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首页> 外文期刊>Systematic Parasitology >Five new species of dicyemid mesozoans (Dicyemida: Dicyemidae) from two Australian cuttlefish species, with comments on dicyemid fauna composition
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Five new species of dicyemid mesozoans (Dicyemida: Dicyemidae) from two Australian cuttlefish species, with comments on dicyemid fauna composition

机译:两种澳大利亚墨鱼物种中的五种新的介壳虫中生动物(Dicyemida:Dicyemidae),并评论了介壳动物的动物组成

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摘要

Five new species of dicyemid mesozoans in two genera are described from two Australian cuttlefish species, Sepia apama Gray (giant Australian cuttlefish) and S. novaehollandiae Hoyle (nova cuttlefish): Dicyema coffinense n. sp. from S. apama collected from Coffin Bay, South Australia (SA), Australia; D. koinonum n. sp. from S. apama and S. novaehollandiae collected from Gulf St Vincent (GSV) and Spencer Gulf (SG), SA, Australia; D. multimegalum n. sp. from S. apama collected from Cronulla and North Bondi, New South Wales, Australia; D. vincentense n. sp. from S. novaehollandiae collected from GSV, SA, Australia; and Dicyemennea spencerense n. sp. from S. novaehollandiae and S. apama collected from SG, SA, Australia. Totals of 51 S. apama and 27 S. novaehollandiae individuals were examined, of which all except for four S. apama were infected by at least one dicyemid species. Dicyemid parasites were also observed in host individuals that were held in tanks for 2–3 months prior to examination, including nematogen-exclusive infections, leading to questions about persistence of dicyemids after host death and the mechanism responsible for the switch between a nematogen phase and a rhombogen phase. Variations in host size, calotte shape and collection locality are explored as predictors of differences in observed composition of the parasite fauna. In particular, dicyemid parasite fauna varied with host collection locality. As these parasites are highly host-species specific, their use as biological tags to assess cephalopod population structure using a combined morphological and molecular approach is discussed. This study increases the number of dicyemid species described from Australian cephalopods from five to ten, and from 117 to 122 species described worldwide.
机译:从两个澳大利亚墨鱼种中描述了两个属中的五种新的麦草介虫:乌贼墨鱼(Sepia apama Gray,澳大利亚墨鱼)和S. novaehollandiae Hoyle(墨鱼):Dicyema coffinense n。 sp。来自从澳大利亚南澳大利亚州(SA)的棺材湾收集的S. apama; D. koinonum。 sp。取自澳大利亚SA的圣文森特海湾(GSV)和斯宾塞海湾(SG)的S. apama和S. novaehollandiae; D. sp。取自澳大利亚新南威尔士州克罗纳拉和北邦迪的S. apama;文森森(D. vincentense) sp。来自澳大利亚SA的GSV收集的S. novaehollandiae;和Dicyemennea spencerense n。 sp。来自澳大利亚SG,SA的S. novaehollandiae和S. apama。总共检查了51个南美大叶蝉和27个新孢子虫个体,除四个南美大叶蝉外,其他所有个体均被至少一种双麦草种感染。在检查前被关在水箱中2至3个月的寄主个体中也观察到了Dicyemid寄生虫,包括线虫原排斥性感染,这导致了关于在寄主死亡后双线虫持续存在的问题以及导致线虫原相和线虫之间转换的机制的问题。菱形相。寄主大小,小脚趾形状和收集地点的变化被探索为预测的寄生虫动物组成差异的预测指标。特别是,双叶寄生虫动物群随寄主收集地点而变化。由于这些寄生虫是高度宿主物种特异的,因此讨论了它们作为结合形态学和分子方法评估头足类种群结构的生物学标签的用途。这项研究将澳大利亚头足类动物中描述的双嘧菌类物种的数量从五种增加到十种,全世界描述的双齿类物种从117种增加到122种。

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  • 来源
    《Systematic Parasitology》 |2013年第2期|125-151|共27页
  • 作者

    Sarah R. Catalano;

  • 作者单位

    Marine Parasitology Laboratory School of Earth and Environmental Sciences DX 650 418 University of Adelaide">(1);

    Southern Seas Ecology Laboratories University of Adelaide">(2);

    Evolutionary Biology Unit South Australian Museum">(3);

    Australian Centre for Evolutionary Biology and Biodiversity University of Adelaide">(4);

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