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Flensburg, S. B.

Publications and source records attributed to Flensburg, S. B..

3 recordsLinked to original sources

Diurnal rhythms with sunrise-induced oscular contractions suggest photosensitivity in the demosponge Halichondria panicea

Despite their quiescent lifestyle, sponges display contraction-expansion behaviours that regulate water flow through their aquiferous system. These behaviours are intrinsically generated but can be modulated by environmental parameters, including light exposure. Some sponges exhibit diurnal contraction-expansion rhythms synchronized with illumination cycles. Since the often-used photopigment opsin is unknown in sponges, the light-induced behaviour is likely mediated by cryptochromes and extra-ocular photoreceptors, as shown in sponge larvae. Previous studies on demosponges reported higher contraction-expansion activity during daylight than at night. Understanding such diurnal behaviours in nerve- and muscle-less metazoans may provide insights into the early evolution of sleep-like states. However, systematic diurnal observations of sponge contraction-expansion rhythms remain scarce. Here, we document the contractile behaviour of single-osculum explants of the marine demosponge Halichondria panicea over six days, maintained under a 12:12 h dark:light cycle with simulated sunrise and sunset. We find a light-induced diurnal rhythm in the contraction-expansion behaviour of their osculum, suggesting photosensitivity. Furthermore, we observe that sunrise triggers the onset of oscular contractions and discuss these results in context with the characteristics of sleep-like states in other metazoans. Summary statementA diurnal rhythm of light-induced oscular contractions suggests photosensitivity in the nerveless demosponge Halichondria panicea. This may offer insights into the early evolution of sleep-like behaviours in metazoans.

animal behavior and cognition↗

The contraction-expansion behaviour in the demosponge Tethya wilhelma is diurnal and light-controlled

Sponges (phylum Porifera) are metazoans without muscles and nervous system. Still, they perform coordinated behaviours, such as whole body contrations. Previous studies have indicated diurnal variability in number of contractions, and in expression of circadian clock genes. Here we show that diurnal patterns are present in the contraction-expansion behaviour of the demosponge Tethya wilhelma using infrared videography and a simulated night/day-cycle including sunset and sunrise mimic. In addition, we show that this behaviour is at least strongly influenced by the ambient light intensity and therefore implicates light-sensing capabilities in this sponge species. This is backed by our finding that T. wilhelma consistently contracts at sunrise, and that this pattern disappears both when the sponge is kept in constant darkness and when in constant light.

animal behavior and cognition↗

Fear of parasitism affects the functional role of ecosystem engineers

Fear is an integrated part of predator-prey interactions with cascading effects on the structure and function of ecosystems. Fear of parasitism holds a similar ecological potential but our understanding of the underlying mechanisms in host-parasite interactions is limited by lack of empirical examples. Here, we experimentally test if blue mussels Mytilus edulis respond behaviourally to the mere presence of infective transmission stages of the trematode Himasthla elongata by ceasing filtration activity, thereby avoiding infection. Our results show that blue mussels reduced clearance rates by more than 30% in presences of parasites. The reduced filtration activity resulted in lower infection rates in experimental mussels. The identified parasite-specific avoidance behaviour can be expected to play a significant role in regulating the ecosystem engineering function of blue mussels in coastal habitats.

ecology↗