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有机物质积累的统一理论。

A unified theory for organic matter accumulation.

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089;

Ocean Biogeochemistry and Ecosystems, National Oceanography Centre, Southampton SO14 3ZH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2021 Feb 9;118(6). doi: 10.1073/pnas.2016896118.

Abstract

Organic matter constitutes a key reservoir in global elemental cycles. However, our understanding of the dynamics of organic matter and its accumulation remains incomplete. Seemingly disparate hypotheses have been proposed to explain organic matter accumulation: the slow degradation of intrinsically recalcitrant substrates, the depletion to concentrations that inhibit microbial consumption, and a dependency on the consumption capabilities of nearby microbial populations. Here, using a mechanistic model, we develop a theoretical framework that explains how organic matter predictably accumulates in natural environments due to biochemical, ecological, and environmental factors. Our framework subsumes the previous hypotheses. Changes in the microbial community or the environment can move a class of organic matter from a state of functional recalcitrance to a state of depletion by microbial consumers. The model explains the vertical profile of dissolved organic carbon in the ocean and connects microbial activity at subannual timescales to organic matter turnover at millennial timescales. The threshold behavior of the model implies that organic matter accumulation may respond nonlinearly to changes in temperature and other factors, providing hypotheses for the observed correlations between organic carbon reservoirs and temperature in past earth climates.

摘要

有机物质构成了全球元素循环的关键储库。然而,我们对有机物质动态及其积累的理解仍然不完整。为了解释有机物质的积累,提出了看似不同的假说:内在难降解基质的缓慢降解、浓度降低到抑制微生物消耗的程度,以及对附近微生物种群消耗能力的依赖。在这里,我们使用一个机械模型,为解释为什么有机物质会由于生化、生态和环境因素而在自然环境中可预测地积累,建立了一个理论框架。我们的框架包含了之前的假说。微生物群落或环境的变化可以使一类有机物质从功能上的顽固性状态转变为被微生物消费者消耗的状态。该模型解释了海洋中溶解有机碳的垂直分布,并将亚年时间尺度上的微生物活动与千年时间尺度上的有机物质周转联系起来。模型的阈值行为意味着有机物质的积累可能对温度和其他因素的变化呈非线性响应,为观察到的过去地球气候中有机碳库与温度之间的相关性提供了假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ed/8017682/3ac0edc0802b/pnas.2016896118fig01.jpg

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