Cumulus‐oocyte complexes from sows show differences in lipid metabolism compared to cumulus‐oocyte complexes from prepubertal gilts during in vitro maturation

Author:

Silva Thainara C. F.1,Dode Margot A. N.23,Braga Thiago F.45,Marques Mariana G.6,Vargas Luna Nascimento1,de Faria Otávio Augusto Costa3,de Souza Andressa P.7,Albring Daniela8,Caetano Alexandre R.2,Franco Maurício M.12910ORCID

Affiliation:

1. Programa de Pós‐Graduação em Genética e Bioquímica Universidade Federal de Uberlândia Uberlândia Minas Gerais Brazil

2. Embrapa Recursos Genéticos e Biotecnologia Brasília Distrito Federal Brazil

3. Pós‐graduação em Biologia Animal Universidade de Brasília Brasília Distrito Federal Brazil

4. Centro Universitário do Cerrado Patrocínio Minas Gerais Brazil

5. Instituto Master de Ensino Presidente Antônio Carlos Araguari Minas Gerais Brazil

6. Embrapa Suínos e Aves Concórdia Santa Catarina Brazil

7. Universidade do Estado de Santa Catarina—UDESC Florianópolis Santa Catarina Brazil

8. Universidade do Contestado—UnC Mafra Santa Catarina Brazil

9. Programa de Pós‐Graduação em Ciências Veterinárias Universidade Federal de Uberlândia Uberlândia Minas Gerais Brazil

10. Instituto de Biotecnologia Universidade Federal de Uberlândia Uberlândia Minas Gerais Brazil

Abstract

AbstractThis study aimed to evaluate the effects of donor age on lipid metabolism during in vitro maturation (IVM) of pigs cumulus‐oocyte complexes (COCs). We evaluated transcript levels of genes, the percentage of ooplasm occupied by lipid droplets (LD) and evaluated DNA methylation in COCs from sows and prepubertal gilts. Transcript levels of six genes (ACACA, ACSS2, FASN, FABP3, SLC27A4, PLIN2), which were analyzed in cumulus cells (CCs), increased after 44 h of IVM in the sow group. In the gilt group, only FASN expression increased, while NR3C1 expression decreased after IVM. The measurement of LD in oocytes showed an accumulation of lipids in sow oocytes during IVM, while gilt oocytes showed a decrease in LD. FABP3 and NR3C1 methylation patterns exhibited a demethylation pattern in CCs and oocytes from gilts and sows and showed statistical differences between groups. CCs from sows had a better capacity to change transcription levels of the major genes involved in lipid metabolism during IVM than CCs from gilts. This difference may be involved in accumulation of lipids, acquisition of competence, and maturation of enclosed oocytes. Our results contribute to a better understanding of mechanisms involved in lipid metabolism and acquisition of competence in porcine COCs.

Funder

Empresa Brasileira de Pesquisa Agropecuária

Publisher

Wiley

Subject

Cell Biology,Developmental Biology,Genetics

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