Differentially Expressed Gene Patterns in Ascarid-Infected Chickens of Higher- or Lower-Performing Genotypes

2021 | journal article. A publication with affiliation to the University of Göttingen.

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​Differentially Expressed Gene Patterns in Ascarid-Infected Chickens of Higher- or Lower-Performing Genotypes​
Kilic, I.; Stehr, M.; Hennies, M.; Metges, C. C.; Franzenburg, S.; Falker-Gieske, C. & Tetens, J. et al.​ (2021) 
Animals11(4) pp. 1002​.​ DOI: https://doi.org/10.3390/ani11041002 

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Authors
Kilic, Isabel; Stehr, Manuel; Hennies, Mark; Metges, Cornelia C.; Franzenburg, Sören; Falker-Gieske, Clemens; Tetens, Jens; Daş, Gürbüz
Abstract
Here, we describe the first transcriptomic investigation of the peripheral blood of chickens exposed to Ascaridia galli and Heterakis gallinarum infections. We investigated differentially expressed gene (DEG) patterns in two chicken genotypes with either a higher (Lohmann Brown Plus, LB) or lower (Lohmann Dual, LD) laying performance level. The hens were experimentally coinfected with A. galli and H. gallinarum, and their worm burdens and infection parameters were determined six weeks post infection. Based on most representative infection parameters, the hens were clustered into lower- and higher-infection intensity classes. We identified a total of 78 DEGs contributing to infection-related phenotypic variation in the two genotypes. Our data showed significant upregulation of Guanylate Binding Protein 7 (GBP7) in LD hens, making it a promising candidate for tolerance to ascarid infections in chickens. Gene ontology analysis revealed higher transcriptome activity related to biological processes such as “response to external stimulus” in LB hens, implying a higher stress response in this genotype. In contrast, LD hens showed higher transcriptomic expression of genes related to ontology classes that are possibly associated with a higher tolerance to infections. These findings may help explain why lower-performing genotypes (i.e., LD) are less sensitive to infections in terms of maintaining their performance.
Issue Date
2021
Publisher
MDPI
Journal
Animals 
eISSN
2076-2615
Language
English
Sponsor
Bundesanstalt für Landwirtschaft und Ernährung
Open Access Fund of the Leibniz Institute for Farm Animal Biology

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