Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats

The beneficial effects of polyphenol intake such as improved nitrogen retention make them interesting feed supplements for ruminants. In contrast, dietary polyphenols may have adverse effects on the bioavailability of nutrients and palatability of the feed which might impair growth performance. The...

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Main Authors: K. Giller, S. Sinz, J. Messadene-Chelali, S. Marquardt
Format: Article
Language:English
Published: Elsevier 2021-09-01
Series:Animal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1751731121001762
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spelling doaj-54f89df733d34425b81de330e37a26722021-08-08T04:17:41ZengElsevierAnimal1751-73112021-09-01159100333Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goatsK. Giller0S. Sinz1J. Messadene-Chelali2S. Marquardt3ETH Zurich, Institute of Agricultural Sciences, Universitaetstrasse 2, 8092 Zurich, Switzerland; Corresponding author at: ETH Zurich, Universitätstrasse 2, LFW B 51, 8092 Zurich, Switzerland.ETH Zurich, Institute of Agricultural Sciences, Universitaetstrasse 2, 8092 Zurich, SwitzerlandAgroscope, 1725 Posieux, SwitzerlandETH Zurich, Institute of Agricultural Sciences, Universitaetstrasse 2, 8092 Zurich, SwitzerlandThe beneficial effects of polyphenol intake such as improved nitrogen retention make them interesting feed supplements for ruminants. In contrast, dietary polyphenols may have adverse effects on the bioavailability of nutrients and palatability of the feed which might impair growth performance. The beneficial and adverse effects might differ between different ruminant species as well as between direct intake and intake of polyphenol metabolites via suckling when supplemented to lactating dams. This study investigated the effects of maternal and direct polyphenol supplementation via grape seed extract in sheep and goats on growth, slaughter performance, meat quality and fatty acid profile. The diet of lactating East Friesian Dairy sheep (n = 11) and Saanen goats (n = 9) and of their lambs (n = 16) and kids (n = 13), respectively, was supplemented either with grape seed extract (dams: 7.4% and offspring: 5.6%, P) or without (C). This resulted in four groups per species, namely maternalC/offspringC, maternalC/offspringP, maternalP/offspringC, and maternalP/offspringP. In lambs but not in goats, maternalP increased average daily gain and improved slaughter performance whereas offspringP had no effect. Maternal and offspring diet did not affect physicochemical meat quality in lambs, but direct intake of grape seed extract increased rancid aroma of burger patties. In goat kids, both maternal and offspring diets slightly affected meat colour. While groups of meat fatty acids (FAs) were not affected by diet in both species, maternalP in lambs as well as maternalP and offspringP in goat kids increased the meat n–6 to n–3 FA ratio compared to the respective control groups. In goat kid but not in lamb meat, direct intake of polyphenols affected the proportions of several rumen biohydrogenation intermediates. In conclusion, grape seed extract can be applied in both the maternal and offspring diets in sheep and goats while maintaining or even improving offspring growth performance and carcass quality. Only few species-specific effects of grape seed extract supplementation were observed, and additive effects were scarce. Larger studies are required to confirm the observed species-specific growth response to maternalP during lactation. The underlying reasons for this differential response need to be further evaluated.http://www.sciencedirect.com/science/article/pii/S1751731121001762Fatty acidGrape seed extractLambLongissimus thoracis et lumborumSensory analysis
collection DOAJ
language English
format Article
sources DOAJ
author K. Giller
S. Sinz
J. Messadene-Chelali
S. Marquardt
spellingShingle K. Giller
S. Sinz
J. Messadene-Chelali
S. Marquardt
Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
Animal
Fatty acid
Grape seed extract
Lamb
Longissimus thoracis et lumborum
Sensory analysis
author_facet K. Giller
S. Sinz
J. Messadene-Chelali
S. Marquardt
author_sort K. Giller
title Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
title_short Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
title_full Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
title_fullStr Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
title_full_unstemmed Maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
title_sort maternal and direct dietary polyphenol supplementation affect growth, carcass and meat quality of sheep and goats
publisher Elsevier
series Animal
issn 1751-7311
publishDate 2021-09-01
description The beneficial effects of polyphenol intake such as improved nitrogen retention make them interesting feed supplements for ruminants. In contrast, dietary polyphenols may have adverse effects on the bioavailability of nutrients and palatability of the feed which might impair growth performance. The beneficial and adverse effects might differ between different ruminant species as well as between direct intake and intake of polyphenol metabolites via suckling when supplemented to lactating dams. This study investigated the effects of maternal and direct polyphenol supplementation via grape seed extract in sheep and goats on growth, slaughter performance, meat quality and fatty acid profile. The diet of lactating East Friesian Dairy sheep (n = 11) and Saanen goats (n = 9) and of their lambs (n = 16) and kids (n = 13), respectively, was supplemented either with grape seed extract (dams: 7.4% and offspring: 5.6%, P) or without (C). This resulted in four groups per species, namely maternalC/offspringC, maternalC/offspringP, maternalP/offspringC, and maternalP/offspringP. In lambs but not in goats, maternalP increased average daily gain and improved slaughter performance whereas offspringP had no effect. Maternal and offspring diet did not affect physicochemical meat quality in lambs, but direct intake of grape seed extract increased rancid aroma of burger patties. In goat kids, both maternal and offspring diets slightly affected meat colour. While groups of meat fatty acids (FAs) were not affected by diet in both species, maternalP in lambs as well as maternalP and offspringP in goat kids increased the meat n–6 to n–3 FA ratio compared to the respective control groups. In goat kid but not in lamb meat, direct intake of polyphenols affected the proportions of several rumen biohydrogenation intermediates. In conclusion, grape seed extract can be applied in both the maternal and offspring diets in sheep and goats while maintaining or even improving offspring growth performance and carcass quality. Only few species-specific effects of grape seed extract supplementation were observed, and additive effects were scarce. Larger studies are required to confirm the observed species-specific growth response to maternalP during lactation. The underlying reasons for this differential response need to be further evaluated.
topic Fatty acid
Grape seed extract
Lamb
Longissimus thoracis et lumborum
Sensory analysis
url http://www.sciencedirect.com/science/article/pii/S1751731121001762
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AT jmessadenechelali maternalanddirectdietarypolyphenolsupplementationaffectgrowthcarcassandmeatqualityofsheepandgoats
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