Transcriptomic Changes in Broiler Chicken Hypothalamus during Growth and Development

Author:

Piórkowska Katarzyna1,Żukowski Kacper2,Połtowicz Katarzyna3,Nowak Joanna3,Wojtysiak Dorota4,Derebecka Natalia5,Wesoły Joanna5,Ropka-Molik Katarzyna1ORCID

Affiliation:

1. Department of Molecular Biology, National Research Institute of Animal Production, Balice 32-083, Poland

2. Department of Cattle Breeding, National Research Institute of Animal Production, Balice 32-083, Poland

3. Department of Poultry Breeding, National Research Institute of Animal Production, Balice 32-083, Poland

4. Institute of Veterinary Sciences, Department of Animal Anatomy, Agricultural University of Cracow, Kraków 30-059, Poland

5. Laboratory of High Throughput Technologies, Institute of Molecular Biology and Biotechnology, Faculty of Biology, Adam Mickiewicz University, 61-614 Poznań, Poland

Abstract

The hypothalamus plays an overarching role that is reflected in the physiological processes observed in the entire organism. The hypothalamus regulates selected metabolic processes and activities of the autonomic nervous system. The avian hypothalamus due to the structural complexity is not well described and has a slightly different function than the mammalian hypothalamus that is the subject of numerous studies. The present study evaluated activities of hypothalamic genes in fast-growing chickens during development (at the 1st day and 3rd and 6th weeks after hatching). The hypothalamic transcriptomes for 3- and 6-week-old cockerels were analysed using an RNA sequencing method in next-generation sequencing (NGS) technology. The differentially expressed gene analysis was conducted using DESeq2 software. In younger 22-day-old cockerels, 389 genes showed higher expression (fold change > 1.5) than that in 45-day-old birds. These genes played a role in several biological processes because they encoded proteins involved in integrin signalling, regulation of hormone levels, camera-type eye development, and blood vessel development. Moreover, surprisingly in the hypothalamus of 3-week-old cockerels, transcripts were identified for proteins involved in both anorexigenic (POMC, NMU) and orexigenic (PMCH, ALDH1A1, LPL, and GHRH) pathways. The RNA-seq results were confirmed by qPCR methods. In summary, the intensive growth of 3-week-old chickens was reflected in hypothalamic activities because the genes associated with the somatotropin axis and regulation of satiety centre showed increased expression.

Funder

National Multidisciplinary Laboratory of Functional Nanomaterials NanoFun nr

Publisher

Hindawi Limited

Subject

Pharmaceutical Science,Genetics,Molecular Biology,Biochemistry

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