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A systems biology approach for modeling microbiomes using split graphs

机译:使用分裂图对微生物群落建模的系统生物学方法

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With the recent advances in sequencing technology, researchers now have opportunities to study microbiomes associated with various environments. Recent studies have shown that the composition of microbiomes in our bodies and our environments play a significant role in our health. For example, 90% of human DNA is composed of bacterial microbiomes. In this study, we propose a systems biology approach using split graphs to analyze the composition of microbiomes and the impact of such composition on the health and growth of organisms living in associated environments. We focus on a case study related to the composition of microbiomes in fish guts and its impact on various growth parameters for three types of fish. The proposed model explores features in the aquatic ecosystem including correlations among its microorganisms and their abundance levels. The results of the study show that single or groups of bacteria are significantly associated with multiple growth phenotypes in different gut portions of the fish. We also identify bacterial clusters that provide new insight to functional relevance of these bacteria and their contribution to the fish gut microbial ecosystem.
机译:随着测序技术的最新发展,研究人员现在有机会研究与各种环境相关的微生物组。最近的研究表明,人体和环境中微生物群落的组成对我们的健康起着重要作用。例如,人类DNA的90%由细菌微生物组组成。在这项研究中,我们提出了一种系统生物学方法,该方法使用分裂图来分析微生物群落的组成以及这种组成对生活在相关环境中的生物的健康和生长的影响。我们专注于一个案例研究,该案例研究了鱼肠中微生物群落的组成及其对三种鱼的各种生长参数的影响。提出的模型探索了水生生态系统的特征,包括其微生物与其丰富度之间的相互关系。研究结果表明,单个或一组细菌与鱼类不同肠道部分的多种生长表型显着相关。我们还确定了细菌簇,它们为这些细菌的功能相关性及其对鱼肠道微生物生态系统的贡献提供了新的见识。

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