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Biology subjects

Norovich, A. L.

Publications and source records attributed to Norovich, A. L..

2 recordsLinked to original sources

Coordination and persistence of aggressive visual communication in Siamese fighting fish

Animals coordinate their behavior with each other during both cooperative and agonistic social interactions. Such coordination often adopts the form of "turn taking", in which the interactive partners alternate the performance of a behavior. Apart from acoustic communication, how turn taking between animals is coordinated is not well understood. Furthermore, the neural substrates that regulate persistence in engaging in social interactions are poorly studied. Here, we use Siamese fighting fish (Betta splendens), to study visually-driven turn-taking aggressive behavior. Using encounters with conspecifics and with animations, we characterize the dynamic visual features of an opponent and the behavioral sequences that drive turn taking. Through a brain-wide screen of neuronal activity during coordinated and persistent aggressive behavior, followed by targeted brain lesions, we find that the caudal portion of the dorsomedial telencephalon, an amygdala-like region, promotes persistent participation in aggressive interactions, yet is not necessary for coordination. Our work highlights how dynamic visual cues shape the rhythm of social interactions at multiple timescales, and points to the pallial amygdala as a region controlling engagement in such interactions. These results suggest an evolutionarily conserved role of the vertebrate pallial amygdala in regulating the persistence of emotional states.

neuroscience↗

Muscle-derived Cues are Required to Specify Proprioceptor Pool Identity

The formation of spinal sensory-motor circuits requires the diversification of proprioceptive sensory neurons (pSNs). During embryonic development, pSNs acquire molecular identities aligned with the limb muscle that they supply, but the extent of pSN "pool" diversity and how it is established are poorly understood. We find that the gene v-set transmembrane domain-2b (vstm2b) is preferentially expressed in pSN pools supplying dorsal limb muscle targets along the proximodistal extent of the limb. Genetic removal of muscle precursor cells from the developing limb greatly reduces the number of pSNs expressing vstm2b, demonstrating a requirement for limb muscle in specifying pSN pool identity. Comparison of dorsal and ventral muscle precursors identifies spatially restricted expression of the genes lumican (lum), decorin (dcn), and BMP binding endothelial regulator (bmper), demonstrating that dorsal and ventral muscle groups possess distinct molecular identities early in embryonic development. Together, these findings show that limb muscle is required for the specification of pSN pool identity and define early molecular correlates of dorsoventral muscle identity that are positioned to drive neuronal diversity.

developmental biology↗