基因共表达网络分析揭示了肾周脂肪组织是绵羊产前营养不良的重要靶点。

IF 2.5 4区 生物学 Q3 CELL BIOLOGY
Physiological genomics Pub Date : 2023-09-01 Epub Date: 2023-07-17 DOI:10.1152/physiolgenomics.00128.2022
Sharmila Ahmad, Markus Hodal Drag, Suraya Mohamad Salleh, Zexi Cai, Mette Olaf Nielsen
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引用次数: 0

摘要

我们之前已经证明,绵羊出生前和出生后早期营养不良会导致成年后脂肪形态特征、代谢结果和转录组的仓库和性别特异性变化,肾周(PER)是主要靶点,其次是皮下(SUB)脂肪组织。我们旨在鉴定SUB和PER中的共表达基因和枢纽基因,以确定有助于脂肪相关表型结果的早期营养规划的潜在分子机制。使用加权基因共表达网络分析,使用具有不同出生前和出生后早期营养史的雄性和雌性成年绵羊的SUB和PER的转录组来构建可能与出生前和产后早期营养史和表型性状功能相关的共表达基因网络。PER的模块显示了与两性产前营养相关的细胞周期调节、基因表达、跨膜转运和代谢过程的富集。在SUB(仅限男性)中,富含二磷酸腺苷的代谢和发育模块与产前营养相关。PER中发现了性别特异性模块富集,如男性网络中的染色质修饰,但女性网络中的组蛋白修饰以及线粒体和氧化磷酸化相关功能。这些性别特异性模块与产前营养和脂肪细胞大小分布模式相关。我们的研究结果表明,与SUB相比,PER是产前营养不良的主要目标,SUB只起了很小的作用。基因表达和细胞周期的产前编程,可能通过表观遗传学修饰,可能是观察到的成年男女PER可扩展性和脂肪细胞大小分布模式变化的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gene coexpression network analysis reveals perirenal adipose tissue as an important target of prenatal malnutrition in sheep.

We have previously demonstrated that pre- and early postnatal malnutrition in sheep induced depot- and sex-specific changes in adipose morphological features, metabolic outcomes, and transcriptome in adulthood, with perirenal (PER) as the major target followed by subcutaneous (SUB) adipose tissue. We aimed to identify coexpressed and hub genes in SUB and PER to identify the underlying molecular mechanisms contributing to the early nutritional programming of adipose-related phenotypic outcomes. Transcriptomes of SUB and PER of male and female adult sheep with different pre- and early postnatal nutrition histories were used to construct networks of coexpressed genes likely to be functionally associated with pre- and early postnatal nutrition histories and phenotypic traits using weighted gene coexpression network analysis. The modules from PER showed enrichment of cell cycle regulation, gene expression, transmembrane transport, and metabolic processes associated with both sexes' prenatal nutrition. In SUB (only males), a module of enriched adenosine diphosphate metabolism and development correlated with prenatal nutrition. Sex-specific module enrichments were found in PER, such as chromatin modification in the male network but histone modification and mitochondria- and oxidative phosphorylation-related functions in the female network. These sex-specific modules correlated with prenatal nutrition and adipocyte size distribution patterns. Our results point to PER as a primary target of prenatal malnutrition compared to SUB, which played only a minor role. The prenatal programming of gene expression and cell cycle, potentially through epigenetic modifications, might be underlying mechanisms responsible for observed changes in PER expandability and adipocyte-size distribution patterns in adulthood in both sexes.

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来源期刊
Physiological genomics
Physiological genomics 生物-生理学
CiteScore
6.10
自引率
0.00%
发文量
46
审稿时长
4-8 weeks
期刊介绍: The Physiological Genomics publishes original papers, reviews and rapid reports in a wide area of research focused on uncovering the links between genes and physiology at all levels of biological organization. Articles on topics ranging from single genes to the whole genome and their links to the physiology of humans, any model organism, organ, tissue or cell are welcome. Areas of interest include complex polygenic traits preferably of importance to human health and gene-function relationships of disease processes. Specifically, the Journal has dedicated Sections focused on genome-wide association studies (GWAS) to function, cardiovascular, renal, metabolic and neurological systems, exercise physiology, pharmacogenomics, clinical, translational and genomics for precision medicine, comparative and statistical genomics and databases. For further details on research themes covered within these Sections, please refer to the descriptions given under each Section.
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