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Biology subjects

Yoshio, Y.

Publications and source records attributed to Yoshio, Y..

2 recordsLinked to original sources

Ecological drivers of social complexity: the role of predation risk and nesting resource in group-living cichlid

Understanding how social complexity responds to environmental variation remains a longstanding challenge in evolutionary biology. Here, we investigated the drivers of social complexity using intraspecific social variation across seven locations of the obligatory shell-brooding cichlid Neolamprologus meeli in Lake Tanganyika. We quantified the number of subordinate individuals per female territory and examined the effects of predation risk, shell availability, and their interaction. Social complexity increased with shell availability under high predation risk but showed little association under low predation risk. A field manipulative-experiment further demonstrated that increasing shell availability led to higher juvenile retention, indicating a causal effect of territory quality. In addition, removal of subordinates reduced shell availability, suggesting the feedback between group size and territory maintenance. We also assessed genetic population structure based on nuclear SNPs obtained by MIG-seq and found only weak genetic differentiation among localities, suggesting that the observed social variation is unlikely to simply reflect strong genetic subdivision. Together, these results show that predation risk promotes group living, whereas nesting resource availability constrains its extent. Our study highlights that social complexity emerges from the interaction between macro- and micro-ecological factors, providing a mechanistic understanding of the evolution of social complexity and philopatry.

ecology↗

Development of a vehicle for non-invasive oral administration to facilitate behavioral experiments in fish

Pharmacological approaches are increasingly used in diverse fields of fish biology. However, injection-based administration can induce stress or injury, potentially interfering with the natural physiological and behavioral states of the fish. Here, we present a non-invasive vehicle for oral administration of peptide-based compounds. To demonstrate its utility, the oxytocin receptor antagonist atosiban was administered orally using this vehicle. Atosiban was then qualitatively detected in serum by high-performance liquid chromatography. This study provides a proof of concept for an easy-to-use and minimally disruptive tool for various fish experiments.

animal behavior and cognition↗