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Rois, J. L.

Publications and source records attributed to Rois, J. L..

2 recordsLinked to original sources

Neurochemical Features and Glycan Patterns in the Wapiti Vomeronasal Pathway

The vomeronasal system (VNS) plays a central role in mammalian chemical communication, mediating critical social and reproductive behaviors. In the wapiti (Cervus canadensis), a cervid species with complex social structures and pronounced chemical signaling during the rut, the VNS had not been previously characterized. This study provides the first comprehensive anatomical and neurochemical analysis of the VNS in wapiti using histological, lectin-histochemical, and immunohistochemical techniques. The vomeronasal organ (VNO) exhibited clear rostrocaudal differentiation, with distinct sensory and respiratory epithelia, a complex glandular distribution, and region-specific expression of neural markers. Lectin binding patterns confirmed functional compartmentalization along the epithelium, and immunoreactivity for markers such as OMP, PGP9.5, CR, and G-protein subunits (Gi2, G{gamma}8, and G0) revealed detailed molecular organization. Notably, G0-positive neurons in the epithelium did not project to the accessory olfactory bulb (AOB), suggesting alternative targets, possibly within transitional zones. The AOB showed all canonical layers, including well-defined glomeruli and expression of markers such as calbindin, CR, GFAP, and LEA lectin. Novel findings include the presence of large white matter tracts and region-specific lectin distribution. Confocal double immunofluorescence and autofluorescence imaging were also employed, allowing high-resolution visualization of neuroepithelial architecture and glomerular domains. Altogether, our results demonstrate that the vomeronasal system in wapiti is highly developed and functionally specialized. These findings contribute to a better understanding of chemosensory communication in wild ungulates and provide a comparative framework for future studies in cervid behavior, reproduction, and conservation.

neuroscience↗

Exploring the vomeronasal organ in an endangered antelope species

The dama gazelle is a threatened and scarcely studied species of northern Africa. Human pressure has depleted the population of dama gazelles from tens of thousands to a few hundred individuals. Since 1970, after deriving from a founder population of the last 17 surviving individuals in the Western Sahara, it has been reproduced naturally in captivity. Although certain aspects of the reproductive biology of the dama gazelle have been established in preparation for the future implementation of assisted reproductive technology there is a lack of information regarding the role of semiochemical-mediated communication in the sexual behavior of the dama gazelle. This is partially due to the lack of a neuroanatomical and morphofunctional characterization of the dama gazelle vomeronasal organ (VNO); the sensory organ responsible for the processing of pheromones. This study aims to determine the presence in the dama gazelle of a VNO fully equipped to carry out its neurosensory function and to contribute to the understanding of the interspecific variability of the VNO of ruminants. Employing histological, lectin-histochemical and immunohistochemical techniques we have performed a detailed morphofunctional evaluation of the dama gazelle VNO along its entire longitudinal axis. The findings suggest that studies of the VNO should take a similar approach, as there are significant structural and neurochemical transformations that the organ exhibits as a whole. This study contributes to the understanding of the VNO in dama gazelles and provides a basis for future studies on semiochemical-mediated communication and reproductive management of this species.

neuroscience↗