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Cable Bacteria Control Iron-Phosphorus Dynamics in Sediments of a Coastal Hypoxic Basin

机译:沿海低氧盆地沉积物中的细菌控制铁磷动力学

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摘要

Phosphorus is an essential nutrient for life. The release of phosphorus from sediments is critical in sustaining phytoplankton growth in many aquatic systems and is pivotal to eutrophication and the development of bottom water hypoxia. Conventionally, sediment phosphorus release is thought to be controlled by changes in iron oxide reduction driven by variations in external environmental factors, such as organic matter input and bottom water oxygen. Here, we show that internal shifts in microbial communities, and specifically the population dynamics of cable bacteria, can also induce strong seasonality in sedimentary iron-phosphorus dynamics. Field observations in a seasonally hypoxic coastal basin demonstrate that the long-range electrogenic metabolism of cable bacteria leads to a dissolution of iron sulfides in winter and spring. Subsequent oxidation of the mobilized ferrous iron with manganese oxides results in a large stock of iron-oxide-bound phosphorus below the oxic zone. In summer, when bottom water hypoxia develops and cable bacteria are undetectable, the phosphorus associated with these iron oxides is released, strongly increasing phosphorus availability in the water column. Future research should elucidate whether formation of iron-oxide-bound phosphorus driven by cable bacteria, as observed in this study, contributes to the seasonality in iron-phosphorus cycling in aquatic sediments worldwide.
机译:磷是生命必不可少的营养素。从沉积物中释放磷对维持许多水生系统中浮游植物的生长至关重要,并且对富营养化和底部缺氧的发展至关重要。传统上,沉积物磷的释放被认为是受外部环境因素(例如有机物输入和底部水氧)变化驱动的氧化铁还原变化的控制。在这里,我们表明微生物群落的内部变化,特别是电缆细菌的种群动态,也可以在沉积铁磷动力学中引起强烈的季节性变化。在一个季节性缺氧的沿海盆地进行的野外观察表明,电缆细菌的长期电代谢会导致冬季和春季溶解硫化铁。随后,用氧化锰将动员的二价铁氧化,导致在氧化区以下有大量的铁氧化物结合的磷储备。在夏季,当底部缺氧发生并且无法检测到电缆细菌时,与这些铁氧化物相关的磷就会释放出来,从而大大增加了水柱中的磷利用率。未来的研究应阐明,如本研究中所观察到的那样,由电缆细菌驱动的与铁氧化物结合的磷的形成是否有助于全球水生沉积物中铁磷循环的季节性。

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  • 来源
    《Environmental Science & Technology》 |2016年第3期|1227-1233|共7页
  • 作者单位

    Department of Earth Sdences, Geochemistry, Faculty of Geosciences, Utrecht University, Utrecht, The Netherlands;

    Department of Ecosystem Studies, Royal Netherlands Institute for Sea Research, Yerseke, The Netherlands;

    Department of Ecosystem Studies, Royal Netherlands Institute for Sea Research, Yerseke, The Netherlands;

    Center for Geomicrobiology and Section for Microbiology, Department of Bioscience, Aarhus University, Aarhus, Denmark;

    Department of Earth Sdences, Geochemistry, Faculty of Geosciences, Utrecht University, Utrecht, The Netherlands;

    Department of Earth Sdences, Geochemistry, Faculty of Geosciences, Utrecht University, Utrecht, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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