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. 2015 Feb;91(2):1-11.
doi: 10.1093/femsec/fiu023. Epub 2014 Dec 8.

Ammonia-oxidizing archaea respond positively to inorganic nitrogen addition in desert soils

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Free article

Ammonia-oxidizing archaea respond positively to inorganic nitrogen addition in desert soils

Yevgeniy Marusenko et al. FEMS Microbiol Ecol. 2015 Feb.
Free article

Abstract

In soils, nitrogen (N) addition typically enhances ammonia oxidation (AO) rates and increases the population density of ammonia-oxidizing bacteria (AOB), but not that of ammonia-oxidizing archaea (AOA). We asked if long-term inorganic N addition also has similar consequences in arid land soils, an understudied yet spatially ubiquitous ecosystem type. Using Sonoran Desert top soils from between and under shrubs within a long-term N-enrichment experiment, we determined community concentration-response kinetics of AO and measured the total and relative abundance of AOA and AOB based on amoA gene abundance. As expected, N addition increased maximum AO rates and the abundance of bacterial amoA genes compared to the controls. Surprisingly, N addition also increased the abundance of archaeal amoA genes. We did not detect any major effects of N addition on ammonia-oxidizing community composition. The ammonia-oxidizing communities in these desert soils were dominated by AOA as expected (78% of amoA gene copies were related to Nitrososphaera), but contained unusually high contributions of Nitrosomonas (18%) and unusually low numbers of Nitrosospira (2%). This study highlights unique traits of ammonia oxidizers in arid lands, which should be considered globally in predictions of AO responses to changes in N availability.

Keywords: Thaumarchaeota; ammonia oxidation; amoA; arid land; niche differentiation; nitrogen enrichment.

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