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基于活检的欧洲鲶鱼(L.,1758)种群鳃单殖吸虫感染的正常化,用于实验室实验。

Biopsy-based normalizations of gill monogenean-infected European catfish ( L., 1758) stocks for laboratory-based experiments.

机构信息

Frontline Fish Genomics Research Group, Department of Applied Fish Biology, Institute of Aquaculture and Environmental Safety, Hungarian University of Agriculture and Life Sciences, Keszthely, Hungary.

Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia.

出版信息

PeerJ. 2024 Nov 14;12:e18288. doi: 10.7717/peerj.18288. eCollection 2024.

Abstract

Ectoparasites cause serious problems during the aquaculture production of food fishes. In this study, we set out to develop and test protocols for maintenance and sampling European catfish ( L., 1758) stocks infected with a gill monogenean, (Siwak 1932) Lim 1996. When we compared the feasibility of two cohabitation-based parasite culture systems (, static flow-through), we found that the life cycle of was completed in both habitats. In our experience, static tank systems with regular water exchange allowed better daily quality control of the parasite culture than continuous flow-through systems. We investigated the microhabitat preference of on the gills of infected European catfish. A balanced distribution on the two lateral gill sets and a decreasing trend in parasite numbers from anterior gill holobranches towards the posterior ones was observed. Using these results, we developed a minimally invasive sampling protocol to estimate the parasite load of individuals. The biopsy aimed at four sectors (#6, #7, #10, and #11) situated within the distal and middle zones of the first holobranch on the left side, encompassing both rows of filaments. Biopsy-based estimates of parasite loads were validated by comparing them to full parasite counts of the same individuals and showed statistically significant correlations. Our biopsy-based method is designed to identify experimental animals with similar parasite loads and create groups of hosts with comparable burdens. This setup is expected to generate reduced between-group differences for expensive experiments (, high throughput transcriptomic or epigenetic studies). We propose that the biopsy-based pre-sorting procedure should be considered in similar experiments with other cultured fish species and their gill monogeneans following a thorough fine-tuning of the experimental conditions.

摘要

外寄生虫在水产养殖中给食用鱼类的生产带来了严重的问题。在这项研究中,我们着手制定和测试维持和采样感染有鳃单殖吸虫的(欧洲鲶鱼)种群的方案,该单殖吸虫为(Siwak 1932)Lim 1996。当我们比较两种基于共生的寄生虫培养系统(静态、流动)的可行性时,我们发现这两种栖息地都完成了的生命周期。在我们的经验中,定期换水的静态水箱系统比连续流动系统更有利于寄生虫培养的日常质量控制。我们研究了在感染的欧洲鲶鱼的鳃上的偏好。在两个侧鳃架上的平衡分布和从前鳃全鳃向后鳃的寄生虫数量减少趋势。利用这些结果,我们开发了一种微创采样方案来估计个体的寄生虫负荷。活检针对左侧第一全鳃远端和中部区域的四个扇区(#6、#7、#10 和#11),涵盖了两排鳃丝。活检估计的寄生虫负荷与相同个体的全寄生虫计数进行比较,并显示出统计学上的显著相关性。我们的活检方法旨在识别具有相似寄生虫负荷的实验动物,并为具有可比负担的宿主创建组。这种设置有望减少昂贵实验(例如高通量转录组或表观遗传学研究)的组间差异。我们建议在其他养殖鱼类及其鳃单殖吸虫的类似实验中应考虑基于活检的预分类程序,并对实验条件进行彻底的微调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c79/11569781/c8c68ca1502c/peerj-12-18288-g001.jpg

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