作为来自微生物群落的N2O来源的有氧脱化
Nina Roothans1, Minke Gabriëls1, Thomas Abeel2,3
1Department of Biotechnology, Delft University of Technology, van der Maasweg 9, 2629 HZ Delft, the Netherlands.
异性脱显著导致有氧氧化 (N2O) 排放,特别是在氧含量波动的环境中. 这种经常被忽视的微生物过程在循环中起着关键作用.
科学领域:
- 环境微生物学 环境微生物学
- 生物地质化学生物地质化学
- 温室气体排放量 温室气体排放量
背景情况:
- 氧化 (N2O) 是一种强大的温室气体,主要是由微生物过程产生的.
- 传统上,有氧N2O排放与化有关,而无氧排放与脱化有关.
- 频繁的氧气波动在自然和人工生态系统中很常见,影响微生物活动.
研究的目的:
- 量化评估异质性脱对有氧循环和N2O排放的贡献.
- 在化抑制培养中研究在循环氧可用性下N2O生产.
- 了解在动态环境中有氧脱的生态影响.
主要方法:
- 建立了两个浮游生物,化抑制的丰富培养.
- 在循环氧气可用性下,用连续有机碳和酸盐养作物.
- 在不同氧度下量化基质呼吸,N2O生产和酶活性.
主要成果:
- 超过三分之一的有机基质被呼吸使用酸盐作为电子受体,即使在高氧水平 (>6.5 mg/L).
- 氧化 (N2O) 在氧化条件下减少的酸盐中占25%.
- 微生物由于频繁的氧/无氧过渡而保持了脱酶,从而使剩余的有氧脱成为可能.
结论:
- 异性脱显著促进有氧循环和N2O排放,挑战了既定的二分法.
- 能够进行有氧脱的生物在动态氧气环境中具有竞争优势.
- 在波动的环境中,异构脱化对N2O排放的作用可能被低估了.
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