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Studying the Genetics of Resistance to CyHV-3 Disease Using Introgression from Feral to Cultured Common Carp Strains

机译:从野生到培养的鲤鱼共渗基因研究对CyHV-3疾病的抗性遗传

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摘要

Sustainability and further development of aquaculture production are constantly challenged by outbreaks of fish diseases, which are difficult to prevent or control. Developing fish strains that are genetically resistant to a disease is a cost-effective and a sustainable solution to address this challenge. To do so, heritable genetic variation in disease resistance should be identified and combined together with other desirable production traits. Aquaculture of common carp has suffered substantial losses from the infectious disease caused by the cyprinid herpes virus type 3 (CyHV-3) virus and the global spread of outbreaks indicates that many cultured strains are susceptible. In this research, CyHV-3 resistance from the feral strain “Amur Sassan” was successfully introgressed into two susceptible cultured strains up to the first backcross (BC1) generation. Variation in resistance of families from F1 and BC1 generations was significantly greater compared to that among families of any of the susceptible parental lines, a good starting point for a family selection program. Considerable additive genetic variation was found for CyHV-3 resistance. This phenotype was transferable between generations with contributions to resistance from both the resistant feral and the susceptible cultured strains. Reduced scale coverage (mirror phenotype) is desirable and common in cultured strains, but so far, cultured mirror carp strains were found to be susceptible. Here, using BC1 families ranging from susceptible to resistant, no differences in resistance levels between fully scaled and mirror full-sib groups were found, indicating that CyHV-3 resistance was successfully combined with the desirable mirror phenotype. In addition, the CyHV-3 viral load in tissues throughout the infection of susceptible and resistant fish was followed. Although resistant fish get infected, viral loads in tissues of these fish are significantly lesser than in those of susceptible fish, allowing them to survive the disease. Taken together, in this study we have laid the foundation for breeding CyHV-3-resistant strains and started to address the mechanisms underlying the phenotypic differences in resistance to this disease.
机译:水产养殖生产的可持续性和进一步发展一直受到难以预防或控制的鱼类疾病暴发的挑战。开发对疾病具有遗传抗性的鱼品系是解决这一挑战的经济有效且可持续的解决方案。为此,应确定抗病性的遗传遗传变异,并将其与其他理想的生产性状结合在一起。由于鲤鱼3型疱疹病毒(CyHV-3)引起的传染病,鲤鱼的水产养殖遭受了重大损失,疫情的全球蔓延表明许多养殖菌株易感。在这项研究中,来自野生菌株“ Amur Sassan”的CyHV-3抗性成功地渗入两个易感培养菌株中,直至第一代回交(BC1)为止。与任何易感亲代的家系相比,F1和BC1代的家属的抗药性差异要大得多,这是进行家庭选择计划的良好起点。发现对于CyHV-3抗性相当大的累加遗传变异。该表型可在世代之间转移,有助于抗性野生和易感培养菌株的抗性。减少鳞片的覆盖范围(镜像表型)是理想的,在养殖菌株中很普遍,但是到目前为止,发现养殖的鲤鱼菌株是易感的。在这里,使用从易感到抗药性的BC1家族,在完全成比例的和镜像全同胞组之间没有发现抗药性水平的差异,表明CyHV-3抗性已成功与所需的镜像表型结合。另外,在易感和抗性鱼的整个感染过程中,对组织中的CyHV-3病毒载量进行了跟踪。尽管抗药性鱼类受到感染,但这些鱼类组织中的病毒载量明显低于易感鱼类,从而使它们能够在疾病中生存。综上所述,在这项研究中,我们为选育CyHV-3耐药菌株奠定了基础,并开始研究针对这种疾病的表型差异的潜在机制。

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