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外源膳食木聚糖酶可改善小麦型日粮对白羽肉鸭(Anas platyrinchos domesticus)因粘度引起的抗营养作用。

Exogenous dietary xylanase ameliorates viscosity-induced anti-nutritional effects in wheat-based diets for White Pekin ducks (Anas platyrinchos domesticus).

作者信息

Adeola Olayiwola, Bedford Michael R

机构信息

Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Br J Nutr. 2004 Jul;92(1):87-94. doi: 10.1079/BJN20041180.

Abstract

Nutrient utilisation and growth performance responses of White Pekin ducks (Anas platyrinchos domesticus) offered diets containing low- or high-viscosity wheat supplemented with xylanase were investigated in two studies. In Expt 1, six diets consisting of low-viscosity wheat or high-viscosity wheat supplemented with 0.0, 1.5 or 3.0 g xylanase (2590 units/g)/kg diet were used in a true metabolisable energy (TME) bioassay with eight 8-week-old ducks per diet group. In Expt 2, eight pens of ten 3-d-old ducks per pen for each of six wheat-based diets arranged in a 2 x 3 factorial of low-viscosity or high-viscosity wheat and 0.0, 1.5 or 3.0 g xylanase/kg were used in a 42 d growth study. High-viscosity wheat depressed (P<0.001) TME and xylanase supplementation improved (P<0.001) TME, more so for high-viscosity than low-viscosity wheat. Xylanase supplementation of the high-viscosity wheat-based diet improved (P<0.05) weight gain and gain:feed ratio by 13 and 12 % respectively. There was no weight gain or gain:feed ratio response to xylanase supplementation of the low-viscosity wheat-based diet. Xylanase supplementation reduced (P<0.001) the viscosity of duodenal and ileal digesta for high-viscosity but not low-viscosity wheat-based diets. Ileal digestibilities of nutrients and energy were higher (P<0.001) for low-viscosity than high-viscosity wheat-based diets; xylanase supplementation improved (P<0.05) energy, fat, N and starch digestibilities. Given that xylanase supplementation of high-viscosity wheat assuaged its anti-nutritional effect, it is surmised that digesta viscosity plays a role in anti-nutritional effects in wheat-based diets for ducks.

摘要

在两项研究中,对饲喂含低粘度或高粘度小麦且添加木聚糖酶日粮的北京鸭(Anas platyrinchos domesticus)的养分利用和生长性能反应进行了研究。在实验1中,六种日粮由低粘度小麦或高粘度小麦组成,分别添加0.0、1.5或3.0克木聚糖酶(2590单位/克)/千克日粮,用于真代谢能(TME)生物测定,每个日粮组有八只8周龄的鸭子。在实验2中,在一项为期42天的生长研究中,使用了八个围栏,每个围栏中有十只3日龄的鸭子,六种基于小麦的日粮按低粘度或高粘度小麦以及0.0、1.5或3.0克木聚糖酶/千克的2×3析因排列。高粘度小麦降低了(P<0.001)TME,添加木聚糖酶提高了(P<0.001)TME,高粘度小麦的提高幅度比低粘度小麦更大。在以高粘度小麦为基础的日粮中添加木聚糖酶分别使体重增加和增重:饲料比提高了(P<0.05)13%和12%。在以低粘度小麦为基础的日粮中添加木聚糖酶对体重增加或增重:饲料比没有影响。添加木聚糖酶降低了(P<0.001)高粘度但未降低低粘度小麦日粮的十二指肠和回肠食糜粘度。低粘度小麦日粮的养分和能量回肠消化率高于(P<0.001)高粘度小麦日粮;添加木聚糖酶提高了(P<0.05)能量、脂肪、氮和淀粉的消化率。鉴于在高粘度小麦中添加木聚糖酶减轻了其抗营养作用,可以推测食糜粘度在鸭用小麦日粮的抗营养作用中起作用。

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