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蜡质淀粉皮壳无芒大麦分级添加物和多组分外源碳水化合物酶对肉鸡生长性能、养分消化率和肠道形态的影响。

The effect of graded inclusions of waxy starch hull-less barley and a multi-component exogenous carbohydrase on the growth performance, nutrient digestibility and intestinal morphometry of broiler chickens.

机构信息

Monogastric Research Centre, School of Agriculture and Environment, Massey University , Palmerston North, New Zealand.

出版信息

Br Poult Sci. 2020 Aug;61(4):442-453. doi: 10.1080/00071668.2020.1755013. Epub 2020 May 27.

DOI:10.1080/00071668.2020.1755013
PMID:32290703
Abstract
  1. A 21-d experiment was conducted to investigate the effect of graded inclusions of waxy starch hull-less (WSHL) barley and a multi-component exogenous carbohydrase on the growth performance, nutrient digestibility and intestinal morphometry of broiler chickens. Five levels of WSHL barley inclusion (0, 65, 130, 195 and 260 g/kg) in a wheat-based diet, and two levels of enzyme supplementation (0 and 150 g/tonne of feed) were evaluated in a 5 × 2 factorial arrangement of 10 dietary treatments. All diets were equivalent in metabolisable energy and digestible amino acid content. A total of 400, one-d-old male broilers (five cages/treatment; eight birds/cage) were used in the experiment. 2. Regardless of enzyme supplementation, feed intake declined (P < 0.001) with increasing inclusion of WSHL barley. Increasing levels of WSHL barley (P < 0.001) and supplemental enzyme (P < 0.01) increased gain to feed ratio. 3. Birds fed diets with 0 g/kg WSHL barley showed the lowest (P < 0.001 to 0.01) digestibility for all nutrients except starch. Only starch digestibility was improved (P < 0.05) by enzyme supplementation. The nitrogen-corrected apparent metabolisable energy improved with increasing inclusion of WSHL barley (P < 0.001) and supplemental enzyme (P < 0.001). Increasing inclusion of WSHL barley increased the relative weight of gizzard (P < 0.001) and reduced jejunal digesta viscosity (P < 0.01). Supplemental enzyme (P < 0.001) reduced digesta viscosity. 4. All levels of WSHL barley inclusion improved digestibility of dry matter, nitrogen and fat, whilst energy utilisation improved at inclusions of 130 g/kg WSHL and above, probably due to lowered digesta viscosity and better development of the gizzard. Gain to feed ratio, starch digestibility, energy utilisation and jejunal digesta viscosity can benefit from carbohydrase supplementation in wheat-based diets, regardless of barley inclusion level.
摘要
  1. 进行了一项为期 21 天的实验,以研究蜡质淀粉壳无(WSHL)大麦分级添加和多种成分外源碳水化合物酶对肉鸡生长性能、养分消化率和肠道形态的影响。在以小麦为基础的日粮中,评估了 5 个 WSHL 大麦添加水平(0、65、130、195 和 260g/kg)和 2 个酶添加水平(0 和 150g/吨饲料)的组合,采用 10 种日粮处理的 5×2 因子设计。所有日粮的代谢能和可消化氨基酸含量均相等。共有 400 只 1 日龄雄性肉鸡(每个处理 5 个笼子;每个笼子 8 只鸡)用于实验。

  2. 无论是否添加酶,随着 WSHL 大麦添加量的增加,饲料摄入量均下降(P<0.001)。随着 WSHL 大麦添加水平的增加(P<0.001)和补充酶(P<0.01),增益与饲料的比例增加。

  3. 不添加 0g/kg WSHL 大麦的日粮的鸡对所有养分(除淀粉外)的消化率最低(P<0.001 至 0.01)。只有酶的补充提高了淀粉的消化率(P<0.05)。随着 WSHL 大麦添加量的增加,氮校正表观代谢能提高(P<0.001),补充酶也提高了氮校正表观代谢能(P<0.001)。随着 WSHL 大麦添加量的增加,相对重量增加了(P<0.001),降低了空肠食糜的粘度(P<0.01)。补充酶(P<0.001)降低了食糜的粘度。

  4. 所有 WSHL 大麦添加水平都提高了干物质、氮和脂肪的消化率,而在添加 130g/kg WSHL 及以上的水平时,能量利用率提高,这可能是由于降低了食糜粘度和更好地发展了肌胃。无论大麦添加水平如何,碳水化合物酶的添加都可以提高增益与饲料的比例、淀粉消化率、能量利用率和空肠食糜的粘度。

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