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Sysiak, M.

Publications and source records attributed to Sysiak, M..

2 recordsLinked to original sources

Exotic catenulid flatworms (Platyhelminthes, Catenulida) and where to find them in a temperate climate - a field study in a botanic garden

Catenulids are free-living flatworms, common in eutrophic freshwaters such as ponds, ditches, or peatbogs, with most of the diversity described from tropical regions to date. Although the majority of the species have been described from warmer climates, most molecular studies have been done on specimens from temperate zones in Europe. We addressed this gap by sampling for exotic species in localities available in a temperate climate. In this study, we investigated catenulid diversity in the greenhouses at the University of Warsaw Botanic Garden and recorded two species known only from tropical areas (Stenostomum paraguayense and Suomina evelinae) and one exotic species recorded previously from a greenhouse in Poland (Stenostomum corderoi). Additionally, in the latter species, we provide evidence for environmentally induced coloration of sensory pits, which has not been reported thus far. We placed the collected species on a phylogeny using barcoding of 18S, 28S, and COI genes and retrieved paraphyly of the family Catenulidae, with S. evelinae forming a sister group to the genus Paracatenula, and hence we propose a revision of its systematic position. In total, we recorded six species, including three with a wide cosmopolitan distribution (C. turgida, S. grande and S. tuberculosum), and provided sequences for five of them, three of which had no previous molecular records (S. paraguayense, S. evelinae and S. corderoi). Thus, we confirm that greenhouses represent an important source of exotic species for taxonomic work on microscopic invertebrates.

zoology↗

Excessive feeding induces development of a colony-like body plan in paratomous flatworms

Colonial animals rely on agametic reproduction to generate repeated colony modules (zooids). Although zooid development has been extensively studied in fully colonial species, such as cnidarians, bryozoans, or tunicates, it provides limited insight into how and why animals transition from solitary asexual fission to colony formation. Here, we fill this gap by studying the dynamics of asexual development in the microscopic flatworm Stenostomum, which can alternate between asexual fission and colony-like linear chains, composed of several zooids connected tail-to-head. Combining ecological, developmental, physiological, and transcriptomic analyses, we demonstrate that in four species of Stenostomum, chain formation can be triggered by manipulating food availability. This ecological input changes the balance between somatic longitudinal growth and head morphogenesis rate, generating a transient modular organism without requiring a new developmental program. We found no evidence for division of labor among zooids or for enhanced predation avoidance of the worms in chains, indicating that chain formation might be a developmental byproduct without obvious adaptive value. Together, these findings suggest that a neutrally evolving developmental byproduct of food-modulated allometric growth may provide a mechanistic route from asexual reproduction to coloniality.

evolutionary biology↗