Breeding and Genetics, Nofima, Ås, 1430, Norway.
Sustainable Aquaculture Laboratory- Temperate and Tropical (SALTT), School of BioSciences, The University of Melbourne, Parkville, 3010, Australia.
Sci Rep. 2020 Jan 21;10(1):868. doi: 10.1038/s41598-020-57786-1.
Pancreas disease caused by salmonid alphaviruses leads to severe losses in Atlantic salmon aquaculture. The aim of our study was to gain a better understanding of the biological differences between salmon with high and low genomic breeding values (H-gEBV and L-gEBV respectively) for pancreas disease resistance. Fish from H- and L-gEBV families were challenged by intraperitoneal injection of salmonid alphavirus or co-habitation with infected fish. Mortality was higher with co-habitation than injection, and for L- than H-gEBV. Heart for RNA-seq and histopathology was collected before challenge and at four- and ten-weeks post-challenge. Heart damage was less severe in injection-challenged H- than L-gEBV fish at week 4. Viral load was lower in H- than L-gEBV salmon after co-habitant challenge. Gene expression differences between H- and L-gEBV manifested before challenge, peaked at week 4, and moderated by week 10. At week 4, H-gEBV salmon showed lower expression of innate antiviral defence genes, stimulation of B- and T-cell immune function, and weaker stress responses. Retarded resolution of the disease explains the higher expression of immune genes in L-gEBV at week 10. Results suggest earlier mobilization of acquired immunity better protects H-gEBV salmon by accelerating clearance of the virus and resolution of the disease.
由鲑鱼甲病毒引起的胰腺疾病导致大西洋鲑养殖业遭受严重损失。我们的研究目的是更好地了解具有高和低基因组育种值(分别为 H-gEBV 和 L-gEBV)的鲑鱼在胰腺疾病抗性方面的生物学差异。通过腹腔注射鲑鱼甲病毒或与感染鱼共同饲养来挑战 H-gEBV 和 L-gEBV 家系的鱼。共同饲养引起的死亡率高于注射,L-gEBV 高于 H-gEBV。在挑战前和挑战后 4 周和 10 周收集心脏进行 RNA-seq 和组织病理学检查。在第 4 周,注射挑战的 H-gEBV 鱼的心脏损伤比 L-gEBV 鱼轻。与共同饲养挑战后,H-gEBV 鲑鱼的病毒载量低于 L-gEBV 鲑鱼。H-gEBV 和 L-gEBV 之间的基因表达差异在挑战前表现出来,在第 4 周达到峰值,并在第 10 周得到缓解。在第 4 周,H-gEBV 鲑鱼表现出较低的先天抗病毒防御基因表达,B 细胞和 T 细胞免疫功能增强,应激反应较弱。疾病缓解延迟解释了 L-gEBV 在第 10 周免疫基因表达更高的原因。结果表明,获得性免疫的早期动员通过加速病毒清除和疾病缓解更好地保护 H-gEBV 鲑鱼。