期刊论文详细信息
Aquatic Microbial Ecology
Predicting microbial nitrate reduction pathways in coastal sediments
Joseph J. Vallino1  Christopher K. Algar1 
关键词: Denitrification;    Anammox;    DNRA;    Diagenesis;    Maximum entropy production;    Biogeochemistry;    Ecosystem modeling;   
DOI  :  10.3354/ame01678
学科分类:生物科学(综合)
来源: Inter-Research
PDF
【 摘 要 】

ABSTRACT: We present an ecosystem model that describes the biogeochemistry of a sediment nitrate reducing microbial community. In the model, the microbial community is represented as a distributed metabolic network. Biogeochemical pathways are controlled through the synthesis and allocation of biological structure that serves to catalyze each process. Allocation is determined by way of a thermodynamically constrained optimization according to the principle of maximum entropy production (MEP). According to the MEP principle, ecosystems will organize so as to maximize the dissipation of free energy based upon the available resources (nutrients and electron donors and acceptors). In the model, 3 nitrate reduction pathways, viz. heterotrophic denitrification, anammox, and dissimilatory nitrate reduction to ammonium, compete for electron acceptors (nitrate and nitrite). The model predicts switches in the dominant nitrate cycling pathways based upon the ratio of carbon to nitrate supply. An advantage of this approach over a traditional organism-centric kinetic approach is that the Monod growth parameters, maximum uptake rate (νmax), and half saturation (kM) constants are determined during the optimization procedure as opposed to parameters specified a priori. Such a model is therefore useful for applications where these kinetic parameters are unknown and difficult to measure, such as the marine subsurface, or when ecosystems undergo large-scale environmental perturbations resulting in shifts in the dominant organisms.

【 授权许可】

Unknown   

【 预 览 】
附件列表
Files Size Format View
RO201911300493663ZK.pdf 1266KB PDF download
  文献评价指标  
  下载次数:11次 浏览次数:17次