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日粮中添加(戊糖片球菌)益生菌对能量密度不同日粮条件下产蛋鸡生产性能、蛋品质和体组成的影响。

Effects of dietary probiotic (Pediococcus acidilactici) supplementation on productive performance, egg quality, and body composition in laying hens fed diets varying in energy density.

机构信息

Department of Poultry Science, University of Warmia and Mazury, 10-718 Olsztyn, Poland.

Department of Poultry Science, University of Warmia and Mazury, 10-718 Olsztyn, Poland.

出版信息

Poult Sci. 2020 Apr;99(4):2275-2285. doi: 10.1016/j.psj.2019.11.046. Epub 2020 Feb 26.

Abstract

This study was conducted to determine the effect of probiotic Pediococcus acidilactici (PA) strain MA18/5M supplementation of diets with different dietary energy levels on productive performance, egg quality, and body composition in Hy-Line Brown hens during a 16-week period from 32 to 47 wk of age. The experimental treatments with a 2 × 2 factorial design received a 2 wheat-corn-soybean diet: a moderately low energy density diet with 2,650 kcal ME/kg (M-LED) and a low energy density diet based on the M-LED diet with 2,550 kcal ME/kg (LED), each diet without and with probiotic supplementation (M-LED, LED, M-LEDp, and LEDp, respectively). Reduced dietary energy levels had a particularly negative effect on egg weight (61.7 vs. 63.3 g; -2.6%, P < 0.001), egg mass output (1.67 vs. 1.71 kg; -2.4%, P = 0.015), and FCR (2.01 vs. 1.97 kg feed/kg egg; +2%, P = 0.028). In hens administered the LED diet, deteriorated productive performance was accompanied by greater body weight loss (P < 0.001) and reduced abdominal fat content (P < 0.033) as compared with the M-LED group. Dietary probiotic inclusion increased egg weight (P = 0.015), including relative eggshell weight (P = 0.008) and eggshell thickness (P = 0.002) and significantly improved FCR (P = 0.010). No interactions between the PA-based probiotic and dietary energy levels were found in any of the tested parameters. Adding the probiotic on top of the M-LED diet improved layers performance but resulted in nonbioequivalence for the egg weight, egg mass output, and FCR compared with this group without probiotic. Probiotic supplementation of the LEDp diet improved all performance parameters except for egg weight. As a result, the laying rate, egg mass output, daily feed intake, and FCR in the LEDp treatment were bioequivalent to those noted in the M-LED group without the probiotic. The results of a bioequivalence test suggest that a low energy diet fed to laying hens promoted a probiotic response to improve energy utilization by birds.

摘要

本研究旨在确定不同日粮能量水平下添加益生菌戊糖片球菌(PA)MA18/5M 对 32 至 47 周龄海兰褐蛋鸡生产性能、蛋品质和体组成的影响。实验处理采用 2×2 析因设计,接受 2 种小麦-玉米-大豆日粮:中等低能量密度日粮,代谢能(ME)为 2650kcal/kg(M-LED)和基于 M-LED 日粮的低能量密度日粮,ME 为 2550kcal/kg(LED),每个日粮无或有益生菌添加(M-LED、LED、M-LEDp 和 LEDp,分别)。降低日粮能量水平对蛋重(61.7 与 63.3g;-2.6%,P<0.001)、蛋质量(1.67 与 1.71kg;-2.4%,P=0.015)和饲料转化率(2.01 与 1.97kg 饲料/kg 蛋;+2%,P=0.028)有特别负面的影响。在给予 LED 日粮的母鸡中,生产性能恶化伴随着体重下降(P<0.001)和腹部脂肪含量减少(P<0.033),与 M-LED 组相比。日粮中添加益生菌增加了蛋重(P=0.015),包括相对蛋壳重(P=0.008)和蛋壳厚度(P=0.002),并显著改善了饲料转化率(P=0.010)。在任何测试参数中,都没有发现基于戊糖片球菌的益生菌和日粮能量水平之间的相互作用。在 M-LED 日粮的基础上添加益生菌可改善蛋鸡的生产性能,但与无益生菌的该组相比,蛋重、蛋质量和饲料转化率等非生物等效。在 LEDp 日粮中添加益生菌可改善除蛋重外的所有性能参数。因此,LEDp 处理的产蛋率、蛋质量、日采食量和饲料转化率与无益生菌的 M-LED 组相当。生物等效性测试的结果表明,低能量日粮促进了益生菌的反应,改善了鸟类对能量的利用。

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