Coupling Between and Among Ammonia Oxidizers and Nitrite Oxidizers in Grassland Mesocosms Submitted to Elevated CO2 and Nitrogen Supply

被引:0
作者
Marie Simonin
Xavier Le Roux
Franck Poly
Catherine Lerondelle
Bruce A. Hungate
Naoise Nunan
Audrey Niboyet
机构
[1] UMR 7618 Université Pierre et Marie Curie/CNRS/AgroParisTech,Institute of Ecology and Environmental Sciences
[2] Université de Lyon/Université Lyon 1/CNRS/INRA, Paris
[3] UMR CNRS 5557,Microbial Ecology Center
[4] USC INRA 1364,Center for Ecosystem Science and Society and Department of Biological Sciences
[5] Northern Arizona University,undefined
来源
Microbial Ecology | 2015年 / 70卷
关键词
Global change; Grasslands; Nitrification; Ammonia oxidizers; Nitrite oxidizers; Niche differentiation;
D O I
暂无
中图分类号
学科分类号
摘要
Many studies have assessed the responses of soil microbial functional groups to increases in atmospheric CO2 or N deposition alone and more rarely in combination. However, the effects of elevated CO2 and N on the (de)coupling between different microbial functional groups (e.g., different groups of nitrifiers) have been barely studied, despite potential consequences for ecosystem functioning. Here, we investigated the short-term combined effects of elevated CO2 and N supply on the abundances of the four main microbial groups involved in soil nitrification: ammonia-oxidizing archaea (AOA), ammonia-oxidizing bacteria (AOB), and nitrite-oxidizing bacteria (belonging to the genera Nitrobacter and Nitrospira) in grassland mesocosms. AOB and AOA abundances responded differently to the treatments: N addition increased AOB abundance, but did not alter AOA abundance. Nitrobacter and Nitrospira abundances also showed contrasted responses to the treatments: N addition increased Nitrobacter abundance, but decreased Nitrospira abundance. Our results support the idea of a niche differentiation between AOB and AOA, and between Nitrobacter and Nitrospira. AOB and Nitrobacter were both promoted at high N and C conditions (and low soil water content for Nitrobacter), while AOA and Nitrospira were favored at low N and C conditions (and high soil water content for Nitrospira). In addition, Nitrobacter abundance was positively correlated to AOB abundance and Nitrospira abundance to AOA abundance. Our results suggest that the couplings between ammonia and nitrite oxidizers are influenced by soil N availability. Multiple environmental changes may thus elicit rapid and contrasted responses between and among the soil ammonia and nitrite oxidizers due to their different ecological requirements.
引用
收藏
页码:809 / 818
页数:9
相关论文
共 291 条
[51]  
Blouin M(2012)Growth activity and temperature responses of ammonia-oxidizing archaea and bacteria in soil microcosms ISME J undefined undefined-undefined
[52]  
Abbadie L(2011)The ammonia monooxygenase structural gene amoA as a functional marker: molecular fine-scale analysis of natural ammonia-oxidizing populations ISME J undefined undefined-undefined
[53]  
Barot S(2007)Archaea predominate among ammonia-oxidizing prokaryotes in soils Water Res undefined undefined-undefined
[54]  
Hodge A(1999)First exploration of Nitrobacter diversity in soils by a PCR cloning-sequencing approach targeting functional gene Appl Environ Microbiol undefined undefined-undefined
[55]  
Robinson D(2012)Development and application of a PCR‐denaturing gradient gel electrophoresis tool to study the diversity of Nitrobacter‐like nxrA sequences in soil FEMS Microbiol Ecol undefined undefined-undefined
[56]  
Fitter A(2008)Experimental demonstration of chaotic instability in biological nitrification Environ Microbiol undefined undefined-undefined
[57]  
Wrage N(undefined)Environmental factors shaping the ecological niches of ammonia‐oxidizing archaea undefined undefined undefined-undefined
[58]  
Velthof GL(undefined)Drivers of archaeal ammonia-oxidizing communities in soil undefined undefined undefined-undefined
[59]  
Van Beusichem ML(undefined)Ammonia oxidation kinetics determine niche separation of nitrifying archaea and bacteria undefined undefined undefined-undefined
[60]  
Oenema O(undefined)Dynamics of ammonia-oxidizing archaea and bacteria populations and contributions to soil nitrification potentials undefined undefined undefined-undefined