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用基因本体论描述先进生物燃料生产的遗传资源。

Genetic resources for advanced biofuel production described with the Gene Ontology.

机构信息

Department of Biochemistry, Virginia Polytechnic Institute and State University Blacksburg, VA, USA ; Virginia Bioinformatics Institute, Virginia Polytechnic Institute and State University Blacksburg, VA, USA.

European Molecular Biology Laboratory, European Bioinformatics Institute (EMBL-EBI), Wellcome Trust Genome Campus Cambridge, UK.

出版信息

Front Microbiol. 2014 Oct 10;5:528. doi: 10.3389/fmicb.2014.00528. eCollection 2014.

Abstract

Dramatic increases in research in the area of microbial biofuel production coupled with high-throughput data generation on bioenergy-related microbes has led to a deluge of information in the scientific literature and in databases. Consolidating this information and making it easily accessible requires a unified vocabulary. The Gene Ontology (GO) fulfills that requirement, as it is a well-developed structured vocabulary that describes the activities and locations of gene products in a consistent manner across all kingdoms of life. The Microbial ENergy processes Gene Ontology () project is extending the GO to include new terms to describe microbial processes of interest to bioenergy production. Our effort has added over 600 bioenergy related terms to the Gene Ontology. These terms will aid in the comprehensive annotation of gene products from diverse energy-related microbial genomes. An area of microbial energy research that has received a lot of attention is microbial production of advanced biofuels. These include alcohols such as butanol, isopropanol, isobutanol, and fuels derived from fatty acids, isoprenoids, and polyhydroxyalkanoates. These fuels are superior to first generation biofuels (ethanol and biodiesel esterified from vegetable oil or animal fat), can be generated from non-food feedstock sources, can be used as supplements or substitutes for gasoline, diesel and jet fuels, and can be stored and distributed using existing infrastructure. Here we review the roles of genes associated with synthesis of advanced biofuels, and at the same time introduce the use of the GO to describe the functions of these genes in a standardized way.

摘要

微生物生物燃料生产领域的研究急剧增加,加上与生物能源相关的微生物高通量数据的产生,导致科学文献和数据库中充斥着大量信息。要整合这些信息并使其易于访问,就需要一个统一的词汇表。基因本体论 (GO) 满足了这一要求,因为它是一个经过充分开发的结构化词汇表,以一致的方式描述了所有生命领域的基因产物的活动和位置。微生物能源过程基因本体论 () 项目正在扩展 GO,以包括描述生物能源生产中微生物过程的新术语。我们的努力已经向基因本体论添加了 600 多个与生物能源相关的术语。这些术语将有助于对来自不同能源相关微生物基因组的基因产物进行全面注释。微生物能源研究的一个备受关注的领域是微生物生产先进生物燃料。这些燃料包括丁醇、异丙醇、异丁醇等醇类,以及源自脂肪酸、异戊二烯和聚羟基烷酸酯的燃料。这些燃料优于第一代生物燃料(乙醇和生物柴油,由植物油或动物脂肪酯化而成),可以由非食用原料生产,可以作为汽油、柴油和喷气燃料的补充或替代品,并且可以使用现有的基础设施进行储存和分配。在这里,我们回顾了与合成先进生物燃料相关的基因的作用,同时介绍了使用 GO 以标准化方式描述这些基因的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2468/4193338/364dde26cd29/fmicb-05-00528-g001.jpg

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