Low n-3/High n-6 Flaxseed and Hermetia illucens Larvae Oils as Feed Materials: Effects on In Vitro Rumen Fermentation, Maternal Metabolism, Antioxidant Status and Colostrum in Prolific Ewes

Black soldier fly larvae (BSFL; Hermetia illucens) oil and flaxseed oil provide contrasting fatty acid profiles and may serve as alternative lipid feed materials in ruminant nutrition. This study assessed low-α-linolenic/high-linoleic flaxseed oil, BSFL oil, and their blends using an in vitro rumen fermentation screening with pooled bovine rumen inoculum and a randomized prepartum feeding trial in 32 twin- or triplet-bearing Olkuska ewes. In vitro, the single oils and a 1:1 blend were evaluated at two inclusion levels; total VFA concentration was unchanged, whereas propionate proportion, the acetate-to-propionate ratio, methane, ammonia, and incubation-fluid fatty acid profiles showed treatment-dependent responses. In vivo, an unsupplemented control was compared with flaxseed oil, BSFL oil, and a 2:1 blend supplied at 30 g/day for 21 days before expected parturition. Colostrum fat concentration differed among treatments (p = 0.036); the 2:1 blend group had a higher value than the control group (11.29% vs. 8.26%; Dunnett-adjusted p < 0.05), while major fatty acid classes did not differ. Supplementation was also associated with differences in selected minor colostrum fatty acids and several serum metabolic variables. Colostrum yield was not measured; therefore, this finding reflects fat concentration rather than total colostrum fat output. Serum total antioxidant status (TAS) was unaffected, while a treatment-by-time interaction was observed for γ-glutamyl transferase. The tested plant- and insect-derived oils therefore modified ruminal lipid transformations and selected maternal and colostrum traits without a detectable change in TAS.

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Journal
International Journal of Molecular Sciences
Published
2026-09-11
DOI
https://doi.org/10.3390/ijms27188111
Primary Topic
Insect Utilization and Effects
Type
article
Field-Weighted Citation Impact
0.00

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article

Low n-3/High n-6 Flaxseed and Hermetia illucens Larvae Oils as Feed Materials: Effects on In Vitro Rumen Fermentation, Maternal Metabolism, Antioxidant Status and Colostrum in Prolific Ewes

Kamila Lewandowska, Robert Kupczyński, Natalia Pachura, Antoni Szumny et al.
International Journal of Molecular Sciences
Insect Utilization and Effects
article

Low n-3/High n-6 Flaxseed and Hermetia illucens Larvae Oils as Feed Materials: Effects on In Vitro Rumen Fermentation, Maternal Metabolism, Antioxidant Status and Colostrum in Prolific Ewes

Kamila Lewandowska, Robert Kupczyński, Natalia Pachura, Antoni Szumny, Anna Burek
article en

Abstract

Black soldier fly larvae (BSFL; Hermetia illucens) oil and flaxseed oil provide contrasting fatty acid profiles and may serve as alternative lipid feed materials in ruminant nutrition. This study assessed low-α-linolenic/high-linoleic flaxseed oil, BSFL oil, and their blends using an in vitro rumen fermentation screening with pooled bovine rumen inoculum and a randomized prepartum feeding trial in 32 twin- or triplet-bearing Olkuska ewes. In vitro, the single oils and a 1:1 blend were evaluated at two inclusion levels; total VFA concentration was unchanged, whereas propionate proportion, the acetate-to-propionate ratio, methane, ammonia, and incubation-fluid fatty acid profiles showed treatment-dependent responses. In vivo, an unsupplemented control was compared with flaxseed oil, BSFL oil, and a 2:1 blend supplied at 30 g/day for 21 days before expected parturition. Colostrum fat concentration differed among treatments (p = 0.036); the 2:1 blend group had a higher value than the control group (11.29% vs. 8.26%; Dunnett-adjusted p < 0.05), while major fatty acid classes did not differ. Supplementation was also associated with differences in selected minor colostrum fatty acids and several serum metabolic variables. Colostrum yield was not measured; therefore, this finding reflects fat concentration rather than total colostrum fat output. Serum total antioxidant status (TAS) was unaffected, while a treatment-by-time interaction was observed for γ-glutamyl transferase. The tested plant- and insect-derived oils therefore modified ruminal lipid transformations and selected maternal and colostrum traits without a detectable change in TAS.

International Journal of Molecular SciencesVol. 27(18)
Animal Welfare Institute (US), University of Life Sciences in Lublin (PL)
Uniwersytet Przyrodniczy we Wrocławiu
Zero hunger
Openalex Percentile: Top 12%
Insect Utilization and Effects
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