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The structure of the desiccated Richtersius coronifer (Richters, 1903). | LitMetric

AI Article Synopsis

  • Tun formation is a key adaptation for tardigrades to survive desiccation, and this study explores the structure and function of its organs during this state.
  • Researchers used various microscopy techniques to examine the internal organization, observing that the body contracts during tun formation, which alters the positioning of organs like the pharyngeal bulb.
  • The cuticle structure features multiple layers, while storage cells around internal organs primarily contain lipids and polysaccharides, with limited protein, indicating adaptations for surviving extreme dehydration.

Article Abstract

Tun formation is an essential morphological adaptation for entering the anhydrobiotic state in tardigrades, but its internal structure has rarely been investigated. We present the structure and ultrastructure of organs and cells in desiccated Richtersius coronifer by transmission and scanning electron microscopy, confocal microscopy, and histochemical methods. A 3D reconstruction of the body organization of the tun stage is also presented. The tun formation during anhydrobiosis of tardigrades is a process of anterior-posterior body contraction, which relocates some organs such as the pharyngeal bulb. The cuticle is composed of epicuticle, intracuticle and procuticle; flocculent coat; and trilaminate layer. Moulting does not seem to restrict the tun formation, as evidenced from tardigrade tuns that were in the process of moulting. The storage cells of desiccated specimens filled up the free inner space and surrounded internal organs, such as the ovary and digestive system, which were contracted. All cells (epidermal cells, storage cells, ovary cells, cells of the digestive system) underwent shrinkage, and their cytoplasm was electron dense. Lipids and polysaccharides dominated among reserve material of storage cells, while the amount of protein was small. The basic morphology of specific cell types and organelles did not differ between active and anhydrobiotic R. coronifer.

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Source
http://dx.doi.org/10.1007/s00709-016-1027-2DOI Listing

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