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环境脂质组学:理解生物和生态系统对变化世界的反应。

Environmental lipidomics: understanding the response of organisms and ecosystems to a changing world.

机构信息

Department of Chemistry, University of Florida, 125 Buckman Drive, Gainesville, FL, 32611, USA.

Department of Environmental Health Sciences, School of Public Health, Yale University, New Haven, CT, 06510, USA.

出版信息

Metabolomics. 2020 Apr 19;16(5):56. doi: 10.1007/s11306-020-01665-3.

Abstract

BACKGROUND

Understanding the interaction between organisms and the environment is important for predicting and mitigating the effects of global phenomena such as climate change, and the fate, transport, and health effects of anthropogenic pollutants. By understanding organism and ecosystem responses to environmental stressors at the molecular level, mechanisms of toxicity and adaptation can be determined. This information has important implications in human and environmental health, engineering biotechnologies, and understanding the interaction between anthropogenic induced changes and the biosphere. One class of molecules with unique promise for environmental science are lipids; lipids are highly abundant and ubiquitous across nearly all organisms, and lipid profiles often change drastically in response to external stimuli. These changes allow organisms to maintain essential biological functions, for example, membrane fluidity, as they adapt to a changing climate and chemical environment. Lipidomics can help scientists understand the historical and present biofeedback processes in climate change and the biogeochemical processes affecting nutrient cycles. Lipids can also be used to understand how ecosystems respond to historical environmental changes with lipid signatures dating back to hundreds of millions of years, which can help predict similar changes in the future. In addition, lipids are direct targets of environmental stressors, for example, lipids are easily prone to oxidative damage, which occurs during exposure to most toxins.

AIM OF REVIEW

This is the first review to summarize the current efforts to comprehensively measure lipids to better understand the interaction between organisms and their environment. This review focuses on lipidomic applications in the arenas of environmental toxicology and exposure assessment, xenobiotic exposures and health (e.g., obesity), global climate change, and nutrient cycles. Moreover, this review summarizes the use of and the potential for lipidomics in engineering biotechnologies for the remediation of persistent compounds and biofuel production.

KEY SCIENTIFIC CONCEPT

With the preservation of certain lipids across millions of years and our ever-increasing understanding of their diverse biological roles, lipidomic-based approaches provide a unique utility to increase our understanding of the contemporary and historical interactions between organisms, ecosystems, and anthropogenically-induced environmental changes.

摘要

背景

理解生物与环境之间的相互作用对于预测和减轻气候变化等全球性现象的影响以及人为污染物的归宿、迁移和健康影响非常重要。通过了解生物和生态系统在分子水平上对环境胁迫的反应,可以确定毒性和适应的机制。这一信息在人类和环境健康、工程生物技术以及理解人为引起的变化与生物圈之间的相互作用方面具有重要意义。在具有独特应用前景的一类分子中,脂质是其中之一;脂质在几乎所有生物中都高度丰富且无处不在,并且脂质谱通常会因外部刺激而发生剧烈变化。这些变化使生物能够在适应不断变化的气候和化学环境的同时维持基本的生物功能,例如膜的流动性。脂质组学可以帮助科学家了解气候变化中的历史和当前生物反馈过程以及影响营养循环的生物地球化学过程。脂质也可用于了解生态系统如何应对历史环境变化,因为脂质特征可以追溯到数亿年前,这有助于预测未来的类似变化。此外,脂质是环境胁迫的直接靶点,例如,脂质容易受到氧化损伤,而这种损伤发生在接触大多数毒素时。

综述目的

这是第一篇综述,旨在全面评估脂质组学,以更好地了解生物与环境之间的相互作用。本综述重点介绍了脂质组学在环境毒理学和暴露评估、外来生物暴露与健康(如肥胖)、全球气候变化和营养循环等领域的应用。此外,本文还总结了脂质组学在持久性化合物修复和生物燃料生产等工程生物技术中的应用和潜力。

关键科学概念

由于某些脂质可以保存数百万年,并且我们对其多种生物学作用的理解不断加深,因此基于脂质组学的方法为增加我们对生物、生态系统与人为引起的环境变化之间当代和历史相互作用的理解提供了独特的效用。

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