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棘头虫目藤壶科藤壶(Rhizocephala: Sacculinidae)的特化根须用于与其宿主神经系统相互作用。

Specialised rootlets of Sacculina pilosella (Rhizocephala: Sacculinidae) used for interactions with its host's nervous system.

机构信息

Saint Petersburg State University, Department of Invertebrate Zoology, Universitetskaya Emb, 7/9, Saint Petersburg, 199034, Russia.

National Scientific Center of Marine Biology, FEB RAS, Palchavskogo str., 17, Vladivostok, 690041, Russia.

出版信息

Arthropod Struct Dev. 2021 Jan;60:101009. doi: 10.1016/j.asd.2020.101009. Epub 2020 Dec 8.

Abstract

Parasitic rhizocephalan barnacles induce morphological, physiological, and behavioural changes in their hosts. The mechanisms of these intimate host-parasite interactions remain unknown. We have shown previously that rootlets of the internae of Peltogasterella gracilis and Peltogaster paguri penetrate the ganglion's envelope of their hermit crab hosts and form specialised structures in the ganglion periphery, the so-called goblet-shaped organs. Here, we examine the gross morphology and ultrastructure of these goblet-shaped organs in the interna of Sacculina pilosella. They consist of three layers of cells; in the intermediate layer of the organs, unusual lamellar bodies and muscle cells were found. Extensive degeneration of the host nervous tissue was observed in the funnel of the goblet-shaped organs. We conclude that the ability to penetrate into the host's nervous tissue could be a common trait in rhizocephalans. The goblet-shaped organs may play a key role in the host-parasite relationships by enabling the parasite to influence the host via hormones and neurotransmitters.

摘要

寄生的藤壶在其宿主身上引起形态、生理和行为上的变化。这些密切的宿主-寄生虫相互作用的机制尚不清楚。我们之前已经表明,Peltogasterella gracilis 和 Peltogaster paguri 的内根穿透它们的寄居蟹宿主的神经节包膜,并在神经节外围形成专门的结构,即所谓的杯状器官。在这里,我们检查了 Sacculina pilosella 内的这些杯状器官的大体形态和超微结构。它们由三层细胞组成;在器官的中间层,发现了不寻常的板层体和肌肉细胞。在杯状器官的漏斗中观察到宿主神经组织的广泛退化。我们得出结论,穿透宿主神经组织的能力可能是藤壶的共同特征。杯状器官可能通过使寄生虫能够通过激素和神经递质来影响宿主,从而在宿主-寄生虫关系中发挥关键作用。

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