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处于历史、生态与水文生物地球化学的交叉点:通过整合实现跨尺度的改进预测。

At the Nexus of History, Ecology, and Hydrobiogeochemistry: Improved Predictions across Scales through Integration.

作者信息

Stegen James C

机构信息

Pacific Northwest National Laboratory, Earth and Biological Sciences Directorate, Richland, Washington, USA.

出版信息

mSystems. 2018 Apr 10;3(2). doi: 10.1128/mSystems.00167-17. eCollection 2018 Mar-Apr.

Abstract

To improve predictions of ecosystem function in future environments, we need to integrate the ecological and environmental histories experienced by microbial communities with hydrobiogeochemistry across scales. A key issue is whether we can derive generalizable scaling relationships that describe this multiscale integration. There is a strong foundation for addressing these challenges. We have the ability to infer ecological history with null models and reveal impacts of environmental history through laboratory and field experimentation. Recent developments also provide opportunities to inform ecosystem models with targeted omics data. A major next step is coupling knowledge derived from such studies with multiscale modeling frameworks that are predictive under non-steady-state conditions. This is particularly true for systems spanning dynamic interfaces, which are often hot spots of hydrobiogeochemical function. We can advance predictive capabilities through a holistic perspective focused on the nexus of history, ecology, and hydrobiogeochemistry.

摘要

为了改进对未来环境中生态系统功能的预测,我们需要将微生物群落经历的生态和环境历史与跨尺度的水生生物地球化学整合起来。一个关键问题是我们能否得出描述这种多尺度整合的可推广的尺度关系。应对这些挑战有坚实的基础。我们有能力用零模型推断生态历史,并通过实验室和实地实验揭示环境历史的影响。最近的进展也为利用有针对性的组学数据为生态系统模型提供信息提供了机会。下一步的主要工作是将这些研究得出的知识与在非稳态条件下具有预测性的多尺度建模框架相结合。对于跨越动态界面的系统来说尤其如此,这些界面往往是水生生物地球化学功能的热点。我们可以通过关注历史、生态学和水生生物地球化学之间联系的整体视角来提高预测能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a14/5895879/9aea0742c704/sys0021822170001.jpg

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