Investigation of structural and neurobiochemical differences in brains from high-performance and native hen breeds

Author:

Kasperek Kornel,Jaworska-Adamu Jadwiga,Krawczyk Aleksandra,Rycerz Karol,Buszewicz Grzegorz,Przygodzka Dominika,Wójcik Grzegorz,Blicharska Eliza,Drabik Kamil,Czech Anna,Wlazło Łukasz,Ossowski Mateusz,Rozempolska-Rucińska Iwona

Abstract

AbstractSelection of livestock has not only led to changes in the level of their performance but also modified their behavior. As a result, within a single species, we have to deal with different behaviors of different breeds. In our study, we assumed that the different behaviors within a species are due to differences in the morphology and physiology of behavior-related systems. Two breeds of hens were used as a model: the highly reactive, fearful and high-performance Leghorn breed and proactive, unselected Green-legged Partridge breed. The higher reactivity and fearfulness of Leghorn hens in comparison to the Green-legged Partridge breed may be related to the greater number of neurons in the paraventricular nucleus and anterior hypothalamus and the higher content of zinc and iron in the brain, as these elements are involved in neuronal conduction and myelination processes. The reactive behaviours of Green-legged Partridge hens may be associated with the lower number of neurons in the paraventricular nucleus and the anterior hypothalamus and the higher concentration of dopamine and copper ions in the brain. The analyses confirmed the hypothesis of the existence of interbreed differences in the morphology and physiology of behaviour-related systems, which most probably emerged through unintentional and correlated selection towards high production performance. Consequently, attention should be drawn that the selection of a given genotype (breed) towards a specific environment could lead to creation of highly specialised lines that may not achieve homeostasis in every maintenance system.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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