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鱼类外寄生虫检测、采集和保存。

Fish ectoparasite detection, collection and curation.

机构信息

James Cook University Singapore, Singapore City, Singapore.

James Cook University Singapore, Singapore City, Singapore; College of Science and Engineering, Centre for Sustainable Tropical Fisheries and Aquaculture, James Cook University, Townsville, QLD, Australia.

出版信息

Adv Parasitol. 2024;125:105-157. doi: 10.1016/bs.apar.2024.05.001. Epub 2024 Jul 4.

Abstract

Fish parasitology is a dynamic and internationally important discipline with numerous biological, ecological and practical applications. We reviewed optimal fish and parasite sampling methods for key ectoparasite phyla (i.e. Ciliophora, Platyhelminthes, Annelida and Arthropoda) as well as recent advances in molecular detection of ectoparasites in aquatic environments. Ideally, fish capture and anaesthesia as well as parasite recovery methods should be validated to eliminate potential sampling bias and inaccuracy in determining ectoparasite population parameters. There are considerable advantages to working with fresh samples and live parasites, when combined with appropriate fixation methods, as sampling using dead or decaying materials can lead to rapid decomposition of soft-bodied parasites and subsequent challenges for identification. Sampling methods differ between target phyla, and sometimes genera, with optimum techniques largely associated with identification of parasite microhabitat and the method of attachment. International advances in fish parasitology can be achieved through the accession of whole specimens and/or molecular voucher specimens (i.e. hologenophores) in curated collections for further study. This approach is now critical for data quality because of the increased application of environmental DNA (eDNA) for the detection and surveillance of parasites in aquatic environments where the whole organism may be unavailable. Optimal fish parasite sampling methods are emphasised to aid repeatability and reliability of parasitological studies that require accurate biodiversity and impact assessments, as well as precise surveillance and diagnostics.

摘要

鱼类寄生虫学是一个充满活力且具有重要国际意义的学科,具有众多生物学、生态学和实际应用价值。我们回顾了关键外寄生虫门(即纤毛虫、扁形动物、环节动物和节肢动物)的鱼类和寄生虫最佳采样方法,以及水生环境中外寄生虫分子检测的最新进展。理想情况下,鱼类捕捞和麻醉以及寄生虫回收方法应经过验证,以消除潜在的采样偏差和确定外寄生虫种群参数的不准确性。使用新鲜样本和活体寄生虫结合适当的固定方法具有相当大的优势,因为使用死体或腐烂材料进行采样会导致软体寄生虫迅速分解,随后给鉴定带来挑战。采样方法因目标门,有时因属而异,最佳技术主要与寄生虫微生境和附着方法有关。通过在经过妥善管理的收藏中加入完整标本和/或分子凭证标本(即全虫),可以实现鱼类寄生虫学的国际进展。由于环境 DNA(eDNA)在水生环境中寄生虫的检测和监测中的应用越来越广泛,而整个生物体可能无法获得,因此这种方法对于数据质量至关重要。强调最佳鱼类寄生虫采样方法,以帮助需要准确生物多样性和影响评估以及精确监测和诊断的寄生虫学研究的可重复性和可靠性。

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