Novel Candidate Genes Involved in an Initial Stage of White Striping Development in Broiler Chickens

Author:

Padilha Suelen Fernandes1ORCID,Ibelli Adriana Mércia Guaratini23ORCID,Peixoto Jane Oliveira23,Cantão Maurício Egídio2,Moreira Gabriel Costa Monteiro4ORCID,Fernandes Lana Teixeira2,Tavernari Fernando Castro25ORCID,Morés Marcos Antônio Zanella2,Bastos Ana Paula Almeida23ORCID,Dias Laila Talarico1,Teixeira Rodrigo Almeida1ORCID,Ledur Mônica Corrêa25ORCID

Affiliation:

1. Departamento de Zootecnia, Programa de Pós-Graduação em Zootecnia, Universidade Federal do Paraná, Curitiba 80035-050, PR, Brazil

2. Embrapa Suínos e Aves, Concórdia 89715-899, SC, Brazil

3. Programa de Pós-Graduação em Ciências Veterinárias, Universidade Estadual do Centro Oeste, Guarapuava 85040-167, PR, Brazil

4. UVSQ, INRAE, BREED, Université Paris-Saclay, 78350 Jouy-en-Josas, France

5. Programa de Pós-Graduação em Zootecnia, Universidade do Estado de Santa Catarina, UDESC-Oeste, Chapecó 89815-630, SC, Brazil

Abstract

White striping (WS) is a myopathy characterized by the appearance of white stripes parallel to the muscle fibers in the breast of broiler chickens, composed of adipose and connective tissues. This condition causes economic losses and, although common, its etiology remains poorly understood. Hence, the objective was to identify genes and biological mechanisms involved in the early stages of WS using a paternal broiler line that grows slightly slower than commercial ones, at 35 days of age, through the RNA sequencing of the pectoralis major muscle. Thirty genes were differentially expressed between normal and WS-affected chickens, with 23 upregulated and 7 downregulated in the affected broilers. Of these, 14 genes are novel candidates for WS and are implicated in biological processes related to muscle development (CEPBD, DUSP8, METTL21EP, NELL2, and UBE3D), lipid metabolism (PDK4, DDIT4, FKBP5, DGAT2, LIPG, TDH, and RGCC), and collagen (COL4A5 and COL4A6). Genes related to changes in muscle fiber type and the processes of apoptosis, autophagy, proliferation, and differentiation are possibly involved with the initial stage of WS development. In contrast, the genes linked to lipid metabolism and collagen may have their expression altered due to the progression of the myopathy.

Funder

Brazilian Agricultural Research Corporation

National Council for Scientific and Technological Development

Santa Catarina State Research Foundation

Publisher

MDPI AG

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