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September 12, 2026Acta Protozoologica11 citationsOpen Access

Electron Microscopical Investigations of a New Species of the Genus Sappinia (Thecamoebidae, Amoebozoa), Sappinia platani sp. nov., Reveal a Dictyosome in this Genus

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CWClaudia WylezichJWJulia WalochnikDCDaniele Corsaro

Key Points

  • To describe the morphology and ultrastructure of the newly identified amoebozoan species Sappinia platani sp. nov. isolated from tree bark.
  • Isolated amoeba strain PL-247 from the bark of a sycamore tree in Koblenz, Germany.
  • Conducted ultrastructural investigations using electron microscopy to characterize trophozoite and cyst morphology.
  • Identified typical genus features including binucleate trophozoites with anterior hyaloplasm, bicellular cysts, and rare standing forms in aged cultures.
  • Discovered dictyosomes, marking the first observation of these Golgi-like organelles within the genus Sappinia, along with numerous endocytobionts.
  • Characterized a novel glycocalyx comprising a loose layer of irregular, bent hair-like structures covering the plasma membrane.

Abstract

This dataset contains the digitized treatments in Plazi based on the original journal article Wylezich, Claudia, Walochnik, Julia, Corsaro, Daniele, Michel, Rolf, Kudryavtsev, Alexander (2015): Electron Microscopical Investigations of a New Species of the Genus Sappinia (Thecamoebidae, Amoebozoa), Sappinia platani sp. nov., Reveal a Dictyosome in this Genus. Acta Protozoologica 54 (1): 45-51, DOI: 10.4467/16890027AP.15.004.2191, URL: https://www.mendeley.com/catalogue/757ccadd-6278-3e79-a24d-67b5e2845435/ Abstract. The genus Sappinia belongs to the family Thecamoebidae within the Discosea (Amoebozoa). For long time the genus comprised only two species, S. pedata and S. diploidea, based on morphological investigations. However, recent molecular studies on gene sequences of the small subunit ribosomal RNA (SSU rRNA) gene revealed a high genetic diversity within the genus Sappinia. This indicated a larger species richness than previously assumed and the establishment of new species was predicted. Here, Sappinia platani sp. nov. (strain PL-247) is described and ultrastructurally investigated. This strain was isolated from the bark of a sycamore tree (Koblenz, Germany) like the re-described neotype of S. diploidea. The new species shows the typical characteristics of the genus such as flattened and binucleate trophozoites with a differentiation of anterior hyaloplasm and without discrete pseudopodia as well as bicellular cysts. Additionally, the new species possesses numerous endocytobionts and dictyosomes. The latter could not be found in previous EM studies of the genus Sappinia. Standing forms, a character of the species S. pedata, could be formed on older cultures of the new species but appeared extremely seldom. A loose layer of irregular, bent hair-like structures cover the plasma membrane dissimilar to the glycocalyx types as formerly detected in other Sappinia strains.

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Wylezich et al. (2026) studied this question.

synapsesocial.com/papers/6aa51e69327956e4761f8473https://doi.org/10.15468/sh6y7c
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