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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Biological nitrogen fixation: Rates, patterns and ecological controls in terrestrial ecosystems
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Biological nitrogen fixation: Rates, patterns and ecological controls in terrestrial ecosystems

机译:生物固氮:陆地生态系统的速率,模式和生态控制

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New techniques have identified a wide range of organisms with the capacity to carry out biological nitrogen fixation (BNF)-greatly expanding our appreciation of the diversity and ubiquity of N fixers-but our understanding of the rates and controls of BNF at ecosystem and global scales has not advanced at the same pace. Nevertheless, determining rates and controls of BNF is crucial to placing anthropogenic changes to the N cycle in context, and to understanding, predicting and managing many aspects of global environmental change. Here, we estimate terrestrial BNF for a pre-industrial world by combining information on N fluxes with 15N relative abundance data for terrestrial ecosystems. Our estimate is that pre-industrial N fixation was 58 (range of 40-100) TgN fixed yr21; adding conservative assumptions for geological N reduces our best estimate to 44 TgNyr21. This approach yields substantially lower estimates than most recent calculations; it suggests that the magnitude of human alternation of the N cycle is substantially larger than has been assumed.
机译:新技术已经发现了能够进行生物固氮(BNF)的各种生物,极大地扩展了我们对固氮剂多样性和普遍性的认识,但是我们对生态系统和全球范围内BNF的发生率和控制的了解并没有以相同的速度前进。然而,确定BNF的发生率和控制对于将人为的变化置于N循环的背景下,以及对理解,预测和管理全球环境变化的许多方面至关重要。在这里,我们通过结合N个通量的信息和15N个相对生态系统的相对丰度数据来估算工业化前世界的陆地BNF。我们的估计是工业化前的N固定为58(40-100)TgN固定的yr21。为地质N添加保守的假设会使我们的最佳估计值降至44 TgNyr21。与最近的计算相比,这种方法得出的估计值要低得多。这表明人类对N循环的轮换幅度比想象的要大得多。

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