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Bioinformatics for Marine Products: An Overview of Resources Bottlenecks and Perspectives

机译:海产品生物信息学:资源瓶颈和观点概述

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摘要

The sea represents a major source of biodiversity. It exhibits many different ecosystems in a huge variety of environmental conditions where marine organisms have evolved with extensive diversification of structures and functions, making the marine environment a treasure trove of molecules with potential for biotechnological applications and innovation in many different areas. Rapid progress of the omics sciences has revealed novel opportunities to advance the knowledge of biological systems, paving the way for an unprecedented revolution in the field and expanding marine research from model organisms to an increasing number of marine species. Multi-level approaches based on molecular investigations at genomic, metagenomic, transcriptomic, metatranscriptomic, proteomic, and metabolomic levels are essential to discover marine resources and further explore key molecular processes involved in their production and action. As a consequence, omics approaches, accompanied by the associated bioinformatic resources and computational tools for molecular analyses and modeling, are boosting the rapid advancement of biotechnologies. In this review, we provide an overview of the most relevant bioinformatic resources and major approaches, highlighting perspectives and bottlenecks for an appropriate exploitation of these opportunities for biotechnology applications from marine resources.
机译:海洋是生物多样性的主要来源。它在各种各样的环境条件下展现出许多不同的生态系统,在这些环境条件下,海洋生物的进化具有广泛的结构和功能,使海洋环境成为分子的宝库,在许多不同领域具有生物技术应用和创新的潜力。组学科学的飞速发展揭示了提高生物系统知识的新机遇,为该领域前所未有的革命铺平了道路,并将海洋研究从模型生物扩展到越来越多的海洋物种。基于基因组,宏基因组学,转录组学,转录组学,蛋白质组学和代谢组学水平的分子研究的多层次方法对于发现海洋资源并进一步探索参与其生产和行动的关键分子过程至关重要。因此,组学方法以及相关的生物信息学资源和用于分子分析和建模的计算工具,正在推动生物技术的快速发展。在本文中,我们概述了最相关的生物信息资源和主要方法,重点介绍了从海洋资源中适当利用这些机会进行生物技术应用的观点和瓶颈。

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