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硫酸盐还原菌氢营养代谢的数学模型

A Mathematical Model for the Hydrogenotrophic Metabolism of Sulphate-Reducing Bacteria.

作者信息

Smith Nick W, Shorten Paul R, Altermann Eric, Roy Nicole C, McNabb Warren C

机构信息

AgResearch, Ruakura Research Centre, Hamilton, New Zealand.

AgResearch, Grasslands Research Centre, Palmerston North, New Zealand.

出版信息

Front Microbiol. 2019 Jul 17;10:1652. doi: 10.3389/fmicb.2019.01652. eCollection 2019.

Abstract

Sulphate-reducing bacteria (SRB) are studied across a range of scientific fields due to their characteristic ability to metabolise sulphate and produce hydrogen sulphide, which can lead to significant consequences for human activities. Importantly, they are members of the human gastrointestinal microbial population, contributing to the metabolism of dietary and host secreted molecules found in this environment. The role of the microbiota in host digestion is well studied, but the full role of SRB in this process has not been established. Moreover, from a human health perspective, SRB have been implicated in a number of functional gastrointestinal disorders such as Irritable Bowel Syndrome and the development of colorectal cancer. To assist with the study of SRB, we present a mathematical model for the growth and metabolism of the well-studied SRB, in a closed system. Previous attempts to model SRB have resulted in complex or highly specific models that are not easily adapted to the study of SRB in different environments, such as the gastrointestinal tract. We propose a simpler, Monod-based model that allows for easy alteration of both key parameter values and the governing equations to enable model adaptation. To prevent any incorrect assumptions about the nature of SRB metabolic pathways, we structure the model to consider only the concentrations of initial and final metabolites in a pathway, which circumvents the current uncertainty around hydrogen cycling by SRB. We parameterise our model using experiments with varied initial substrate conditions, obtaining parameter values that compare well with experimental estimates in the literature. We then validate our model against four independent experiments involving with further variations to substrate availability. Further use of the model will be possible in a number of settings, notably as part of larger models studying the metabolic interactions between SRB and other hydrogenotrophic microbes in the human gastrointestinal tract and how this relates to functional disorders.

摘要

由于硫酸盐还原菌(SRB)具有代谢硫酸盐并产生硫化氢的独特能力,这可能对人类活动产生重大影响,因此在一系列科学领域中都对其进行了研究。重要的是,它们是人类胃肠道微生物群落的成员,有助于代谢该环境中发现的膳食和宿主分泌分子。微生物群在宿主消化中的作用已得到充分研究,但SRB在这一过程中的完整作用尚未明确。此外,从人类健康的角度来看,SRB与多种功能性胃肠疾病有关,如肠易激综合征和结直肠癌的发生。为了辅助SRB的研究,我们提出了一个在封闭系统中对经过充分研究的SRB的生长和代谢进行建模的数学模型。此前对SRB进行建模的尝试产生了复杂或高度特定的模型,这些模型不易适用于不同环境(如胃肠道)中SRB的研究。我们提出了一个更简单的基于莫诺德方程的模型,该模型允许轻松更改关键参数值和控制方程,以实现模型的适应性调整。为了避免对SRB代谢途径的性质做出任何错误假设,我们构建模型时仅考虑途径中初始和最终代谢物的浓度,这规避了目前SRB氢循环方面的不确定性。我们使用不同初始底物条件的实验对模型进行参数化,得到的参数值与文献中的实验估计值比较吻合。然后,我们针对涉及底物可用性进一步变化的四个独立实验对模型进行验证。该模型在许多情况下都可以进一步应用,特别是作为研究SRB与人类胃肠道中其他氢营养微生物之间代谢相互作用以及这与功能障碍如何相关的更大模型的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c278/6653664/f554af0ad882/fmicb-10-01652-g001.jpg

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