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Naimark, E.

Publications and source records attributed to Naimark, E..

2 recordsLinked to original sources

Lack of early animal fossils: insights from taphonomic experiments on placozoans and their traces

Placozoa are simple two-layered multicellular animals. Can such a simple animal preserve in the fossil record? The results of our taphonomic experiments showed that it is chemically possible; however, the chances of the presevation are negligible for two reasons. Firstly, the resistance of living Trichoplax to lethal factors turned out to be quite high. Secondly, post-mortem changes in the body of Trichoplax preclude preservation. We observed these changes for the first time: their bodies immediately disintegrated into a cloud of individual dead cells, apparently unrecognizable in the fossil record. We hypothesized that the absence of a basement membrane, which unites each cell layer into the epithelia, is a key factor in this dramatic disintegration. This hypothesis adds an option to the explainations of the gap between the time of emergence of metazoan body fossils and the reconstructed time of metazoan divergence from a single-celled ancestor. However, it is theoretically possible to find ichnofossils of Trichoplax-like locomotion. For the first time, we observed traces of Trichoplax on a soft substrate and identified a previously unknown type of traces. They were 3D chains of compacted round lumps of the substrate, similar in some features to the Precambrian meniscus ichnofossils.

paleontology↗

Cuticle and cuticular sensilla in Agnostina

The microstructure of the cuticle of several Agnostina species is described. For the first time, it has been shown that their cuticle consists of three layers: thick outer and transitional layers and a thin inner layer. The layers are made up of stacks of laminae: the laminae in the outer layer are thicker than in the transitional and inner ones. The evolution of the agnostoid cuticle proceeded, apparently, in the direction of decreasing the thickness of the inner layer which in contrast to all other arthropods, is thinner than the outer layer. Apparently, the inner layer was mineralized to a lesser extent than the outer one. In the structure of the cuticle, Agnostina are close to horseshoe crabs and trilobites. On the outer and inner layers, a set of sensilla was revealed; they can be attributed to trichoid, campaniform, and digitiform sensilla (with mechanoreceptor function) and celoconic sensilla (with chemoreceptor function). Also, unique sensorial ensembles were found on cephalons and pygidia; the function of the former is probably mechanosensorial, and the purpose of the latter cannot be assumed on this material.

paleontology↗