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正常和酸中毒瘤胃组织中牛代谢网络的重建与分析

Reconstruction and Analysis of Cattle Metabolic Networks in Normal and Acidosis Rumen Tissue.

作者信息

Gholizadeh Maryam, Fayazi Jamal, Asgari Yazdan, Zali Hakimeh, Kaderali Lars

机构信息

Department of Animal Science, Faculty of Animal Science and Food Technology, Agricultural Sciences and Natural Resources University of Khuzestan, Mollasani, Ahvaz 6341773637, Iran.

Department of Medical Biotechnology, School of Advanced Technologies in Medicine, Tehran University of Medical Sciences, Tehran 1416753955, Iran.

出版信息

Animals (Basel). 2020 Mar 11;10(3):469. doi: 10.3390/ani10030469.

Abstract

The objective of this study was to develop a system-level understanding of acidosis biology. Therefore, the genes expression differences between the normal and acidosis rumen epithelial tissues were first examined using the RNA-seq data in order to understand the molecular mechanisms involved in the disease and then their corresponding metabolic networks constructed. A number of 1074 genes, 978 isoforms, 1049 transcription start sites (TSS), 998 coding DNA sequence (CDS) and 2 promoters were identified being differentially expressed in the rumen tissue between the normal and acidosis samples ( < 0.05). The functional analysis of 627 up-regulated genes revealed their involvement in ion transmembrane transport, filament organization, regulation of cell adhesion, regulation of the actin cytoskeleton, ATP binding, glucose transmembrane transporter activity, carbohydrate binding, growth factor binding and cAMP metabolic process. Additionally, 111 differentially expressed enzymes were identified between the rumen epithelial tissue of the normal and acidosis steers with 46 up-regulated and 65 down-regulated ones in the acidosis group. The pathways and reactions analyses associated with the up-regulated enzymes indicate that most of these enzymes are involved in the fatty acid metabolism, biosynthesis of amino acids, pyruvate and carbon metabolism while most of the down-regulated ones are involved in purine and pyrimidine, vitamin B6 and antibiotics metabolisms. The degree distribution of both metabolic networks follows a power-law one, hence displaying a scale-free property. The top 15 hub metabolites were determined in the acidosis metabolic network with most of them involved in the fatty acid oxidation, VFA biosynthesis, amino acid biogenesis and glutathione metabolism which plays an important role in the stress condition. The limitations of this study were low number of animals and using only epithelial tissue (ventral sac) for RNA-seq.

摘要

本研究的目的是建立对酸中毒生物学的系统层面理解。因此,首先利用RNA测序数据检测正常和酸中毒瘤胃上皮组织之间的基因表达差异,以了解该疾病涉及的分子机制,然后构建它们相应的代谢网络。在正常和酸中毒样本的瘤胃组织中,鉴定出1074个基因、978个异构体、1049个转录起始位点(TSS)、998个编码DNA序列(CDS)和2个启动子存在差异表达(<0.05)。对627个上调基因的功能分析表明,它们参与离子跨膜运输、细丝组织、细胞黏附调节、肌动蛋白细胞骨架调节、ATP结合、葡萄糖跨膜转运蛋白活性、碳水化合物结合、生长因子结合和cAMP代谢过程。此外,在正常和酸中毒阉牛的瘤胃上皮组织之间鉴定出111种差异表达的酶,酸中毒组中有46种上调和65种下调。与上调酶相关的途径和反应分析表明,这些酶大多数参与脂肪酸代谢、氨基酸生物合成、丙酮酸和碳代谢,而大多数下调的酶参与嘌呤和嘧啶、维生素B6和抗生素代谢。两个代谢网络的度分布均遵循幂律分布,因此具有无标度特性。在酸中毒代谢网络中确定了前15个枢纽代谢物,其中大多数参与脂肪酸氧化、挥发性脂肪酸生物合成、氨基酸生物合成和谷胱甘肽代谢,这些在应激条件下起重要作用。本研究的局限性在于动物数量较少,且仅使用上皮组织(腹囊)进行RNA测序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbc7/7142512/491d71f923e4/animals-10-00469-g001.jpg

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