019 Mar 1;97(3):1242-1253. doi: 10.1093/jas/sky481.

DOI:10.1093/jas/sky481
PMID:30590571
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6396408/
Abstract

Although the impact of carbohydrases on performance and nutrient utilization has been well studied, their effects on immune status and intestinal microbiota are less known in pigs. This study aimed to evaluate the impact of xylanase (X) and a carbohydrase enzyme blend (EB; cellulase, ß-glucanase, and xylanase) on the immune profile of the intestine and peripheral system as well as intestinal microbes and microbial metabolites of weaned pigs fed higher fiber diets. Pigs (n = 460; 6.43 ± 0.06 kg BW; F25 × 6.0 Genetiporc) were blocked by initial BW. Pens (n = 48; 12 per treatment; 9 or 10 pigs per pen) were randomly assigned to 1 of 4 dietary treatments, including a higher fiber control diet (CON) and the CON supplemented with 0.01% X, 0.01% EB, or both enzymes (X + EB), arranged in a 2 × 2 factorial. The diets were based on corn, soybean meal, corn distillers dried grains with solubles, and wheat middlings. After 7-d adaptation to the environment, pigs were fed experimental diets ad libitum for 28 d. Blood samples were collected from the same pig within each pen on days 0, 7, 14, and 28. Intestinal tissues and digesta were collected on day 28. Bacteria 16S rRNA gene copy numbers were quantified using qPCR. The mRNA levels of colonic IL-17, occludin (OCLN), and claudin 3 (CLDN3) were greater in pigs fed diets with X + EB, but not X or EB, compared with those fed CON (P < 0.05). The EB in the diet reduced plasma IL-8 over the 28-d trial compared with diets without EB (P < 0.05). There was an X × EB interaction on plasma tumor necrosis factor α and IL-1ß (P < 0.05); their levels were decreased when X and EB were added together, but not individually, compared with CON. The EB decreased cecal propionate, butyrate, and total volatile fatty acids (P < 0.05). Pigs fed X had lower ileal Lactobacillus and greater ileal and cecal Enterobacteriaceae compared with those fed unsupplemented diets (P < 0.05). The EB decreased Lactobacillus (P < 0.05) and tended to decrease (P = 0.065) Enterobacteriaceae in the colon compared with diets without EB. In conclusion, the addition of X and EB together decreased systemic markers of immune activation, potentially diverting energy and nutrients towards growth. The EB reduced colonic Lactobacillus and cecal total volatile fatty acids, probably due to improved prececal fiber and starch degradation and thus reduced substrate availability in the large intestine. These data corroborated previously observed enhanced growth in pigs fed EB-supplemented diets.

摘要

尽管碳水化合物酶对性能和营养利用的影响已经得到了很好的研究,但它们对猪的免疫状态和肠道微生物群的影响知之甚少。本研究旨在评估木聚糖酶 (X) 和碳水化合物酶混合物 (EB;纤维素酶、β-葡聚糖酶和木聚糖酶) 对高纤维饮食喂养的断奶仔猪肠道和外周系统免疫状况以及肠道微生物和微生物代谢物的影响。将猪 (n = 460;6.43 ± 0.06 kg BW;F25 × 6.0 Genetiporc) 按初始 BW 进行分组。将猪舍 (n = 48;12 头/处理;每间 9 或 10 头猪) 随机分配到 4 种饮食处理中的 1 种,包括高纤维对照饮食 (CON) 和 CON 补充 0.01% X、0.01% EB 或两者的酶 (X + EB),以 2 × 2 因子排列。这些饮食以玉米、豆粕、玉米酒糟干物质和小麦麸皮为基础。在适应环境 7 天后,猪可以自由采食实验饮食 28 天。在每个猪舍内,从同一头猪身上采集血液样本,分别在第 0、7、14 和 28 天进行。在第 28 天采集肠道组织和消化物。使用 qPCR 定量细菌 16S rRNA 基因拷贝数。与 CON 相比,X + EB 组猪的结肠 IL-17、occludin (OCLN) 和 claudin 3 (CLDN3) 的 mRNA 水平更高 (P < 0.05)。与不含 EB 的日粮相比,日粮中的 EB 在整个 28 天试验中降低了血浆 IL-8(P < 0.05)。X 和 EB 之间存在 X × EB 相互作用 (P < 0.05);与 CON 相比,同时添加 X 和 EB 会降低而不是单独添加时血浆肿瘤坏死因子-α和 IL-1ß 的水平。EB 降低了盲肠丙酸、丁酸和总挥发性脂肪酸 (P < 0.05)。与未添加日粮相比,添加 X 的猪的回肠乳酸杆菌减少,回肠和盲肠肠杆菌科增加 (P < 0.05)。与不含 EB 的日粮相比,EB 降低了结肠中的乳酸杆菌 (P < 0.05),并趋于降低肠杆菌科 (P = 0.065)。总之,X 和 EB 的共同添加降低了全身免疫激活的标志物,可能将能量和营养物质转移到生长上。EB 降低了结肠中的乳酸杆菌和盲肠中的总挥发性脂肪酸,可能是由于改善了前肠纤维和淀粉的降解,从而减少了大肠中底物的可用性。这些数据证实了之前观察到的添加 EB 的猪生长增强。