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Inefficient microbial production of refractory dissolved organic matter in the ocean

机译:海洋中难处理的难溶性有机物的微生物生产效率低下

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Dissolved organic matter (DOM) in the oceans constitutes a major carbon pool involved in global biogeochemical cycles. More than 96% of the marine DOM resists microbial degradation for thousands of years. The composition of this refractory DOM (RDOM) exhibits a molecular signature ubiquitously detected in the deep oceans. Surprisingly efficient microbial transformation of labile into stable forms of DOM has been shown previously, implying that microorganisms apparently produce far more RDOM than needed to sustain the global pool. Here we show, by assessing the microbial formation and transformation of DOM in unprecedented molecular detail for 3 years, that most of the microbial DOM is different from RDOM in the ocean. Only <0.4% of the net community production is channelled into a form of DOM that is undistinguishable from oceanic RDOM. Our study provides a molecular background for global models on the production, turnover and accumulation of marine DOM.
机译:海洋中的溶解有机物(DOM)构成了全球生物地球化学循环中的主要碳库。数千年来,超过96%的海洋DOM抵抗微生物降解。这种难治性DOM(RDOM)的成分在深海中普遍发现了分子标记。先前已显示出令人惊讶的有效微生物将不稳定分子转化为稳定形式的DOM的可能性,这暗示着微生物产生的RDOM显然远远超过维持全球库所需的RDOM。在这里,我们通过评估微生物以前所未有的分子方式详细描述了DOM的形成和转化,表明3年间,大多数微生物DOM与海洋中的RDOM不同。只有不到0.4%的净社区生产被引导到与海洋RDOM不能区分开的DOM形式。我们的研究为海洋DOM生产,周转和积累的全球模型提供了分子背景。

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