Transcriptome changes underlie alterations in behavioral traits in different types of chicken

Author:

Chen Siyu123,Yan Chao23,Xiang Hai23,Xiao Jinlong2,Liu Jian3,Zhang Hui2,Wang Jikun4,Liu Hao2,Zhang Xiben3,Ou Maojun3,Chen Zelin3,Li Weibo3,Turner Simon P5,Zhao Xingbo123

Affiliation:

1. Guangdong Provincial Key Laboratory of Animal Molecular Design and Precise Breeding, School of Life Science and Engineering, Foshan University, Foshan, China

2. College of Animal Science and Technology, China Agricultural University, Beijing, China

3. Guizhou Nayong Professor Workstation of China Agricultural University, Bijie, China

4. Key Laboratory of Qinghai-Tibetan Plateau Animal Genetic Resource Reservation and Utilization, Ministry of Education; Institute of Qinghai-Tibetan Plateau, Southwest University for Nationalities, Chengdu, China

5. Animal and Veterinary Sciences Department, Scotland’s Rural College, Edinburgh, UK

Abstract

Abstract In recent decades, artificial selection has contributed greatly to meeting the demands for animal meat, eggs, and milk. However, it has also resulted in changes in behavior, metabolic and digestive function, and alterations in tissue development, including the brain and skeleton. Our study aimed to profile the behavioral traits and transcriptome pattern of chickens (broilers, layers, and dual-purpose breeds) in response to artificial selection. Broilers spent less time gathered as a group in a novel arena (P < 0.01), suggesting reduced fearfulness in these birds. Broilers also showed a greater willingness to approach a model predator during a vigilance test but had a greater behavioral response when first exposed to the vocalization of the predator. Genes found to be upregulated and downregulated in previous work on chickens divergently selected for fear responses also showed consistent differences in expression between breeds in our study and indicated a reduction in fearfulness in broilers. Gene ACTB_G1 (actin) was differentially expressed between breeds and is a candidate gene involved with skeletal muscle growth and disease susceptibility in broilers. Furthermore, breed-specific alterations in the chicken domestic phenotype leading to differences in growth and egg production were associated with behavioral changes, which are probably underpinned by alterations in gene expression, gene ontology terms, and Kyoto Encyclopedia of Genes and Genomes pathways. The results highlight the change in behavior and gene expression of the broiler strain relative to the layer and a dual-purpose native breed.

Funder

Guizhou Nayong Professor Workstation

Guangdong Provincial Key Laboratory of Animal Molecular Design and Precise Breeding

Publisher

Oxford University Press (OUP)

Subject

Genetics,Animal Science and Zoology,General Medicine,Food Science

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