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浮游生物生态系统模型对浮游动物摄食作用表述的敏感性

On the sensitivity of plankton ecosystem models to the formulation of zooplankton grazing.

机构信息

Laboratoire des Sciences de l'Environnement Marin (LEMAR), Université de Brest, Ifremer, IRD, IUEM, Brest, France.

Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California, United States of America.

出版信息

PLoS One. 2021 May 25;16(5):e0252033. doi: 10.1371/journal.pone.0252033. eCollection 2021.

Abstract

Model representations of plankton structure and dynamics have consequences for a broad spectrum of ocean processes. Here we focus on the representation of zooplankton and their grazing dynamics in such models. It remains unclear whether phytoplankton community composition, growth rates, and spatial patterns in plankton ecosystem models are especially sensitive to the specific means of representing zooplankton grazing. We conduct a series of numerical experiments that explicitly address this question. We focus our study on the form of the functional response to changes in prey density, including the formulation of a grazing refuge. We use a contemporary biogeochemical model based on continuum size-structured organization, including phytoplankton diversity, coupled to a physical model of the California Current System. This region is of particular interest because it exhibits strong spatial gradients. We find that small changes in grazing refuge formulation across a range of plausible functional forms drive fundamental differences in spatial patterns of plankton concentrations, species richness, pathways of grazing fluxes, and underlying seasonal cycles. An explicit grazing refuge, with refuge prey concentration dependent on grazers' body size, using allometric scaling, is likely to provide more coherent plankton ecosystem dynamics compared to classic formulations or size-independent threshold refugia. We recommend that future plankton ecosystem models pay particular attention to the grazing formulation and implement a threshold refuge incorporating size-dependence, and we call for a new suite of experimental grazing studies.

摘要

浮游生物结构和动态的模型表示对广泛的海洋过程具有影响。在这里,我们重点关注这些模型中浮游动物及其摄食动态的表示。浮游生物生态系统模型中浮游植物群落组成、增长率和空间格局是否特别容易受到浮游动物摄食具体表示方法的影响,目前尚不清楚。我们进行了一系列的数值实验,明确地解决了这个问题。我们的研究重点是功能反应对猎物密度变化的形式,包括摄食避难所的表述。我们使用基于连续体大小结构组织的当代生物地球化学模型,包括浮游植物多样性,并与加利福尼亚洋流系统的物理模型耦合。这个地区特别有趣,因为它表现出强烈的空间梯度。我们发现,在一系列合理的功能形式中,摄食避难所表述的微小变化会导致浮游生物浓度、物种丰富度、摄食通量途径和潜在季节性周期的空间格局产生根本差异。与经典表述或与大小无关的阈值避难所相比,基于大小依赖的、带有避难所猎物浓度依赖于捕食者体型的明确摄食避难所,可能会提供更一致的浮游生物生态系统动态。我们建议未来的浮游生物生态系统模型特别注意摄食表述,并实施包含大小依赖性的阈值避难所,并呼吁开展一系列新的摄食实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/184f/8148333/c7fdf6710452/pone.0252033.g001.jpg

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