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多组学方法与辐射对齿鲸脂质代谢的影响

Multi-Omics Approaches and Radiation on Lipid Metabolism in Toothed Whales.

作者信息

Senevirathna Jayan D M, Asakawa Shuichi

机构信息

Laboratory of Aquatic Molecular Biology and Biotechnology, Department of Aquatic Bioscience, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan.

Department of Animal Science, Faculty of Animal Science and Export Agriculture, Uva Wellassa University, Badulla 90000, Sri Lanka.

出版信息

Life (Basel). 2021 Apr 20;11(4):364. doi: 10.3390/life11040364.

Abstract

Lipid synthesis pathways of toothed whales have evolved since their movement from the terrestrial to marine environment. The synthesis and function of these endogenous lipids and affecting factors are still little understood. In this review, we focused on different omics approaches and techniques to investigate lipid metabolism and radiation impacts on lipids in toothed whales. The selected literature was screened, and capacities, possibilities, and future approaches for identifying unusual lipid synthesis pathways by omics were evaluated. Omics approaches were categorized into the four major disciplines: lipidomics, transcriptomics, genomics, and proteomics. Genomics and transcriptomics can together identify genes related to unique lipid synthesis. As lipids interact with proteins in the animal body, lipidomics, and proteomics can correlate by creating lipid-binding proteome maps to elucidate metabolism pathways. In lipidomics studies, recent mass spectroscopic methods can address lipid profiles; however, the determination of structures of lipids are challenging. As an environmental stress, the acoustic radiation has a significant effect on the alteration of lipid profiles. Radiation studies in different omics approaches revealed the necessity of multi-omics applications. This review concluded that a combination of many of the omics areas may elucidate the metabolism of lipids and possible hazards on lipids in toothed whales by radiation.

摘要

齿鲸的脂质合成途径自其从陆地环境迁移到海洋环境后就已经进化。这些内源性脂质的合成、功能及其影响因素仍鲜为人知。在这篇综述中,我们聚焦于不同的组学方法和技术,以研究齿鲸的脂质代谢以及辐射对脂质的影响。我们筛选了所选文献,并评估了通过组学鉴定异常脂质合成途径的能力、可能性及未来方法。组学方法可分为四大主要学科:脂质组学、转录组学、基因组学和蛋白质组学。基因组学和转录组学可以共同鉴定与独特脂质合成相关的基因。由于脂质在动物体内与蛋白质相互作用,脂质组学和蛋白质组学可以通过创建脂质结合蛋白质组图谱来关联,以阐明代谢途径。在脂质组学研究中,最近的质谱方法可以分析脂质谱;然而,脂质结构的确定具有挑战性。作为一种环境压力,声辐射对脂质谱的改变有显著影响。不同组学方法的辐射研究揭示了多组学应用的必要性。这篇综述得出结论,许多组学领域的结合可能阐明齿鲸脂质的代谢以及辐射对脂质可能造成的危害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad1a/8074237/54d483273ada/life-11-00364-g001.jpg

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