Effects of candidate genes on milk fat synthesis in ruminants: A meta-analysis

IF 4.4 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Dairy Science Pub Date : 2025-06-01 Epub Date: 2025-03-24 DOI:10.3168/jds.2024-25660
Lily Liu , Wenquan Yan , Min Yan , Songlin Liu , Qin Zhang , Emily Clark , Jinhai Wang
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Abstract

Milk fat content is a polygenic commercially important quantitative trait in ruminants. In recent decades, an increasing number of genes involved in milk fat synthesis have been identified through GWAS and validated using functional assays, such as gene knockdown or overexpression. However, functional validation assays have been limited to a small number of related genes, yielding insufficient data to fully understand the biological processes in milk fat synthesis. To provide a comprehensive evaluation of the genes involved in milk fat synthesis, we performed a meta-analysis of 1,395 effect sizes from 81 publications, which included 137 genes, spanning 4 ruminant species. In the studies, analyzed knockdown/overexpression of candidate genes significantly reduced/increased target gene (protein) and related gene (protein) expression, and these effects were consistent across species. However, the effects of knockdown/overexpression of candidate genes across the different pathways of milk fat synthesis varied between species. Pathways related to milk fat synthesis, SREBPp, PPAR, JAK-AKT, and the Insulin pathway, exhibited the largest effects on the synthesis of triglyceride, lipid droplet, cholesterol, and UFA, respectively. Key genes in these pathways, SREBP (SREBP1, SREBF1), PPAR (PPARA, PPARD, PPARG), JAK2, STAT5α, and INSIG (INSIG1 and INSIG2), also have a significant effect on regulating the formation of triglyceride, cholesterol, lipid droplets, and UFA, respectively. Overall, our findings indicated that milk fat synthesis is regulated by multiple pathways and many different genes. Further studies are needed to confirm these findings and to understand the mechanisms underlying species- and pathway-specific responses during milk fat synthesis.
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候选基因对反刍动物乳脂合成影响的荟萃分析。
乳脂含量是反刍动物的一项重要的商业多基因数量性状。近几十年来,越来越多的参与乳脂合成的基因通过全基因组关联研究被确定,并通过基因敲低或过表达等功能分析得到验证。然而,功能验证分析仅限于少数相关基因,产生的数据不足以充分了解乳脂合成中的许多不同基因和生物过程。为了对参与乳脂合成的基因进行全面评估,我们对81篇出版物中的1395个效应量进行了荟萃分析,其中包括137个基因,涵盖4种反刍动物。研究分析了候选基因的敲除/过表达会显著降低/增加靶基因(蛋白)和相关基因(蛋白)的表达,这些影响在物种间是一致的。然而,候选基因在不同乳脂合成途径中的敲低/过表达作用在不同物种之间有所不同。乳脂合成相关通路,SREBP-、PPAR-、JAK-AKT-和胰岛素通路分别对甘油三酯、脂滴、胆固醇和不饱和脂肪酸的合成影响最大。这些通路中的关键基因SREBPs (SREBP1、SREBF1)、ppar (PPARA、PPARD、PPARG)、JAK2、STAT5α和INSIGs (INSIG1和INSIG2)对甘油三酯、胆固醇、脂滴和不饱和脂肪酸的形成也有较大的调节作用。总的来说,我们的研究结果表明,乳脂合成受多种途径和许多不同基因的调节。需要进一步的研究来证实这些发现,并了解乳脂合成过程中物种和途径特异性反应的机制。
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来源期刊
Journal of Dairy Science
Journal of Dairy Science 农林科学-奶制品与动物科学
CiteScore
7.90
自引率
17.10%
发文量
784
审稿时长
4.2 months
期刊介绍: The official journal of the American Dairy Science Association®, Journal of Dairy Science® (JDS) is the leading peer-reviewed general dairy research journal in the world. JDS readers represent education, industry, and government agencies in more than 70 countries with interests in biochemistry, breeding, economics, engineering, environment, food science, genetics, microbiology, nutrition, pathology, physiology, processing, public health, quality assurance, and sanitation.
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