好氧和厌氧原核生物的比较分析,以确定氧需求与基因-基因功能关联模式之间的相关性。

Yaming Lin, Hongwei Wu
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引用次数: 2

摘要

原核生物的活动是塑造环境的关键,也受环境的极大影响。随着基因组和宏基因组测序的实质性进展以及即将标准化的生态背景信息,以环境为中心的比较基因组学将补充以物种为中心的比较基因组学,阐明环境如何塑造和维持原核生物多样性。在本文中,我们报告了我们对原核生物基因组和生态性状的关联分析的初步研究——基因-基因功能关联模式与需氧量条件的关系。我们首先建立了一个随机模型来描述基因在染色体上的排列,并在此基础上量化了基因之间的功能关联。利用生物过程本体和KEGG通路注释验证了基因-基因功能关联测度。然后对有氧和厌氧生物进行学生t检验,以确定在两种不同的氧气需求条件下表现出不同功能关联模式的基因对。由于很难设计和实施生物学实验来验证那些由长期累积的基因组-环境相互作用产生的基因组-环境关联关系,我们最终进行计算验证,以确定基于基因-基因功能关联模式的生物体的需氧量条件是否可预测。本研究证明了某些基因-基因功能关联模式与原核生物的需氧量条件之间存在关联关系并具有重要意义,以及所采用的关联分析方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative analysis of aerobic and anaerobic prokaryotes to identify correlation between oxygen requirement and gene-gene functional association patterns.
Activities of prokaryotes are pivotal in shaping the environment, and are also greatly influenced by the environment. With the substantial progress in genome and metagenome sequencing and the about-to-be-standardized ecological context information, environment-centric comparative genomics will complement species-centric comparative genomics, illuminating how environments have shaped and maintained prokaryotic diversities. In this paper we report our preliminary studies on the association analysis of a particular duo of genomic and ecological traits of prokaryotes--gene-gene functional association patterns vs. oxygen requirement conditions. We first establish a stochastic model to describe gene arrangements on chromosomes, based on which the functional association between genes are quantified. The gene-gene functional association measures are validated using biological process ontology and KEGG pathway annotations. Student's t-tests are then performed on the aerobic and anaerobic organisms to identify those gene pairs that exhibit different functional association patterns in the two different oxygen requirement conditions. As it is difficult to design and conduct biological experiments to validate those genome-environment association relationships that have resulted from long-term accumulative genome-environment interactions, we finally conduct computational validations to determine whether the oxygen requirement condition of an organism is predictable based on gene-gene functional association patterns. The reported study demonstrates the existence and significance of the association relationships between certain gene-gene functional association patterns and oxygen requirement conditions of prokaryotes, as well as the effectiveness of the adopted methodology for such association analysis.
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