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Individual-based dynamic energy budget modelling of earthworm life-histories in the context of competition

机译:竞争背景下蚯蚓生命历史的个体动态能量预算建模

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In the environmental risk assessment of chemicals, ecological modelling can facilitate the quantification of specific protection goals, for instance by the extrapolation of untested situations from toxicity test results. In particular, individual-based models (IBMs) are gaining resonance in the regulatory community as a mean to predict how populations perform under environmental perturbation. In this regard, the hope is that standardised or general designs will increase the applicability and acceptance of model based risk assessments. Strong moves in the direction of generalised IBM designs have been made based on metabolic theories such as the dynamic energy budget (DEB) theory. Here, we parameterise the standard DEB model for the earthworm Eisenia fetida and test the individual-based DEB model by comparing predictions with published data on life-histories measured for individual worms and populations. Overall, the comparison showed good agreement between the simulations and the data, suggesting that the standard DEB model, more precisely DEBs 'kappa-rule', characterizing the energy partitioning between somatic and reproductive processes, is applicable to earthworms. The parametrized model is able to predict growth and reproduction for different food quality and availability.
机译:在化学品的环境风险评估中,生态建模可以促进特定保护目标的量化,例如通过从毒性测试结果的外推的未经研究中的情况。特别地,基于个体的模型(IBMS)在监管社区中获得共振,作为预测人口在环境扰动下的表现方式。在这方面,希望是标准化或一般设计将增加基于模型的风险评估的适用性和接受。通过诸如动态能源预算(DEB)理论的代谢理论,对广泛的IBM设计方向上进行了强劲的移动。在这里,我们将蚯蚓Eisenia fetida的标准DEB模型参数化,并通过将具有关于个体蠕虫和人群的生命历史数据的预测进行比较来测试基于个人的DEB模型。总体而言,比较显示了模拟与数据之间的良好一致性,表明标准的DEB模型,更准确地说,表征体细胞和生殖过程之间的能量分区,适用于蚯蚓。参数化模型能够预测不同食物质量和可用性的增长和繁殖。

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