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四个发育阶段中国本土品种宁乡猪肌肉lncRNA和mRNA的综合分析

Integrated analysis of muscle lncRNA and mRNA of Chinese indigenous breed Ningxiang pig in four developmental stages.

作者信息

Chen Wenwu, Yang Fang, Liufu Sui, Li Zhi, Gong Yan, Ma Haiming

机构信息

College of Animal Science and Technology, Hunan Agricultural University, Changsha, Hunan, China.

Key Laboratory of Livestock and Poultry Resources Evaluation and Utilization, Ministry of Agriculture and Rural Affairs, Changsha, China.

出版信息

Front Vet Sci. 2024 Oct 21;11:1465389. doi: 10.3389/fvets.2024.1465389. eCollection 2024.

Abstract

Meat and its derivatives serve as crucial sources of protein, vitamins, minerals, and other essential nutrients for humans. Pork stands as China's primary animal-derived food product consumed widely across diverse dietary structures; evaluating intramuscular fat content becomes pivotal in assessing its quality standards. Nonetheless, the intricate molecular mechanisms governing intramuscular fat deposition remain elusive. Our study utilized sequencing technology to scrutinize longitudinal development stages within Ningxiang pig's longest dorsal muscles aiming to unravel these underlying mechanisms. In three distinct comparisons (30d vs. 90d, 90d vs. 150d and 150d vs. 210d) there were 578, 1,000 and 3,238 differentially expressed mRNA, along with 16, 158 and 85 lncRNAs were identified. STEM analysis unveiled six enriched model profiles for lncRNAs while seven such profiles emerged for mRNAs; notably, multiple shared model profiles existed between both RNA types. Enriched analysis highlighted numerous genes from mRNA profile8 and lncRNA profile7 significantly associated with pathways linked to fat deposition. Weight Gene Co-Expression Network Analysis (WGCNA) revealed that differential expression modules (DMEs) & differential expression lncRNAs primarily clustered within cyan, dark slate blue and pale turquoise modules. Furthermore, target genes PKD2 (MSTRG21592.MTRSG8859 and MTRSG18175), COL5A1 (MTRSG9969 and MTRSG180) and SOX13 (MTRSG21592 and MTRSG9088) as core components all intricately tied into processes related to fat deposition. This study lays the groundwork for deeper exploration into the molecular mechanisms underlying LDM fat deposition traits, and it also presents candidate genes for future molecular marker-assisted breeding.

摘要

肉类及其衍生物是人类蛋白质、维生素、矿物质和其他必需营养素的重要来源。猪肉是中国主要的动物性食品,在各种饮食结构中广泛消费;评估肌内脂肪含量对于评估其质量标准至关重要。然而,肌内脂肪沉积的复杂分子机制仍不清楚。我们的研究利用测序技术仔细研究了宁乡猪最长背肌的纵向发育阶段,旨在揭示这些潜在机制。在三个不同的比较(30天与90天、90天与150天以及150天与210天)中,分别鉴定出578个、1000个和3238个差异表达的mRNA,以及16个、158个和85个lncRNA。STEM分析揭示了lncRNA的六个富集模型图谱,而mRNA有七个这样的图谱;值得注意的是,两种RNA类型之间存在多个共享模型图谱。富集分析突出了来自mRNA图谱8和lncRNA图谱7的许多基因,这些基因与脂肪沉积相关途径显著相关。加权基因共表达网络分析(WGCNA)表明,差异表达模块(DME)和差异表达lncRNA主要聚集在青色、深 slate 蓝色和浅绿松石色模块中。此外,作为核心成分的靶基因PKD2(MSTRG21592.MTRSG8859和MTRSG18175)、COL5A1(MTRSG9969和MTRSG180)和SOX13(MTRSG21592和MTRSG9088)都与脂肪沉积相关过程密切相关。本研究为深入探索LDM脂肪沉积性状的分子机制奠定了基础,也为未来分子标记辅助育种提供了候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f99/11533148/3268c00a4656/fvets-11-1465389-g001.jpg

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