Hamre Lars Are, Oldham Tina, Oppedal Frode, Nilsen Frank, Glover Kevin Alan
Department of Biological Sciences Sea Lice Research Centre University of Bergen Bergen Norway.
Institute of Marine Research Bergen Norway.
Ecol Evol. 2021 May 16;11(12):7865-7878. doi: 10.1002/ece3.7618. eCollection 2021 Jun.
The parasitic salmon louse represents one of the biggest challenges to environmentally sustainable salmonid aquaculture across the globe. This species also displays a high evolutionary potential, as demonstrated by its rapid development of resistance to delousing chemicals. In response, farms now use a range of non-chemical delousing methods, including cleaner fish that eat lice from salmon. Anecdotal reports suggest that in regions where cleaner fish are extensively used on farms, lice have begun to appear less pigmented and therefore putatively less visible to cleaner fish. However, it remains an open question whether these observations reflect a plastic (environmental) or adaptive (genetic) response. To investigate this, we developed a pigment scoring system and conducted complimentary experiments which collectively demonstrate that, a) louse pigmentation is strongly influenced by environmental conditions, most likely light, and b) the presence of modest but significant differences in pigmentation between two strains of lice reared under identical conditions. Based on these data, we conclude that pigmentation in the salmon louse is strongly influenced by environmental conditions, yet there are also indications of underlying genetic control. Therefore, lice could display both plastic and adaptive responses to extensive cleaner fish usage where visual appearance is likely to influence survival of lice.
寄生性鲑鱼虱是全球环境可持续性鲑鱼养殖面临的最大挑战之一。该物种还表现出很高的进化潜力,其对除虱化学物质的抗性迅速发展就证明了这一点。作为应对措施,养殖场现在采用一系列非化学除虱方法,包括用清洁鱼从鲑鱼身上吃掉虱子。轶事报道表明,在养殖场广泛使用清洁鱼的地区,虱子开始出现色素沉着减少的情况,因此据推测对清洁鱼的可见性降低。然而,这些观察结果是否反映了可塑性(环境)反应还是适应性(遗传)反应,仍然是一个悬而未决的问题。为了对此进行研究,我们开发了一种色素评分系统并进行了补充实验,这些实验共同表明:a)虱子的色素沉着受到环境条件的强烈影响,最有可能是光照;b)在相同条件下饲养的两株虱子之间,色素沉着存在适度但显著的差异。基于这些数据,我们得出结论,鲑鱼虱的色素沉着受到环境条件的强烈影响,但也有潜在遗传控制的迹象。因此,在视觉外观可能影响虱子生存的情况下,虱子可能对广泛使用清洁鱼表现出可塑性和适应性反应。