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Kenny, A.

Publications and source records attributed to Kenny, A..

2 recordsLinked to original sources

Noradrenergic-dependent restoration of visual discrimination in a mouse model of SYNGAP1-related disorder

Atypical sensory processing in neurodevelopmental disorders contributes to cognitive, social, and behavioural disruptions, yet underlying neurophysiological mechanisms remain unclear. Using a mouse model of SYNGAP1 haploinsufficiency (HET), a common monogenic cause of intellectual disability and autism, we investigated visual processing deficits. Syngap HET mice exhibited impaired behavioural visual discriminability, associated with reduced coding precision for visual stimuli in the primary visual cortex (V1). Notably, intrinsic properties of V1 neurons and visual responses under anaesthesia were unaltered, suggesting behavioural state-dependent disruptions in awake Syngap HET mice. Supporting this, both mice and individuals with SYNGAP1 haploinsufficiency exhibited larger pupil size during visual stimulation, implicating neuromodulatory dysfunction. Targeting noradrenergic tone systemically with an 2-adrenergic receptor agonist restored V1 coding precision in Syngap HET mice. Our findings reveal neuromodulatory dysregulation as a novel mechanism underlying sensory disruptions in SYNGAP1-related disorder, highlighting potential therapeutic targets for addressing sensory impairments in neurodevelopmental disorders.

neuroscience↗

Embryogenesis in myrmicine ants combines features of short and long germ-band modes of development

Ants exhibit complex social organization, morphologically distinct castes with division of labor, and the exploitation of diverse ecological niches. The extent to which these features have influenced embryonic development relative to other insects remains unclear. Insect embryogenesis has been classified into one of three modes: long, short, and intermediate germ-band. In long germ-band development, exemplified by the fruit fly Drosophila melanogaster, segments along the entire anterior-posterior axis of the embryonic primordium are established almost simultaneously, prior to gastrulation, with the initial embryonic primordium surrounding almost the entire volume of the egg. In short and intermediate germ-band modes, the embryonic primordium occupies a smaller proportion of the egg surface, with anterior segments initially specified, and remaining segments being added sequentially from a posterior growth zone. Here, we show a novel pattern of development in three myrmicine ants, the fungus-gardening ants Atta texana and Mycocepurus smithii, and the red imported fire ant Solenopsis invicta. Early in embryogenesis, they exhibit features of short germ-band development, while later in development they exhibit a newly-characterized progressive pattern of segmentation that has been associated with some long germ-band-developing insects. Moreover, despite similarities in the size of ant and Drosophila eggs, the duration of embryogenesis in the three ant species is 10 to 20-fold longer than in Drosophila and is also significantly longer than in the honeybee Apis mellifera and the jewel wasp Nasonia vitripennis. In addition, the embryos produced by A. texana foundress queens develop to first instar larvae 25% faster than embryos produced by mature queens. We discuss these results in the context of the eusocial lifestyle of ants.

developmental biology↗