评估新型蛋白质成分节肢动物蛋白和大豆基因型氨基酸及油脂选择对 28-42 天饲养期肉鸡生产性能的影响

Poultry Pub Date : 2024-07-09 DOI:10.3390/poultry3030017
S.C. Wells-Crafton, Kenneth B. Nelson, G. Mullenix, Craig W. Maynard, M.T. Kidd
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引用次数: 0

摘要

为了评估在肉鸡日粮中添加新型蛋白质成分节肢动物蛋白或改良豆粕的效率,我们进行了两项实验。第一项实验旨在确定在方差分析设计中,与传统大豆品种相比,氨基酸含量增加(SBAA)和含油量提高(SBO)的大豆品种所生产的豆粕的饲用价值,并喂养 Cobb 500 雌性肉鸡 28-42 d。与传统大豆品种相比,SBAA 和 SBO 大豆的氨基酸含量总体较高,寡糖含量较低,而且油质也有所改善。第二项实验评估了新型蛋白质成分微藻类 Arthrospira platensis(藻类),采用 2 × 2 因式处理阵列,评估了藻类和玉米蒸馏谷物(DDGS)的加入对 Cobb CF05 雄性肉鸡在 28-42 天饲养期间的肉鸡生产性能的影响。实验前,所有鸡只均以普通饲料饲养。在实验 1 中,给肉鸡饲喂含有 20% 实验大豆源的全脂大豆粉。在实验 2 中,四种日粮处理包括藻类含量为 0% 或 2% 的日粮和 DDGS 含量为 0% 和 8% 的日粮。288只雌性肉鸡(实验1)和384只雄性肉鸡(实验2)的日粮被放置在8个重复的12只鸡栏中,从第28天到第42天对活体表现进行评估。在第 42 天时,从每个圈中随机挑选六只鸡进行处理,以评估胴体性状和乳房木质化的发生率。在实验 1 中,使用 JMP Pro 16 软件对所有性能数据进行单因素方差分析,日粮为固定效应,区段为随机效应。统计显著性以 p ≤ 0.05 为限。在活体性能、胴体性状或木质胸脯的任何记录测量中均未观察到明显的反应。实验 2 中的所有数据均使用 JMP 软件进行全因子混合模型分析,藻类、DDGS 和藻类 × DDGS 为固定效应,区块为随机效应。当 p≤ 0.05 时,采用 F 保护的 Fisher's LSD 检验来区分均值。藻类、DDGS 和藻类 × DDGS 对 BWG、FI 和 FCR 或加工特性的影响均无明显反应;原料来源不影响家禽的表现。阿肯色大学开发的实验性大豆品系能够被添加到肉鸡日粮中,而不会降低肉鸡的生产性能。藻类有可能成为肉鸡的蛋白质贡献原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Novel Protein Ingredient Arthrospira platensis and Soybean Genotype Amino Acid and Oil Selection Improvements on Broiler Performance for a 28–42 d Feeding Period
Two experiments were conducted to assess the efficiency of including the novel protein ingredient Arthrospira platensis or improved soybean meal in a broiler diet. The first experiment aimed to determine the feeding value of soybean meal produced from varieties of soybeans bred for increased amino acid content (SBAA) and improved oil content (SBO) compared to a conventional soybean variety in an ANOVA design fed to Cobb 500 female broilers for 28–42 d. The SBAA and SBO soybeans contained overall higher amino acid content and lower oligosaccharide content compared to the conventional soybean variety in addition to improved oil quality. The second experiment assessed the novel protein ingredient microalgae, Arthrospira platensis (algae), and was conducted to evaluate algae and corn distillers’ grain (DDGS) inclusion on broiler performance for a 28–42 d feeding period in Cobb CF05 male broilers with a 2 × 2 factorial treatment array. Prior to the experimental period, all birds were reared on common feeds. In Experiment 1, birds were fed a diet containing 20% inclusion of an experimental soybean source in the form of full-fat soybean meal. In Experiment 2, the four dietary treatments consisted of diets containing algae at inclusion levels of either 0 or 2% and DDGS at inclusion levels of 0% and 8%. Diets were fed to 288 female broilers (Experiment 1) and 384 male broilers (Experiment 2), placed in eight replicate pens of twelve birds, and live performance was assessed from d 28 to 42. At d 42, six birds from each pen were randomly selected and processed for evaluation of carcass traits and incidence of woody breast. For Experiment 1, all performance data were analyzed using a one-way ANOVA using JMP Pro 16 software with diet as the fixed effect and block as a random effect. Statistical significance was considered at p ≤ 0.05. No significant responses were observed for any recorded measurement for live performance, carcass traits, or woody breast. All data in Experiment 2 were analyzed as a full factorial with a mixed model using JMP software with algae, DDGS, and algae × DDGS as fixed effects and block as a random effect. The F-protected Fisher’s LSD test was used to separate means when p ≤ 0.05. No significant responses were observed for the algae, DDGS, and algae × DDGS influences on BWG, FI, and FCR or processing characteristics; the ingredient source did not affect bird performance. Experimental soybean lines developed at the University of Arkansas were able to be incorporated into broiler diets without decreasing performance. Algae has the potential to be a protein-contributing ingredient for broilers.
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