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评估区域海洋生态模型中动态病毒过程的显式表达。

Assessment of Explicit Representation of Dynamic Viral Processes in Regional Marine Ecological Models.

机构信息

State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University, Xiamen 361102, China.

出版信息

Viruses. 2022 Jun 30;14(7):1448. doi: 10.3390/v14071448.

Abstract

Viruses, the most abundant microorganisms in the ocean, play important roles in marine ecosystems, mainly by killing their hosts and contributing to nutrient recycling. However, in models simulating ecosystems in real marine environments, the virus-mediated mortality (VMM) rates of their hosts are implicitly represented by constant parameters, thus ignoring the dynamics caused by interactions between viruses and hosts. Here, we construct a model explicitly representing marine viruses and the VMM rates of major hosts, heterotrophic bacteria, and apply it to two sites in the oligotrophic North Pacific and the more productive Arabian Sea. The impacts of the viral processes were assessed by comparing model results with the viral processes enabled and disabled. For reliable assessments, a data assimilation method was used to objectively optimize the model parameters in each run. The model generated spatiotemporally variable VMM rates, generally decreasing in the subsurface but increasing at the surface. Although the dynamics introduced by viruses could be partly stabilized by the ecosystems, they still caused substantial changes to the bacterial abundance, primary production and carbon export, with the changes greater at the more productive site. Our modeling experiments reveal the importance of explicitly simulating dynamic viral processes in marine ecological models.

摘要

病毒是海洋中最丰富的微生物,它们在海洋生态系统中发挥着重要作用,主要通过杀死宿主和促进营养物质循环来实现。然而,在模拟真实海洋环境中生态系统的模型中,病毒介导的宿主死亡率(VMM)率是通过常数参数隐含表示的,因此忽略了病毒和宿主之间相互作用引起的动态变化。在这里,我们构建了一个明确表示海洋病毒和主要宿主(异养细菌)的 VMM 率的模型,并将其应用于营养贫乏的北太平洋和生产力较高的阿拉伯海的两个站点。通过比较启用和禁用病毒过程的模型结果来评估病毒过程的影响。为了进行可靠的评估,使用数据同化方法在每次运行中客观地优化模型参数。该模型生成了时空变化的 VMM 率,通常在次表层下降,但在表面上升。尽管病毒引起的动力学可以被生态系统部分稳定,但它们仍然对细菌丰度、初级生产力和碳输出产生了实质性的影响,在生产力较高的站点变化更大。我们的建模实验揭示了在海洋生态模型中明确模拟动态病毒过程的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6527/9324674/0881463f4394/viruses-14-01448-g0A1.jpg

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