In this study, we investigated the impact of soil pH on the diversity and abundance of archaeal ammonia oxidizers in 27 different forest soils across Germany. DNAwas extracted from topsoil samples, the amoA gene, encoding ammonia monooxygenase, was amplified; and the amplicons were sequenced using a 454-based pyrosequencing approach. As expected, the ratio of archaeal (AOA) to bacterial (AOB) ammonia oxidizers’ amoA genes increased sharply with decreasing soil pH. The diversity of AOA differed significantly between sites with ultra-acidic soil pH (<3.5) and sites with higher pH values. The major OTUs from soil samples with low pH could be detected at each site with a soil pH <3.5 but not at sites with pH >4.5, regardless of geographic posit...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
Autotrophic archaeal and bacterial ammonia-oxidisers (AOA and AOB) drive soil nitrification. Ammonia...
In this study, we investigated the impact of soil pH on the diversity and abundance of archaeal ammo...
In this study, we investigated the impact of soil pH on the diversity and abundance of archaeal ammo...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil ammonia-oxidizing archaea (AOA) are highly abundant and play an important role in the nitrogen ...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Ammonia oxidation is the first and rate-limiting step of nitrification and is performed by both ammo...
During the last decade it has been discovered that around 2% of the soil-living prokaryotes belong t...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
Autotrophic archaeal and bacterial ammonia-oxidisers (AOA and AOB) drive soil nitrification. Ammonia...
In this study, we investigated the impact of soil pH on the diversity and abundance of archaeal ammo...
In this study, we investigated the impact of soil pH on the diversity and abundance of archaeal ammo...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil pH is a major determinant of microbial ecosystem processes and potentially a major driver of ev...
Soil ammonia-oxidizing archaea (AOA) are highly abundant and play an important role in the nitrogen ...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Ammonia-oxidizing archaea (AOA) are a primary contributor to nitrification – a key process in nutri...
Ammonia oxidation is the first and rate-limiting step of nitrification and is performed by both ammo...
During the last decade it has been discovered that around 2% of the soil-living prokaryotes belong t...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
In this study, we investigated how co-occurrence patters of ammonia and nitrite oxidizers, which dri...
Autotrophic archaeal and bacterial ammonia-oxidisers (AOA and AOB) drive soil nitrification. Ammonia...