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Published on: June 2, 2022
γ-aminobutyric acid improves gut-brain axis function and behavioral adaptation in broilers under low-protein diet
Randi Randi1, Anisa Aulia1, Muhtadin Muhtadin1
1Department of Animal Nutrition and Feed Science, Faculty of Animal Science, Universitas Gadjah Mada, Yogyakarta 55281, Indonesia.
Abstract:
Low crude protein (CP) diets can improve feed efficiency and reduce ammonia emissions, but negative impacts on broiler productivity can occur. This study aimed to evaluate the effects of γ-aminobutyric acid (GABA) supplementation in low CP diets on productivity, enzyme activity, neuropeptidergic gene expression, and behavior of broilers. A total of 360 male Ross 308 broilers were used in a factorial design experiment with two CP levels (19.5 and 18.0%) and three GABA levels (0, 100, and 200 mg/kg). Dietary CP and GABA levels did not significantly affect broiler productivity (P>0.05). Reducing CP in the diet increased amylase and decreased protease activities (P<0.05). GABA supplementation had no significant effect on enzyme activity (P>0.05). The expression of orexigenic genes (AgRP, NPY, ghrelin) was significantly downregulated, while anorexigenic genes (CCK, PYY, GLP-1, GLP-2) were upregulated in the 18.0% CP group (P<0.05). In contrast, dietary supplementation of GABA significantly increased the expression of orexigenic genes and decreased the expression of anorexigenic genes (P<0.05). The expression of the pro-inflammatory gene TNF-α was increased, while the anti-inflammatory gene IL-10 was decreased in the 18.0% CP group (P<0.05). GABA supplementation reversed this effect by downregulating TNF-α and upregulating IL-10 expression (P<0.05). Similarly, the expression of tight junction genes (ZO-1 and JAM2) was decreased in broiler fed 18.0% CP, but significantly upregulated following GABA supplementation (P<0.05). A significant CP×GABA interaction was observed for orexigenic, anorexigenic, inflammatory, and tight junction gene expression (P<0.05). A 1.5% reduction in CP had no significant effect on sitting or open-wings (P>0.05). However, it increased walking, resting, stretching, and preening, while decreasing feeding, drinking, and pecking (P<0.05). The GABA supplementation enhanced feeding and drinking and reduced pecking, walking, sitting, resting, stretching, preening, and open-wings (P<0.05), with a significant CP×GABA interaction effecting overall broiler behavior (P<0.05). A 1.5% reduction in dietary crude protein had no adverse effect on broiler production but resulted in the downregulation of tight junction and anti-inflammatory genes expression. Conversely, dietary supplementation of GABA in low-protein diets upregulated orexigenic gene expression, promoted homeostatic regulation, improved immune and gut barrier functions, and modulated broiler behavior.
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