The Early Methionine Supplementation of Ewe Lambs (F0) Modifies Meat Quality Traits of the Progeny (F1, Male Fattening Lambs).

IF 2.7 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Animals Pub Date : 2025-04-30 DOI:10.3390/ani15091290
Mahsa Dehnavi, Javier Mateo, Alba Martín, F Javier Giráldez, Irma Caro, Lara Morán, Sonia Andrés
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引用次数: 0

Abstract

Adequate management of replacement ewe lambs (F0) in dairy sheep farms during postnatal life may modify the germline cells, thus promoting transmission of intergenerational effects to the offspring (F1). To test this hypothesis, 18 newborn male lambs (F1), either born from methionine-supplemented ewe lambs (F0 ewe lambs being fed ad libitum with a milk replacer supplemented with 1 g methionine/kg DM) or not supplemented (F0 ewe lambs being fed ad libitum with the same milk replacer with no methionine added), were included in the present study. All the male F1 lambs were managed exactly in the same way along the whole lifespan in order to bring out the differences caused by methionine supplementation of F0 dams. Our data show that the methionine supplementation of dams (F0) during the suckling period did not promote significant (p > 0.05) changes on feed intake, growth rate, or feed efficiency of F1 male lambs during the fattening period. Moreover, the meat chemical composition (proximal, fatty acid profile, and volatile compounds) was similar for both groups (p > 0.05), but the meat of F1-MET lambs presented higher redness and hardness (p < 0.05) when compared to F1-CTRL lambs. The biochemical profile also highlighted significant (p < 0.05) differences in the serum creatinine and calcium content that may be at least partially related to the meat quality traits observed. Overall, all these results suggest that methionine supplementation of lambs (F0) during early postnatal life causes permanent changes in the offspring. This has positive effects, such as achieving a more attractive color of lamb meat (F1) for consumers, and negative effects, such as reduced meat tenderness.

母羊羔羊(F0)早期补充蛋氨酸对后代(F1,公育羔)肉质性状的影响。
奶羊养殖场在出生后对替代母羊(F0)进行适当的管理可能会改变种系细胞,从而促进代际效应传递给后代(F1)。为了验证这一假设,本研究将18只新生公羔(F1)纳入本研究,其中包括饲粮中添加蛋氨酸的母羊(F0只母羊自由饲喂添加1 g蛋氨酸/kg DM的代用品)和未添加蛋氨酸的母羊(F0只母羊自由饲喂不添加蛋氨酸的代用品)。所有雄性F1羔羊在整个生命周期内完全按照相同的方式进行管理,以显示饲粮中添加蛋氨酸所造成的差异。结果表明,哺乳期饲粮中添加蛋氨酸对育肥期F1公羊羔的采食量、生长率和饲料效率没有显著(p < 0.05)的影响。两组羔羊的肉质化学成分(近端、脂肪酸谱和挥发性化合物)相似(p < 0.05),但F1-MET羔羊的肉质红度和硬度高于F1-CTRL羔羊(p < 0.05)。生化分析还显示,血清肌酐和钙含量存在显著差异(p < 0.05),这可能至少部分与所观察到的肉质性状有关。总的来说,所有这些结果表明,在出生后早期羔羊(F0)补充蛋氨酸会导致后代的永久性变化。这有积极的影响,例如使羊肉的颜色对消费者更有吸引力(F1),也有消极的影响,例如降低了肉的嫩度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Animals
Animals Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
4.90
自引率
16.70%
发文量
3015
审稿时长
20.52 days
期刊介绍: Animals (ISSN 2076-2615) is an international and interdisciplinary scholarly open access journal. It publishes original research articles, reviews, communications, and short notes that are relevant to any field of study that involves animals, including zoology, ethnozoology, animal science, animal ethics and animal welfare. However, preference will be given to those articles that provide an understanding of animals within a larger context (i.e., the animals'' interactions with the outside world, including humans). There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental details and/or method of study, must be provided for research articles. Articles submitted that involve subjecting animals to unnecessary pain or suffering will not be accepted, and all articles must be submitted with the necessary ethical approval (please refer to the Ethical Guidelines for more information).
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