Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Do Fossorial Water Voles have a Functional Vomeronasal Organ? A Histological and Immunohistochemical Study

View through CrossRef
ABSTRACT The fossorial water vole, Arvicola scherman , is a herbivorous rodent that cause significant agricultural damages. The application of cairomones and alarm pheromones emerges as a promising sustainable method to improve its integrated management. These chemical signals would induce stress responses that could interfere with the species regular reproductive cycles and induce aversive reactions, steering them away from farmlands and meadows. However, there is a paucity of information regarding the water vole vomeronasal system, both in its morphological foundations and its functionality, making it imperative to understand the same for the application of chemical communication in pest control. This study fills the existing gaps in knowledge through a morphological and immunohistochemical analysis of the fossorial water vole vomeronasal organ. The study is primarily microscopic, employing two approaches: histological, using serial sections stained with various dyes (Hematoxylin-Eosin, PAS, Alcian Blue, Nissl), and immunohistochemical, applying various markers that provide morphofunctional and structural information. These procedures have confirmed the presence of a functional vomeronasal system in fossorial water voles, characterized by a high degree of differentiation and a significant expression of cellular markers indicative of active chemical communication in this species.
Title: Do Fossorial Water Voles have a Functional Vomeronasal Organ? A Histological and Immunohistochemical Study
Description:
ABSTRACT The fossorial water vole, Arvicola scherman , is a herbivorous rodent that cause significant agricultural damages.
The application of cairomones and alarm pheromones emerges as a promising sustainable method to improve its integrated management.
These chemical signals would induce stress responses that could interfere with the species regular reproductive cycles and induce aversive reactions, steering them away from farmlands and meadows.
However, there is a paucity of information regarding the water vole vomeronasal system, both in its morphological foundations and its functionality, making it imperative to understand the same for the application of chemical communication in pest control.
This study fills the existing gaps in knowledge through a morphological and immunohistochemical analysis of the fossorial water vole vomeronasal organ.
The study is primarily microscopic, employing two approaches: histological, using serial sections stained with various dyes (Hematoxylin-Eosin, PAS, Alcian Blue, Nissl), and immunohistochemical, applying various markers that provide morphofunctional and structural information.
These procedures have confirmed the presence of a functional vomeronasal system in fossorial water voles, characterized by a high degree of differentiation and a significant expression of cellular markers indicative of active chemical communication in this species.

Related Results

Pheromone Sensing in Mammals: A Review on the Vomeronasal System
Pheromone Sensing in Mammals: A Review on the Vomeronasal System
This review delves into the significance of chemical communication in mammals, with an emphasis on the role of the vomeronasal system in sensing pheromone-mediated interactions. Th...
Pheromone Sensing in Mammals: A Review of the Vomeronasal System
Pheromone Sensing in Mammals: A Review of the Vomeronasal System
This review addresses the role of chemical communication in mammals, giving special attention to the vomeronasal system in pheromone-mediated interactions. The vomeronasal system i...
Histological and Ultrastructural Characteristics of the Primordial Vomeronasal Organ in Lungfish
Histological and Ultrastructural Characteristics of the Primordial Vomeronasal Organ in Lungfish
AbstractMany vertebrates have two anatomically distinct olfactory organs—the olfactory epithelium and the vomeronasal organ—to detect chemicals such as general odorants and pheromo...
Different selection regimes explain morphological evolution in fossorial lizards
Different selection regimes explain morphological evolution in fossorial lizards
Abstract Independent origins of similar phenotypes are ubiquitous to the evolutionary process and evoke strong and recurrent environmental associations. Snakelike lizards evolved...
Catecholamine-synthesizing enzymes in adrenals of seasonally acclimatized voles
Catecholamine-synthesizing enzymes in adrenals of seasonally acclimatized voles
Tyrosine hydroxylase (TH) and phenylethanolamine-N-methyltransferase (PNMT) activities were assayed in adrenal glands of the following groups of the Alaskan red-backed vole (Clethr...
Sensing and avoiding sick conspecifics requires Gαi2+ vomeronasal neurons
Sensing and avoiding sick conspecifics requires Gαi2+ vomeronasal neurons
AbstractBackgroundRodents utilize chemical cues to recognize and avoid other conspecifics infected with pathogens. Infection with pathogens and acute inflammation alter the reperto...

Back to Top