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Bioremediation in marine ecosystems: a computational study combining ecological modeling and flux balance analysis

机译:海洋生态系统中的生物修复:结合生态建模和通量平衡分析的计算研究

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摘要

The pressure to search effective bioremediation methodologies for contaminated ecosystems has led to the large-scale identification of microbial species and metabolic degradation pathways. However, minor attention has been paid to the study of bioremediation in marine food webs and to the definition of integrated strategies for reducing bioaccumulation in species. We propose a novel computational framework for analysing the multiscale effects of bioremediation at the ecosystem level, based on coupling food web bioaccumulation models and metabolic models of degrading bacteria. The combination of techniques from synthetic biology and ecological network analysis allows the specification of arbitrary scenarios of contaminant removal and the evaluation of strategies based on natural or synthetic microbial strains. In this study, we derive a bioaccumulation model of polychlorinated biphenyls (PCBs) in the Adriatic food web, and we extend a metabolic reconstruction of Pseudomonas putida KT2440 (iJN746) with the aerobic pathway of PCBs degradation. We assess the effectiveness of different bioremediation scenarios in reducing PCBs concentration in species and we study indices of species centrality to measure their importance in the contaminant diffusion via feeding links. The analysis of the Adriatic sea case study suggests that our framework could represent a practical tool in the design of effective remediation strategies, providing at the same time insights into the ecological role of microbial communities within food webs.
机译:为受污染的生态系统寻找有效的生物修复方法的压力导致微生物种类和代谢降解途径的大规模鉴定。但是,对海洋食物网中生物修复的研究以及减少物种生物富集的综合策略的定义只给予了很少的关注。我们提出了一种新的计算框架,用于基于食物网生物蓄积模型和降解细菌的代谢模型耦合分析在生态系统水平上生物修复的多尺度影响。合成生物学和生态网络分析技术的结合,可以指定污染物去除的任意方案,并可以评估基于天然或合成微生物菌株的策略。在这项研究中,我们推导了亚得里亚海食物网中多氯联苯(PCBs)的生物蓄积模型,并通过PCBs降解的好氧途径扩展了恶臭假单胞菌KT2440(iJN746)的代谢重建。我们评估了不同生物修复方案在降低物种中PCBs浓度方面的有效性,并研究了物种中心度指标,以衡量它们在通过进料环节扩散污染物中的重要性。对亚得里亚海案例研究的分析表明,我们的框架可以代表设计有效补救策略的实用工具,同时提供对食物网中微生物群落生态作用的见解。

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