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Effects of organic matter and low oxygen on the mycobenthos in a coastal lagoon

机译:有机质和低氧对沿海泻湖霉菌的影响

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摘要

Fungi living in sediments ('mycobenthos') are hypothesized to play a role in the degradation of organic matter deposited at the land-sea interface, but the environmental factors influencing the mycobenthos are poorly understood. We used mock community calibrated Illumina sequencing to show that the mycobenthos community structure in a coastal lagoon was significantly changed after exposure to a lignocellulose extract and subsequent development of benthic anoxia over a relatively short (10 h) incubation. Saprotrophic taxa dominated and were selected for under benthic anoxia, specifically Aquamyces (Chytridiomycota) and Orbilia (Ascomycota), implicating these genera as important benthic saprotrophs. Protein encoding genes involved in energy and biomass production from Fungi and the fungal-analogue group Labyrinthulomycetes had the highest increase in expression with the added organic matter compared with all other groups, indicating that lignocellulose stimulates metabolic activity in the mycobenthos. Flavobacteria dominated the active bacterial community that grew rapidly with the lignocellulose extract and crashed sharply upon O-2 depletion. Our findings indicate that the diversity, activity and trophic potential of the mycobenthos changes rapidly in response to organic matter and decreasing O-2 concentrations, which together with heterotrophic Flavobacteria, undergo 'boom and bust' dynamics during lignocellulose degradation in estuarine ecosystems.
机译:住在沉积物(“mycobenthos”)真菌假设发挥沉积在陆海界面有机物的降解作用,但影响mycobenthos环境因素了解甚少。我们使用模拟社区校准Illumina测序表明,在沿海泻湖mycobenthos群落结构曝光后显著改为木质纤维素提取物和海底缺氧的后续发展在相对较短(10小时)孵化。 Saprotrophic类群为主,被选择用于下底栖缺氧症,特别Aquamyces(壶菌门)和Orbilia(子囊菌),暗示这些属作为重要底栖saprotrophs。涉及从真菌能量和生物量产生和真菌类似物组粘菌蛋白质编码基因具有在与所有其他组相比,所添加的有机物质的表达最高的增加,表明在该mycobenthos木质纤维素能刺激代谢活性。黄杆菌为主的活性细菌群落与木质纤维素提取物迅速增长,在O-2枯竭大幅坠毁。我们的研究结果表明,mycobenthos的多样性,活性和营养潜在响应于有机物和减小O-2的浓度,其与异黄杆菌一起经历河口生态系统木质纤维素降解过程中“兴衰”动力学急剧变化。

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  • 来源
    《Environmental microbiology 》 |2019年第1期| 共15页
  • 作者单位

    Ludwig Maximilians Univ Munchen Dept Earth &

    Environm Sci Paleontol &

    Geobiol D-80333 Munich Germany;

    Ludwig Maximilians Univ Munchen Dept Earth &

    Environm Sci Paleontol &

    Geobiol D-80333 Munich Germany;

    Ludwig Maximilians Univ Munchen Dept Earth &

    Environm Sci Paleontol &

    Geobiol D-80333 Munich Germany;

    Ludwig Maximilians Univ Munchen Dept Earth &

    Environm Sci Paleontol &

    Geobiol D-80333 Munich Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学 ;
  • 关键词

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