Byrne Laurann, Ross Stephen, Taylor-Pickard Jules, Murphy Richard
Alltech Biotechnology Centre, Summerhill Road, A86 X006 Dunboyne, Ireland.
Alltech E-CO2, Ryhall Road, Stamford PE9 1TZ, UK.
Animals (Basel). 2023 Oct 7;13(19):3132. doi: 10.3390/ani13193132.
The effect of supplementing organic trace minerals (OTM), in the form of mineral proteinates (Bioplex Cu, Fe, Mn, and Zn, Alltech Inc., Nicholasville, KY, USA), in the diets of laying hens was examined using Comprehensive Meta-Analysis (CMA) statistical software. The impact on production performance, egg quality traits, and sustainability parameters related to the carbon footprint of egg production was assessed. Data were obtained from 32 global studies, comprising 107 dietary assessments of 30,992 laying hens. Overall pooled effect size (raw mean difference) of production performance when dietary organic trace minerals were supplemented either in basal diets, partial replacement of inorganic trace minerals (ITM), or total replacement of ITM, indicated that use of Bioplex minerals resulted in 2.07% higher hen-day production (HDP), whilst feed conversion ratio (FCR) was lower by 51.28 g feed/kg egg and 22.82 g feed/dozen eggs, respectively. For egg quality traits, daily egg mass was 0.50 g/hen/day higher and egg weight was 0.48 g per egg greater when Bioplex minerals were incorporated in the diet. The mean difference in egg loss was -0.62%. Eggshell thickness was greater by 0.01 mm, and a higher eggshell strength of 0.14 kgf was observed. Eggshell weight was heavier by 0.20 g, eggshell percentage was higher by 0.15%, and Haugh unit was 1 point higher (0.89). We also carried out a meta-regression of the effects of the study factors (location, year of study, hen breed/strain, age of hens, number of hens, and study duration) on the overall pooled effect size of the production performance and egg quality traits in response to supplementary OTM inclusion, and it indicated that certain factors had a significant ( < 0.05) impact on the results. Finally, a life cycle assessment (LCA) model was selected to evaluate the impact of feeding organic trace mineral proteinates on the carbon footprint (feed and total emission intensities) of the egg production using the data generated from the meta-analysis. Results showed that the inclusion of OTM proteinates resulted in an average drop in feed and total emission intensities per kg eggs of 2.40% and 2.50%, respectively, for a low-global-warming-potential (GWP) diet and a drop of 2.40% and 2.48% for feed and total emissions, respectively, based on high-GWP diet. Based on the overall results, the inclusion of organic trace mineral proteinates in layer diets can benefit production performance and egg quality traits while contributing to a lower carbon footprint.
使用综合荟萃分析(CMA)统计软件,研究了在蛋鸡日粮中添加有机微量元素(OTM)(以金属蛋白盐形式,即Bioplex铜、铁、锰和锌,奥特奇公司,美国肯塔基州尼古拉斯维尔)的效果。评估了其对生产性能、蛋品质性状以及与蛋生产碳足迹相关的可持续性参数的影响。数据来自32项全球研究,包括对30992只蛋鸡的107次日粮评估。当在基础日粮中添加有机微量元素、部分替代无机微量元素(ITM)或完全替代ITM时,生产性能的总体合并效应量(原始平均差)表明,使用Bioplex矿物质可使母鸡日产蛋量(HDP)提高2.07%,而饲料转化率(FCR)分别降低51.28克饲料/千克蛋和22.82克饲料/打鸡蛋。对于蛋品质性状,日粮中添加Bioplex矿物质时,每日蛋重提高0.50克/只/天,蛋重每枚增加0.48克。蛋损失平均差异为 -0.62%。蛋壳厚度增加0.01毫米,观察到蛋壳强度提高0.14千克力。蛋壳重量增加0.20克,蛋壳百分比提高0.15%,哈夫单位提高1分(0.89)。我们还对研究因素(地点、研究年份、母鸡品种/品系、母鸡年龄、母鸡数量和研究持续时间)对添加补充性OTM时生产性能和蛋品质性状的总体合并效应量的影响进行了元回归分析,并表明某些因素对结果有显著(<0.05)影响。最后,选择了一个生命周期评估(LCA)模型,使用荟萃分析生成的数据来评估饲喂有机微量元素金属蛋白盐对蛋生产碳足迹(饲料和总排放强度)的影响。结果表明,对于低全球变暖潜能值(GWP)日粮,添加OTM金属蛋白盐导致每千克鸡蛋饲料和总排放强度平均分别下降2.40%和2.50%;基于高GWP日粮,饲料和总排放量分别下降2.40%和2.48%。基于总体结果,蛋鸡日粮中添加有机微量元素金属蛋白盐可提高生产性能和蛋品质性状,同时有助于降低碳足迹。