KTH Royal Institute of Technology, Department of Sustainable Development, Environmental Science and Engineering, Teknikringen 10B, SE-100 44 Stockholm, Sweden; RISE Research Institutes of Sweden, Department of Agriculture and Food, PO Box 5401, 402 29 Göteborg, Sweden.
RISE Research Institutes of Sweden, Department of Agriculture and Food, PO Box 5401, 402 29 Göteborg, Sweden.
Sci Total Environ. 2024 Jan 10;907:168018. doi: 10.1016/j.scitotenv.2023.168018. Epub 2023 Oct 23.
Seafood has an important role to play to achieve a sustainable food system that provides healthy food to a growing world population. Future seafood production will be increasingly reliant on aquaculture where feed innovation is essential to reduce environmental impacts and minimize feed and food competition. This study aimed to investigate whether a novel single cell protein feed ingredient based on Paecilomyces variotii grown on a side stream from the forest industry could improve environmental sustainability of farmed rainbow trout (Oncorhynchus mykiss) by replacing the soy protein concentrate used today. A Life Cycle Assessment including commonly addressed impacts but also the rarely assessed biodiversity impacts was performed. Furthermore, feeding trials were included for potential effects on fish growth, i.e., an assessment of the environmental impacts for the functional unit 'kg feed required to produce 1 kg live-weight rainbow trout'. Results showed that the best experimental diet containing P. variotii performed 16-73 % better than the control diet containing soy protein concentrate in all impact categories except for energy demand (21 % higher impact). The largest environmental benefits from replacing soy protein with P. variotii in rainbow trout diets was a 73 % reduction of impact on biodiversity and halved greenhouse gas emissions. The findings have high relevance for the aquaculture industry as the production scale and feed composition was comparable to commercial operations and because the effect on fish growth from inclusion of the novel ingredient in a complete diet was evaluated. The results on biodiversity loss from land use change and exploitation through fishing suggest that fishery can dominate impacts and exclusion thereof can greatly underestimate biodiversity impact. Finally, a novel feed ingredient grown on side streams from the forest industry has potential to add to food security through decreasing the dependence on increasingly scarce agricultural land resources.
海鲜在实现可持续食物系统方面发挥着重要作用,为不断增长的世界人口提供健康的食物。未来的海鲜生产将越来越依赖水产养殖,而饲料创新对于减少环境影响和最小化饲料和食物竞争至关重要。本研究旨在探讨一种基于侧流培养的新型单细胞蛋白饲料原料(侧流是从森林工业中获得的,来自于真菌Paecilomyces variotii),是否可以通过替代当今使用的大豆浓缩蛋白,来提高养殖虹鳟(Oncorhynchus mykiss)的环境可持续性。进行了生命周期评估,包括常见的影响因素,以及很少被评估的生物多样性影响。此外,还包括了喂养试验,以评估对鱼类生长的潜在影响,即评估“生产 1 公斤活重虹鳟所需的 1 公斤饲料的功能单位”的环境影响。结果表明,含有 P. variotii 的最佳实验饲料在除能源需求(高出 21%的影响)以外的所有影响类别中,比含有大豆浓缩蛋白的对照饲料的性能高出 16-73%。用 P. variotii 替代虹鳟饲料中的大豆蛋白,对生物多样性的影响最大,可减少 73%,温室气体排放量减半。由于生产规模和饲料组成与商业运营相当,并且评估了将新型成分纳入完整饮食对鱼类生长的影响,因此这些发现对水产养殖行业具有很高的相关性。从土地利用变化和捕捞造成的生物多样性损失的结果表明,渔业可以主导影响,而排除渔业则可能大大低估生物多样性的影响。最后,用森林工业的侧流培养的新型饲料成分具有通过减少对日益稀缺的农业土地资源的依赖来增加粮食安全的潜力。