Growth performance and carcass traits of growing and finishing pigs fed diets with a partial to total replacement of soybean meal with Spirulina powder

IF 7 1区 农林科学 Q1 Agricultural and Biological Sciences
Gregorio Don, Diana Giannuzzi, Alessandro Toscano, Stefano Schiavon, Luigi Gallo
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Abstract

The protein sources in pig diets strongly rely on soybean meal, but its production has been associated with soil degradation, deforestation and loss of biodiversity. Microalga Spirulina can be a potentially more sustainable alternative to soybean meal, but comprehensive information about its use in growing pigs is still lacking. This study aimed to evaluate the effects of partial to full replacement of dietary soybean meal with Spirulina on the growth and carcass traits of growing pigs and on the chemical and physical attributes of the meat. Eighty-eight pigs, gilts and barrows mixed together, with initial body weight of 52.4 ± 4.2 kg, were allotted into 4 isoenergetic, isoproteic, and isoaminoacidic dietary treatments, which included a conventional control diet based on cereals and soybean meal and one of 3 diets formulated by replacing nearly 33%, 66% or 100% soybean with Spirulina. Each treatment had 2 pens (11 pigs/pen), which were equipped with electronic feeders that were able to record individual feed intake. After 138 d on feed, at 174.9 ± 6.4 kg body weight, the pigs were slaughtered, and the carcass traits and meat quality parameters from loin samples were assessed. The palatability of feeds was not depressed in pigs fed Spirulina, even when the soybean was completely replaced by the microalga. The incorporation of Spirulina in the diets in place of soybean did not impair the growth rate or feed efficiency, irrespective of the extent of replacement. The carcass traits and yield of commercial cuts were comparable for all Spirulina-included compared with those of the soybean-based groups, and the same was found for the chemical and physical attributes of loin meat. The results obtained at the herd and slaughter levels revealed that the replacement of soybean meal with Spirulina did not negatively affect the growth or carcass traits of growing pigs or the main attributes of meat. Therefore, this study provides, for the first time, insights into the technical possibility of switching growing pig feeding systems toward more environmentally sustainable diets by including a microalga originating from landless feed production systems, which does not result in soil degradation or loss of biodiversity.
螺旋藻粉部分或全部替代豆粕对生长肥育猪生长性能和胴体性状的影响
猪日粮中的蛋白质来源严重依赖豆粕,但豆粕的生产与土壤退化、森林砍伐和生物多样性丧失有关。微藻螺旋藻可能是一种潜在的更可持续的豆粕替代品,但关于其在生长猪中的使用的综合信息仍然缺乏。本试验旨在评价螺旋藻部分或全部替代豆粕对生长猪生长和胴体性状以及肉品化学和物理性状的影响。试验选取初始体重为52.4±4.2 kg的猪、母猪和母猪共88头,分为4个等能、异蛋白和异氨基酸饲粮处理,分别为以谷物和豆粕为基础的常规对照饲粮和以螺旋藻替代近33%、66%和100%大豆的3种饲粮中的一种。每个处理有2个猪圈(11头猪/猪圈),每个猪圈配备电子摄食器,可记录个体采食量。饲喂138 d后,在体重(174.9±6.4 kg) kg时进行屠宰,评估胴体性状和腰肉样品的肉质参数。饲喂螺旋藻的猪饲料的适口性没有下降,即使大豆完全被微藻取代。在饲粮中添加螺旋藻代替大豆,无论替代程度如何,均不影响生长速度或饲料效率。与大豆组相比,所有螺旋藻组的胴体性状和产量相当,里脊肉的化学和物理特性也相同。在畜群和屠宰水平上的试验结果表明,螺旋藻替代豆粕对生长猪的生长和胴体性状及肉的主要性状没有负面影响。因此,这项研究首次提供了将生长猪饲养系统转变为更环保的可持续饲料的技术可能性,其中包括来自无地饲料生产系统的微藻,这不会导致土壤退化或生物多样性丧失。
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来源期刊
Journal of Animal Science and Biotechnology
Journal of Animal Science and Biotechnology AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
9.90
自引率
2.90%
发文量
822
审稿时长
17 weeks
期刊介绍: Journal of Animal Science and Biotechnology is an open access, peer-reviewed journal that encompasses all aspects of animal science and biotechnology. That includes domestic animal production, animal genetics and breeding, animal reproduction and physiology, animal nutrition and biochemistry, feed processing technology and bioevaluation, animal biotechnology, and meat science.
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