Laboratori d'Investigacions Marines i Aqüicultura (LIMIA), Govern de les Illes Balears, Av. Gabriel Roca 69, 07158 Port d'Andratx, Mallorca, Spain; Instituto de Investigaciones Agroambientales y de Economía del Agua (INAGEA) (INIA-CAIB-UIB), Ctra. Valldemossa, km. 7,5 Ed. Edifici Guillem Colom Casasnoves, 07122 Palma de Mallorca, Illes Balears, Spain.
Laboratori d'Investigacions Marines i Aqüicultura (LIMIA), Govern de les Illes Balears, Av. Gabriel Roca 69, 07158 Port d'Andratx, Mallorca, Spain; Instituto de Investigaciones Agroambientales y de Economía del Agua (INAGEA) (INIA-CAIB-UIB), Ctra. Valldemossa, km. 7,5 Ed. Edifici Guillem Colom Casasnoves, 07122 Palma de Mallorca, Illes Balears, Spain.
J Invertebr Pathol. 2018 Sep;157:9-24. doi: 10.1016/j.jip.2018.07.006. Epub 2018 Jul 10.
This study provides morphological and molecular characterization of a new species, Haplosporidium pinnae), very likely responsible for mass mortality of fan mussels, Pinna nobilis, in the Western Mediterranean Sea. The parasite was found in dead or moribund P. nobilis but did not occur in healthy fan mussels from locations that were not affected by abnormal mortality. Histological examination of infected fan mussels showed uninucleate cells of a haplosporidan parasite throughout the connective tissue and hemolymph sinuses of the visceral mass and binucleate cells and, rarely, multinucleate plasmodia were also detected in the connective tissue. Additionally, stages of sporulation occurred in the epithelium of the host digestive gland tubules. Spores were slightly ellipsoidal with a hinged operculum in one pole. Typical haplosporosomes were not found with TEM but vesicles with two concentric membranes resembling haplosporosomes were abundant in the cytoplasm of the multinucleate plasmodia occurring in host digestive gland tubules. SEM analysis showed multiple structures on the spore surface; some spores had two or four long tape-like filaments attached to the spore wall. Phylogenetic analysis based on the SSU rDNA sequence placed this parasite within a large clade including species of the order Haplosporida, not in the Bonamia/Minchinia subclade or the subclade containing most Haplosporidium species, but within a subclade of Haplosporidium sp. from Penaeus vannamei. Our results suggested that H. pinnae and the parasite of P. vannamei may represent a distinct new genus within the order Haplosporida.
本研究对一种新物种(Haplosporidium pinnae)进行了形态学和分子特征描述,该物种极有可能是导致西地中海扇贻贝大规模死亡的原因。该寄生虫仅在死亡或濒死的扇贻贝中发现,但在未受到异常死亡率影响的健康扇贻贝中未发现。对感染扇贻贝的组织学检查显示,在结缔组织和内脏团的血窦中存在单核的哈氏孢子虫细胞,在结缔组织中也检测到双核细胞和罕见的多核质体。此外,在宿主消化腺管的上皮组织中发生了孢子形成阶段。孢子略呈椭圆形,一极具铰链盖。电镜下未发现典型的哈氏孢子体,但在宿主消化腺管中多核质体的细胞质中发现了大量具有双层同心膜的类似哈氏孢子体的囊泡。扫描电镜分析显示孢子表面有多种结构;一些孢子上附着有两条或四条长带状纤维,附着在孢子壁上。基于 SSU rDNA 序列的系统发育分析将这种寄生虫置于一个包含哈氏孢子虫目物种的大分支内,而不是在 Bonamia/Minchinia 分支或包含大多数 Haplosporidium 物种的分支内,而是在一个来自凡纳滨对虾的 Haplosporidium sp.的分支内。我们的结果表明,H. pinnae 和凡纳滨对虾的寄生虫可能代表哈氏孢子虫目内的一个新的独特属。