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野生和养殖用于养殖大西洋鲑 Salmo salar 的清洁鱼物种的骨骼畸形。

Skeletal deformities in wild and farmed cleaner fish species used in Atlantic salmon Salmo salar aquaculture.

机构信息

Matre Research Station, Institute of Marine Research, Matredal, Norway.

Institute of Marine Research, Bergen, Norway.

出版信息

J Fish Biol. 2021 Apr;98(4):1049-1058. doi: 10.1111/jfb.14337. Epub 2020 Apr 27.

Abstract

As a first attempt to assess bone health in cleaner fish production, wild and cultured ballan wrasse Labrus bergylta and lumpfish Cyclopterus lumpus were examined by radiology. In C. lumpus, wild fish (57%) had more vertebra deformities (≥1 deformed vertebrae) than cultured fish (2-16%). One wild C. lumpus had lordosis and another was missing the tail fin. In L. bergylta, wild fish (11%) had fewer vertebra deformities than cultured individuals (78-91%). Among the cultured L. bergylta, 17-53% of the fish had severe vertebra deformities (≥6 deformed vertebrae) with two predominate sites of location, one between vertebra 4 and 10 (S1) in the trunk, and one between 19 and 26 (S2) in the tail. Fusions dominated S1, while compressions dominated S2. Although wild L. bergylta had a low vertebra deformity level, 83% had calluses and 14% had fractures in haemal/neural spines and/or ribs. The site-specific appearance and pathology of fracture and callus in wild L. bergylta suggests these are induced by chronic mechanical stress, and a possible pathogenesis for fish hyperostosis is presented based on this notion. In conclusion, good bone health was documented in cultured C. lumpus, but cultured L. bergylta suffered poor bone health. How this affects survival, growth, swimming abilities and welfare in cultured wrasse should be further investigated. SIGNIFICANCE STATEMENT: Skeletal deformities were studied in ballan wrasse and lumpfish of both wild and cultured origin for the first time to identify potential welfare issues when deploying them as cleaner fish in salmon sea cages. While cultured lumpfish showed good bone health, cultured wrasse had a high occurrence of vertebra deformities, which is expected to impact lice eating efficiency and animal welfare negatively. These deformities are most likely induced early in development.

摘要

作为首次尝试评估清洁鱼养殖中的骨骼健康状况,对野生和养殖的欧洲无须鳕(Labrus bergylta)和圆鳍鱼(Cyclopterus lumpus)进行了放射学检查。在圆鳍鱼中,野生鱼(57%)比养殖鱼(2-16%)有更多的脊椎畸形(≥1 个变形脊椎)。一条野生圆鳍鱼患有脊柱侧凸,另一条鱼则缺少尾鳍。在无须鳕中,野生鱼(11%)的脊椎畸形少于养殖个体(78-91%)。在养殖的无须鳕中,17-53%的鱼有严重的脊椎畸形(≥6 个变形脊椎),主要有两个部位,一个在躯干的第 4 到 10 节之间(S1),另一个在尾部的第 19 到 26 节之间(S2)。S1 以融合为主,S2 以压缩为主。尽管野生无须鳕的脊椎畸形程度较低,但 83%的鱼有脊柱和/或肋骨的骨痂,14%的鱼有骨折。野生无须鳕的骨折和骨痂具有部位特异性的外观和病理学,表明这些是由慢性机械压力引起的,并根据这一概念提出了鱼类骨质增生的可能发病机制。总之,养殖的圆鳍鱼骨骼健康状况良好,但养殖的无须鳕骨骼健康状况较差。这将如何影响养殖鲷鱼的生存、生长、游泳能力和福利,还需要进一步研究。 意义声明:这是首次对野生和养殖来源的无须鳕和圆鳍鱼进行骨骼畸形研究,以确定在将它们作为清洁鱼部署在三文鱼海笼中时可能存在的福利问题。虽然养殖的圆鳍鱼骨骼健康状况良好,但养殖的鲷鱼的脊椎畸形发生率很高,这预计会对吃虱的效率和动物福利产生负面影响。这些畸形很可能是在早期发育过程中引起的。

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