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1904年发现的美丽绦虫Tatria biremis Kowalewski(圆叶目,美丽绦虫科)的卵超微结构,重点研究六钩蚴膜。

Egg ultrastructure of the amabiliid cestode Tatria biremis Kowalewski, 1904 (Cyclophyllidea, Amabiliidae), with an emphasis on the oncospheral envelopes.

作者信息

Tkach Vasyl, Świderski Zdzisław, Młocicki Daniel

机构信息

Department of Biology, University of North Dakota, 10 Cornell street, Grand Forks, ND 58202-9019, USA.

出版信息

Acta Parasitol. 2013 Sep;58(3):269-77. doi: 10.2478/s11686-013-0138-6. Epub 2013 Aug 29.

Abstract

This is the first report on the ultrastructure of eggs in the cestode family Amabiliidae Braun, 1900. The gravid proglottides of Tatria biremis easily detach from the strobila. Their thick-walled saccate uterus contains numerous rounded or oval eggs measuring about 30-32 μm in diameter. In the early preoncospheral phase, three primary embryonic envelopes are formed around the developing and differentiating embryos, namely: (1) vitelline capsule originating from vitellocyte material; (2) outer envelope formed by two macromeres, and (3) inner envelope originating from a fusion of three mesomeres. Thus, both the outer and inner envelopes of T. biremis eggs are cellular in origin and syncytial in nature. During egg maturation, the three primary embryonic envelopes undergo differentiation into fully formed oncospheral or egg envelopes. Most significant changes were observed in the inner envelope which becomes progressively subdivided into 3 sub-layers: the extra-embryophoral sub-layer, the embryophore, and the intra-embryophoral sub-layer, containing mesomere nuclei. The mature hexacanth is covered by a thin layer of the oncospheral tegument. Within the infective hexacanth larva, five cell types were distinguished: (1) a binucleated subtegumental cell; (2) U-shaped penetration gland; (3) nerve cells; (4) somatic cells representing the myocytons of both somatic and hook musculature, and (5) large germinative cells. Ultrastructural characteristics of T. biremis eggs are compared with those described in representatives of other cestode taxa. Since the functional ultrastructure of cestode egg envelopes is defined by multiple factors such as the type of life cycles, habitats and behaviour of the intermediate hosts, mode of the intermediate host infection, etc., ultrastructural studies of the greater diversity of cestodes are needed to obtain comparative data for fruitful analysis of cyclophyllidean cestode adaptations to their diverse life cycles.

摘要

这是关于1900年布劳恩(Braun)绦虫科阿玛比利科(Amabiliidae)虫卵超微结构的首次报道。双节塔特里绦虫(Tatria biremis)的孕节很容易从虫体节片中脱落。其厚壁囊状子宫内含有大量直径约30 - 32μm的圆形或椭圆形虫卵。在六钩蚴前期早期,围绕发育和分化中的胚胎形成了三层初级胚胎膜,即:(1)源自卵黄细胞物质的卵黄囊;(2)由两个大卵裂球形成的外层膜,以及(3)源自三个中卵裂球融合的内层膜。因此,双节塔特里绦虫虫卵的外层和内层膜均起源于细胞且本质上为合胞体。在虫卵成熟过程中,这三层初级胚胎膜分化为完全形成的六钩蚴或虫卵膜。在内层膜中观察到了最显著的变化,它逐渐细分为3个亚层:胚外亚层、胚膜和含中卵裂球核的胚内亚层。成熟的六钩蚴被一层薄薄的六钩蚴皮层覆盖。在感染性六钩蚴幼虫内,区分出了五种细胞类型:(1)双核皮层下细胞;(2)U形穿刺腺;(3)神经细胞;(4)代表体壁和钩肌肌细胞的体细胞,以及(5)大型生发细胞。将双节塔特里绦虫虫卵的超微结构特征与其他绦虫类群代表的特征进行了比较。由于绦虫虫卵膜的功能超微结构由多种因素决定,如生命周期类型、中间宿主的栖息地和行为、中间宿主感染方式等,因此需要对更多样化的绦虫进行超微结构研究,以获取比较数据,从而对圆叶目绦虫适应其多样生命周期进行富有成效的分析。

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