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Environmental pH as an important factor for the distribution of urease positive ammonia-oxidizing bacteria

机译:环境pH是脲酶阳性氨氧化细菌分布的重要因素

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The effect of pH on ureolytic activity of a number of chemolithotrophic ammonia-oxidizing bacteria (AOB) has been studied in context with distribution patterns of these species. The pH-optima for urea-based nitrification were found to differ clearly among the examined species. Pronounced optima ranged between pH 5.0 and 8.0. Urease is an intracytoptasmic enzyme and should therefore be independent of the external pH. Our first results indicated the presence of a pH-dependent uptake system for urea. Simultaneous oxidation of free ammonia, possible only at high pH values, led to a strong intensification of ureolysis. The tag-phase of growth on urea as the sole energy source was clearly prolonged compared to free ammonia. Our results point on the existence of an active, most likely energy-linked urea-uptake system in addition to a possible passive diffusion of urea. The different pH-optima of urea-uptake agree with known distribution patterns of distinct AOB. It might be a reason for the shift of dominant Nitrosospira populations along pH gradients in acid soils as observed by others in molecular analyses of natural AOB populations. Copyright 2004 Elsevier GrnbH. All rights reserved.
机译:在这些物种的分布方式的背景下,已经研究了pH对许多化学营养型氨氧化细菌(AOB)的尿素分解活性的影响。发现基于尿素的硝化的最适pH值在所检查的物种之间明显不同。明显的最适范围为pH 5.0至8.0。脲酶是一种细胞内吞噬酶,因此应独立于外部pH值。我们的第一个结果表明存在尿素的pH依赖性吸收系统。游离氨的同时氧化(仅在高pH值下才可能发生)导致强烈的尿素分解。与游离氨相比,尿素作为唯一能源的生长阶段明显延长。我们的结果指出,除了可能的尿素被动扩散外,还存在一个主动的,最可能的能量相关尿素吸收系统。尿素吸收的不同pH最佳值与不同AOB的已知分布模式一致。正如其他人在天然AOB种群的分子分析中所观察到的,这可能是占优势的亚硝基螺菌种群沿酸性土壤pH梯度变化的原因。版权所有2004 Elsevier GrnbH。版权所有。

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