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桑叶补充剂改变了生长羊肉羊的脂代谢,促进了脂肪酸β氧化。

Mulberry leaves supplementation alters lipid metabolism and promotes fatty acid β oxidation in growing mutton sheep.

机构信息

College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China.

College of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, Jiangsu 212000, China.

出版信息

J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae076.

Abstract

Mulberry leaves (MLs) are an unconventional feed with fiber and various active ingredients, and are acknowledged as likely to regulate lipid metabolism, while the molecular mechanism remains undefined. Therefore, our objective was to define the role of MLs on the overall lipid metabolism. We conducted a feeding experiment of three groups on growing mutton sheep fed with dried mulberry leaves (DMLs), with fermented mulberry leaves (FMLs), or without MLs (as control). Analyses of transcriptome and widely target lipids demonstrated the addition of MLs triggered big perturbations in genes and metabolites related to glycerolipid, phospholipid, ether lipid, and sphingolipid metabolism. Additionally, the variations of the above lipids in the treatment of MLs possibly facilitate immunity enhancement of growing mutton sheep via the activation of complement and coagulation cascades. Furthermore, treatments with MLs could expedite proceedings of lipid degradation and fatty acid β oxidation in mitochondria, thereby to achieve the effect of lipid reduction. Besides, added DMLs also fuel fatty acid β-oxidation in peroxisomes and own much stronger lipolysis than added FMLs, possibly attributed to high fiber content in DMLs. These findings establish the novel lipid-lowering role and immune protection of MLs, which lays the foundation for the medicinal application of MLs.

摘要

桑叶(MLs)是一种非常规饲料,含有纤维和各种活性成分,被认为可能调节脂代谢,但其分子机制尚不清楚。因此,我们的目的是定义 MLs 对整体脂代谢的作用。我们在生长绵羊肉羊上进行了三组喂养实验,分别用干桑叶(DMLs)、发酵桑叶(FMLs)或不添加 MLs(作为对照)进行喂养。对转录组和广泛的靶向脂质分析表明,添加 MLs 会引发与甘油磷脂、磷脂、醚脂和鞘脂代谢相关的基因和代谢物的大波动。此外,上述脂质的变化可能通过补体和凝血级联的激活促进生长绵羊肉羊的免疫力增强。此外,MLs 的处理可以加速线粒体中脂质的降解和脂肪酸β氧化,从而达到减少脂质的效果。此外,添加的 DMLs 还可以促进过氧化物酶体中的脂肪酸β氧化,并且比添加的 FMLs 具有更强的脂肪分解作用,这可能归因于 DMLs 中的高纤维含量。这些发现确立了 MLs 的新的降脂作用和免疫保护作用,为 MLs 的药用应用奠定了基础。

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