4.7 Article

Fatty Acids and Metabolomic Composition of Follicular Fluid Collected from Environments Associated with Good and Poor Oocyte Competence in Goats

Journal

Publisher

MDPI
DOI: 10.3390/ijms23084141

Keywords

reproductive fluids; fertilization; follicles; omega-3; omega-6; glucose

Funding

  1. Spanish Minister of Science, Innovation and Universities [AGL2017-85837-R]

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The size of follicles in goats affects the competence of embryo oocytes, regardless of the age of the females. This study analyzed the composition of fatty acids and metabolites in follicular fluid recovered from small and large follicles of prepubertal goats and follicles of adult goats. Significant differences were found in the composition of fatty acids and metabolites between adult and prepubertal follicles.
In goats, embryo oocyte competence is affected by follicle size regardless the age of the females. In previous studies we have found differences in blastocyst development between oocytes coming of small (<3 mm) and large follicles (>3 mm) in prepubertal (1-2 months-old) goats. Oocyte competence and Follicular Fluid (FF) composition changes throughout follicle growth. The aim of this study was to analyze Fatty Acids (FAs) composition and metabolomic profiles of FF recovered from small and large follicles of prepubertal goats and follicles of adult goats. FAs were analyzed by chromatography and metabolites by 1H-Nuclear Magnetic Resonance (1H-NMR) Spectrometry. The results showed important differences between adult and prepubertal follicles: (a) the presence of alpha,beta-glucose in adult and no detection in prepubertal; (b) lactate, -N-(CH3)3 groups and inositol were higher in prepubertal (c) the percentage of Linolenic Acid, Total Saturated Fatty Acids and n-3 PUFAs were higher in adults; and (d) the percentage of Linoleic Acid, total MUFAs, PUFAs, n-6 PUFAs and n-6 PUFAs: n-3 PUFAs ratio were higher in prepubertal goats. Not significant differences were found in follicle size of prepubertal goats, despite the differences in oocyte competence for in vitro embryo production.

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