Chisholm Leslie A, Whittington Ian D, Fischer Andreas B P
Marine Parasitology Laboratory, School of Earth and Environmental Sciences, The University of Adelaide, North Terrace, Adelaide, South Australia 5005, Australia.
Folia Parasitol (Praha). 2004 Jun;51(2-3):123-30. doi: 10.14411/fp.2004.017.
Dendromonocotyle species (Monogenea: Monocotylidae) are the only monocotylids to parasitize the skin of chondrichthyan hosts. Currently 11 species are recorded from the skin of ray species in the Dasyatidae, Myliobatidae and Urolophidae. There have been increasing reports of Dendromonocotyle outbreaks on rays kept in public aquaria. This paper provides a broad review of Dendromonocotyle that should assist taxonomists and aquarists with species identification and help decisions on potential control methods for Dendromonocotyle infections. The taxonomy and host-specificity of Dendromonocotyle are discussed and a key to current species is provided. We summarise what little is known about the biology of Dendromonocotyle including egg embryonation and hatching, feeding, camouflage and reproduction. The efficacy of freshwater baths, chemical treatments and biological control measures such as the use of cleaner fish for Dendromonocotyle is also discussed. We demonstrate that effective control of Dendromonocotyle on captive rays is hampered by the lack of basic biological data on the life cycle of the parasites. A case history is provided outlining the success of a public aquarium (Underwater World, Mooloolaba, Queensland, Australia) in managing D. pipinna infections on captive Taeniura meyeni without chemical intervention simply by taking measures to reduce host stress.
树单殖吸虫属(单殖吸虫纲:单杯科)是唯一寄生于软骨鱼类宿主皮肤的单杯科吸虫。目前,已在鲼科、鲾鲼科和无刺鲼科的魟类皮肤中记录到11个物种。关于公共水族馆饲养的魟类爆发树单殖吸虫感染的报道越来越多。本文对树单殖吸虫进行了全面综述,应有助于分类学家和水族饲养者进行物种鉴定,并为树单殖吸虫感染的潜在控制方法提供决策依据。文中讨论了树单殖吸虫的分类学和宿主特异性,并提供了现有物种的检索表。我们总结了关于树单殖吸虫生物学的已知甚少的信息,包括卵的胚胎发育和孵化、摄食、伪装及繁殖。还讨论了淡水浴、化学处理以及使用清洁鱼等生物控制措施对树单殖吸虫的效果。我们证明,由于缺乏关于寄生虫生命周期的基本生物学数据,对圈养魟类身上的树单殖吸虫进行有效控制受到阻碍。文中提供了一个案例,概述了一家公共水族馆(澳大利亚昆士兰州穆卢拉巴的海底世界)在不进行化学干预的情况下,仅通过采取措施减轻宿主压力,成功控制圈养迈氏窄尾魟身上的皮氏树单殖吸虫感染的情况。