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Response of ammonia oxidizing archaea and bacteria to changing water filled pore space

机译:氨氧化古细菌和细菌对充水孔空间变化的响应

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This study examined the effect of water filled pore space (WFPS) on gross N fluxes and community structure and abundance of ammonia oxidizing archaea and bacteria in a semi-arid soil. Different WFPS altered the community structure of both AOA and AOB. Ammonia oxidizer communities (for both archaea and bacteria) from 'wet' soils (95, 85 and 75% WFPS) and 'dry' soils (25, 45 and 55% WFPS) were distinctly different from one another. Additionally there was a significant relationship between community structure and gross rates of nitrification. There was also a significant relationship between WFPS and bacterial amoA abundance but not archaeal amoA abundance suggesting that bacterial ammonia oxidizers are more responsive to changes in soil water availability. These results are in agreement with other studies suggesting that both groups of ammonia oxidizers have distinct physiological characteristics and ecological niches with consequences for nitrification in response to WFPS. Overall findings from this study indicate that nitrification, both in terms of process rates and populations responsible for nitrification activity, is highly responsive to soil water availability.
机译:这项研究检查了半干旱土壤中充水孔隙空间(WFPS)对总氮通量和群落结构以及氨氧化古细菌和细菌的丰度的影响。不同的WFPS改变了AOA和AOB的社区结构。来自“湿”土壤(95、85和75%WFPS)和“干燥”土壤(25、45和55%WFPS)的氨氧化剂群落(古细菌和细菌)彼此明显不同。此外,社区结构与总硝化率之间存在显着关系。 WFPS与细菌amoA含量之间也存在显着关系,但古细菌amoA含量之间没有显着关系,这表明细菌氨氧化剂对土壤水利用量的变化更敏感。这些结果与其他研究一致,表明这两组氨氧化剂具有独特的生理特性和生态位,对WFPS的硝化作用有影响。这项研究的总体结果表明,无论是在处理速率还是负责硝化活性的种群方面,硝化对土壤水分的响应都非常敏感。

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