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Inter-relationships of haplosporidians deduced from ultrastructural studies

机译:超微结构研究推论的单倍体孢子虫之间的相互关系

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摘要

We reviewed papers reporting haplosporidian ultrastructure to compare inter-relationships based on ultrastructure with those based on molecular data, to identify features that may be important in haplosporidian taxonomy, and to consider parasite taxonomy in relation to host taxonomy. There were links between the following: (1) the plasmodia of an abalone parasite, Haplosporidium nelsoni and Urosporidium crescens in the release of haplosporosomes; (2) H. costale and H. armoricanum in haplosporosome shape and presence and shape of Golgi in spores; (3) basal asporous crustacean haplosporidians which form haplosporosomes from formative bodies (FBs) in vegetative stages - H. nelsoni, which forms haplosporosomes from FBs in plasmodial cytoplasm, and H. louisiana, Minchinia spp. and Bonamia perspora, which form haplosporosomes from FBs in spores; (4) crustacean haplosporidians, Bonamia spp. and M. occulta in the predominance of uni- and binucleate stages; and (5) lipid-like vesicles in sporoplasms of H. costale, H. armoricanum, H. lusitanicum, H. pickfordi, H. montforti, and B. perspora. In general, these relationships reflect phylogenies based on molecular studies. As well as spore form and ornamentation, haplosporogenesis in spores appears to be taxonomically important. Parasite and host taxonomy were linked in the infection of lower invertebrates by Urosporidium spp., the infection of oysters by Bonamia spp., and of molluscs by Minchinia spp. Haplosporidium spp. are patently an artificial, paraphyletic group probably comprising many taxa. Consequently, the taxonomy of haplosporidians needs a thorough revision.
机译:我们审查了报告单倍体的超微结构的论文,比较了基于超微结构和基于分子数据的相互关系,确定了可能在单倍体的生物分类学中重要的特征,并考虑了与宿主生物分类学相关的寄生生物分类学。两者之间存在联系:(1)鲍鱼寄生虫的疟原虫,纳氏单胞菌和渐强的Urosporidium crescens; (2)呈单孢子体状的哥氏嗜血杆菌和甲状结肠菌,以及孢子中高尔基的存在和形态; (3)在营养阶段从形成体(FBs)形成haplosporosomes的基础甲壳类甲壳动物haplosporidians-H. nelsoni,从浆体细胞质的FBs形成haplosporosomes。 Bonamia perspora,由孢子中的FB形成单孢子体; (4)甲壳类haplosporidians,Bonamia spp。隐孢子虫以单核和双核阶段为主; (5)在H.costale,H.armicanum,H.lusitanicum,H.pickfordi,H.montforti和B.perspora的孢子质中的脂质样小泡。通常,这些关系反映了基于分子研究的系统发育。除了孢子的形式和装饰,孢子中的单孢子发生在分类学上似乎也很重要。寄生虫和寄主的分类学与Urosporidium spp。感染下无脊椎动物,Bonamia spp。感染牡蛎和Minchinia spp感染软体动物有关。单孢子虫显然是一个人工的,共生的群体,可能包括许多类群。因此,对单倍孢子虫的分类学需要进行彻底的修改。

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