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生物分子组成和收入由外在因素与 内源性节律的相互作用解释。

Biomolecular Composition and Revenue Explained by Interactions between Extrinsic Factors and Endogenous Rhythms of .

机构信息

Department of Environmental Science, Aarhus University, Frederiksborgvej 399, DK-4000 Roskilde, Denmark.

出版信息

Mar Drugs. 2019 Feb 10;17(2):107. doi: 10.3390/md17020107.

Abstract

This review provides a systematic overview of the spatial and temporal variations in the content of biomolecular constituents of on the basis of 34 currently-available scientific studies containing primary measurements. We demonstrate the potential revenue of seaweed production and biorefinery systems by compiling a product portfolio of high-value extract products. An investigation into the endogenous rhythms and extrinsic factors that impact the biomolecular composition of is presented, and key performance factors for optimizing seaweed production are identified. Besides the provisioning ecosystem service, we highlight the contribution of green-engineered seaweed production systems to the mitigation of the ongoing and historical anthropogenic disturbances of the climate balance and nutrient flows. We conclude that there are risks of mismanagement, and we stress the importance and necessity of creating an adaptive ecosystem-based management framework within a triple-helix partnership for balancing the utilization of ecosystem services and long-term resilience of aquatic environment.

摘要

这篇综述基于 34 项现有科学研究的原始测量数据,对 中生物分子成分的时空变化进行了系统概述。我们通过编制高价值提取物产品组合,展示了海藻生产和生物炼制系统的潜在收益。本文还探讨了影响 生物分子组成的内源性节律和外在因素,并确定了优化海藻生产的关键性能因素。除了提供生态系统服务外,我们还强调了绿色工程海藻生产系统对缓解当前和历史上人为干扰气候平衡和养分流动的贡献。我们得出的结论是存在管理不善的风险,并强调必须在三方合作关系内建立一个基于生态系统的适应性管理框架,以平衡生态系统服务的利用和水生环境的长期恢复力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb1/6409931/576e296aa0dd/marinedrugs-17-00107-g001.jpg

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