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增加食糜黏度会改变应激状态下禽类的营养转运体基因表达,并降低营养物质利用率。

Increasing digesta viscosity altered nutrient transporter gene expression and decreased nutrient utilisation in -challenged birds.

机构信息

Department of Animal Sciences, Purdue University, West Lafayette, IN, USA.

出版信息

Br Poult Sci. 2024 Dec;65(6):769-780. doi: 10.1080/00071668.2024.2377276. Epub 2024 Aug 30.

Abstract
  1. Two experiments were conducted, the first was to investigate the effect of increasing digesta viscosity by dietary carboxymethyl cellulose (CMC) on the growth performance and intestinal morphology and characteristics of healthy birds. The second experiment evaluated the impact of increased digesta viscosity in birds during an spp. challenge.2. In experiment 1, a corn-soybean meal-based basal diet was supplemented with 0, 10 or 20 g/kg CMC at the expense of cornstarch and offered to seven birds in each of eight replicate cages per diet from d 8 to 22 post hatching.3. Increasing digesta viscosity due to dietary CMC linearly reduced ( < 0.05) body weight (BW) gain and the apparent ileal digestibility of nutrients. The relative lengths of the duodenum, jejunum and ileum linearly increased ( < 0.01) with dietary CMC inclusion.4. In experiment 2, on d 14, 256 broiler chickens were randomly assigned to eight replicate cages in a 2 × 2 factorial arrangement of treatments with two CMC concentrations (0 or 10 g CMC/kg of diet), with or without an challenge. On d 15, birds in the challenge groups were orally gavaged with a 1 ml solution containing 25,000, 25,000 or 125,000 oocysts of , and ; or 1% PBS, respectively.5. Increasing digesta viscosity in -challenged birds decreased the total tract digestibility of dry matter and gross energy ( < 0.05). The ileal gene expression of glucose transporters was upregulated ( < 0.05) in challenged birds that received the CMC-supplemented diet.6. In summary, increased digesta viscosity induced changes in the expression of nutrient transporter genes and decreased nutrient utilisation in -challenged birds.
摘要
  1. 进行了两项实验,第一项实验旨在研究日粮羧甲基纤维素(CMC)增加食糜黏度对健康鸟类生长性能和肠道形态及特性的影响。第二项实验评估了在 spp. 感染期间增加鸟类食糜黏度的影响。

  2. 在实验 1 中,在玉米-豆粕基础日粮中补充 0、10 或 20g/kg CMC,用玉米淀粉替代,并在每个日粮 8 个重复笼中提供给 7 只鸡,从孵化后 8 天到 22 天。

  3. 由于日粮 CMC 的存在,食糜黏度线性降低( < 0.05)了体重(BW)增加和营养物质的表观回肠消化率。十二指肠、空肠和回肠的相对长度线性增加( < 0.01)随着日粮 CMC 的添加。

  4. 在实验 2 中,在第 14 天,256 只肉鸡被随机分配到 8 个重复笼中,进行 2×2 因子处理安排,有或没有 spp. 感染。在第 15 天,感染组的鸡通过口服灌胃给予含有 25,000、25,000 或 125,000 个卵囊的 1ml 溶液,分别为 、 和 ;或 1% PBS。

  5. challenged 鸟类食糜黏度增加降低了干物质和总能的全肠道消化率( < 0.05)。接受 CMC 补充日粮的 challenged 鸟类的葡萄糖转运体基因在回肠中的表达上调( < 0.05)。

  6. 综上所述,增加食糜黏度会引起 challenged 鸟类中营养转运体基因表达的变化,并降低 challenged 鸟类对营养物质的利用。

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