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Organization and evolution of the proboscis musculature in avian parasites of the genus Apororhynchus (Acanthocephala: Apororhynchida).

作者信息

Herlyn Holger

机构信息

Institut für Organismische und Molekulare Evolutionsbiologie, Anselm-Franz-von-Bentzel-Weg 7, 55128, Mainz, Germany.

出版信息

Parasitol Res. 2017 Jul;116(7):1801-1810. doi: 10.1007/s00436-017-5440-z. Epub 2017 May 9.

DOI:10.1007/s00436-017-5440-z
PMID:28488043
Abstract

The highly enlarged proboscis in adult thorny-headed worms of the genus Apororhynchus suggests that its inner organization might be specialized as well. However, what kind of changes occurred in the stem line of monogeneric Apororhynchida is widely unknown and there are different conceptions regarding the presence/absence of several muscles. To expand our knowledge on this topic, I examined ethanol-fixed specimens, whole mounts, and semi-thin sections of three Apororhynchus species using the light microscope. Incorporation of previously published data increased the overall sample to five out of six Apororhynchus species known to date. Combined data suggest that Apororhynchida kept the full set of muscles which already evolved in the stem line of Acanthocephala: proboscis receptacle, a receptacle surrounding muscle (receptacle protrusor), retinacula, neck retractor, proboscis and receptacle retractors, circular and longitudinal musculature under the metasomal tegument, and a single muscular layer beneath the proboscis wall. However, especially proboscis receptacle and receptacle protrusor underwent considerable re-organization in the apororhynchid stem line: both muscles are subdivided into sail-like strands extending from the cerebral ganglion to the proboscis wall. This reorganization reflects that the two muscles still suspend the cerebral ganglion but are not implicated in the eversion of the proboscis. Spatially separated subtegumental longitudinal muscle cords and a sphincter at the posterior proboscis margin could be additional apomorphies of Apororhynchida. Finally, lack of a muscle plate, a midventral longitudinal muscle, and of lateral receptacle flexors and the absence of an apical sensory organ indicate a basally branching position of Apororhynchida relative to other Archiacanthocephala.

摘要

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本文引用的文献

1
Evolutionary anatomy of the muscular apparatus involved in the anchoring of Acanthocephala to the intestinal wall of their vertebrate hosts.棘头虫固定于脊椎动物宿主肠壁所涉及的肌肉器官的进化解剖学。
Parasitol Res. 2017 Apr;116(4):1207-1225. doi: 10.1007/s00436-017-5398-x. Epub 2017 Feb 24.
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Fine structure and cellular responses at the host-parasite interface in a range of fish-helminth systems.一系列鱼类-蠕虫系统中宿主-寄生虫界面的精细结构和细胞反应。
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Transcriptome data reveal Syndermatan relationships and suggest the evolution of endoparasitism in Acanthocephala via an epizoic stage.
转录组数据揭示了 Syndermatan 的关系,并表明棘头虫纲内寄生现象是通过体表寄生阶段进化而来的。
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