Elanco Animal Health, 2500 Innovation Way, Greenfield, IN, 46140, USA.
Elanco Innovation and Alliance Centre, 22, 3Rd Cross Rd, SR Layout, Murgesh Pallya, Bengaluru, Karnataka, India.
Sci Rep. 2022 Nov 1;12(1):18417. doi: 10.1038/s41598-022-23009-y.
Salmon aquaculture is the fastest growing animal protein production system in the world; however, intensive farming leads to poor weight gain, stress, and disease outbreaks. Probiotics offer the potential to enhance growth performance and feed efficiency in Atlantic salmon, as well as immunostimulate fish against common pathogens, benefitting farmers and consumers with more efficient production. Here, we isolated and identified 900 native microbial isolates including 18 Lactobacilli from the farmed salmon intestines. Based on whole-genome sequencing and phylogenetic analysis, the Lactobacillus candidates belonged to Latilactobacillus curvatus (L. curvatus) species and formed two distinct phylogenetic groups. Using bioinformatics and in vitro analyses, we selected two candidates L. curvatus ATCC PTA-127116 and L. curvatus ATCC PTA-127117, which showed desirable safety and probiotic properties. The two L. curvatus candidates were evaluated for safety and efficacy (higher final weight) in Atlantic salmon alongside spore-forming Bacilli isolated from salmon, poultry, and swine. All the tested candidates were safe to salmon with no adverse effects. While we did not see efficacy in any Bacillus supplemented groups, compared to untreated group, the group administered with the two L. curvatus strains consortium in feed for seven weeks in freshwater showed indicators of improvement in final body weight by 4.2%. Similarly, the two L. curvatus candidates were also evaluated for safety and efficacy in Atlantic salmon in saltwater; the group administered with the two L. curvatus strains consortium in feed for 11 weeks showed indicators of improvement in final body weight by 4.7%. Comprehensive metabolomics analyses in the presence of different prebiotics and/or additives identified galactooligosaccharide as a potential prebiotic to enhance the efficacy of two L. curvatus candidates. All together, these data provide comprehensive genomic, phenotypic and metabolomic evidence of safety and desirable probiotic properties as well as indicators of in vivo efficacy of two novel endogenous L. curvatus candidates for potential probiotic applications in Atlantic salmon. The in vivo findings need to be confirmed in larger performance studies, including field trials.
三文鱼养殖是世界上增长最快的动物蛋白生产系统;然而,集约化养殖导致生长缓慢、压力大和疾病爆发。益生菌有潜力提高大西洋三文鱼的生长性能和饲料效率,同时刺激鱼类对常见病原体产生免疫,使农民和消费者受益于更高效的生产。在这里,我们从养殖三文鱼的肠道中分离和鉴定了 900 株本土微生物分离株,其中包括 18 株乳杆菌。基于全基因组测序和系统发育分析,乳杆菌候选物属于卷曲乳杆菌(L. curvatus)种,形成两个不同的系统发育群。通过生物信息学和体外分析,我们选择了两个候选物卷曲乳杆菌 ATCC PTA-127116 和卷曲乳杆菌 ATCC PTA-127117,它们表现出良好的安全性和益生菌特性。这两个卷曲乳杆菌候选物与从三文鱼、家禽和猪中分离的芽孢形成芽孢杆菌一起,在大西洋三文鱼中进行了安全性和功效(更高的最终体重)评估。所有测试的候选物对三文鱼都是安全的,没有不良影响。虽然我们没有看到任何芽孢杆菌补充组的效果,但与未处理组相比,在淡水条件下用两种卷曲乳杆菌菌株的混合物进行了七周饲料喂养的三文鱼组,其最终体重有 4.2%的改善迹象。同样,这两个卷曲乳杆菌候选物也在盐水中对大西洋三文鱼的安全性和功效进行了评估;在 11 周的时间里,用两种卷曲乳杆菌菌株的混合物进行饲料喂养的三文鱼组,其最终体重有 4.7%的改善迹象。在存在不同的益生元和/或添加剂的情况下,进行全面的代谢组学分析,确定半乳糖寡糖是增强两种卷曲乳杆菌候选物功效的潜在益生元。综上所述,这些数据提供了全面的基因组、表型和代谢组学证据,证明了两种新型内源性卷曲乳杆菌候选物的安全性和理想的益生菌特性,以及它们在大西洋三文鱼体内功效的迹象。需要在更大的性能研究中,包括田间试验,来证实这些体内发现。