Bauer Julia, Adamek Mikolaj, Miebach Anne-Carina, Gährken Jakob, Wessels Stephan, Tetens Jens, Dietz Carsten, Sünder Angela, Matras Marek, Stachnik Magdalena, Reichert Michal, Steinhagen Dieter
Fish Disease Research Unit, University of Veterinary Medicine Hannover, Hannover, Germany.
Aquaculture and Water Ecology, University of Goettingen, Goettingen, Germany.
J Fish Dis. 2023 Nov;46(11):1269-1283. doi: 10.1111/jfd.13846. Epub 2023 Aug 17.
Replacing fishmeal, a finite resource with high market demand, in the diet of carnivorous rainbow trout with proteins from alternative sources may be a challenge for these fish. Therefore, this study investigated whether replacing fishmeal with protein derived from Hermetia illucens or Arthrospira platensis could promote disease susceptibility in local trout populations with different growth performance. This was assessed in vitro by measuring susceptibility to infection with the viral haemorrhagic septicaemia virus (VHSV) or the bacterium Yersinia ruckeri. Analysis of fin tissue explants and primary cell cultures from scales from the three trout populations infected in vitro with VHSV and gill explants infected with Y. ruckeri showed no significant differences in virus replication or bacterial counts. Evaluation of the virucidal or bactericidal effect of skin mucus showed a significant reduction in viral load and bacterial count for all samples with mucus addition, but no significant difference was observed between the experimental groups. This study documents no apparent impairment of innate immune mechanisms in the skin and gills of trout after feeding a diet replacing fishmeal with Arthrospira or Hermetia proteins. This underlines the potential of these alternative protein sources for the further development of sustainable trout aquaculture.
用来自其他来源的蛋白质替代肉食性虹鳟鱼饲料中市场需求高的有限资源鱼粉,对这些鱼来说可能是一项挑战。因此,本研究调查了用黑水虻或钝顶螺旋藻衍生的蛋白质替代鱼粉是否会增加具有不同生长性能的本地鳟鱼种群对疾病的易感性。通过测量对病毒性出血性败血症病毒(VHSV)或鲁氏耶尔森菌感染的易感性在体外进行评估。对来自三个鳟鱼种群的鳍组织外植体和体外感染VHSV的鳞片原代细胞培养物以及感染鲁氏耶尔森菌的鳃外植体进行分析,结果显示病毒复制或细菌计数没有显著差异。对皮肤黏液的杀病毒或杀菌作用的评估表明,添加黏液的所有样本的病毒载量和细菌计数均显著降低,但实验组之间未观察到显著差异。本研究记录了用螺旋藻或黑水虻蛋白质替代鱼粉喂养后,鳟鱼皮肤和鳃中的先天免疫机制没有明显受损。这突出了这些替代蛋白质来源在可持续鳟鱼养殖进一步发展中的潜力。