Nitrogen losses, uptake and abundance of ammonia oxidizers in soil under mineral and organo-mineral fertilization regimes

被引:24
|
作者
Florio, Alessandro [1 ]
Felici, Barbara [1 ]
Migliore, Melania [1 ]
Dell'Abate, Maria Teresa [1 ]
Benedetti, Anna [1 ]
机构
[1] Ctr Ric Studio Relazionitra Pianta & Suolo, Consiglio Ric Agr & Anal Econ Agr, Via Navicella 2, I-400184 Rome, Italy
关键词
organo-mineral fertilization; nitrification; ammonia-oxidizing bacteria; ammonia-oxidizing archaea; soil microbial community; Lolium perenne; MICROBIAL BIOMASS; PASTURE SOIL; ARCHAEA; NITRIFICATION; BACTERIA; QUANTIFICATION; VOLATILIZATION; EFFICIENCY; DIVERSITY; DYNAMICS;
D O I
10.1002/jsfa.7364
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
BACKGROUNDA laboratory incubation experiment and greenhouse studies investigated the impact of organo-mineral (OM) fertilization as an alternative practice to conventional mineral (M) fertilization on nitrogen (N) uptake and losses in perennial ryegrass (Lolium perenne) as well as on soil microbial biomass and ammonia oxidizers. RESULTSWhile no significant difference in plant productivity and ammonia emissions between treatments could be detected, an increase in soil total N content and an average 17.9% decrease in nitrates leached were observed in OM fertilization compared with M fertilization. The microbial community responded differentially to treatments, suggesting that the organic matter fraction of the OM fertilizer might have influenced N immobilization in the microbial biomass in the short-medium term. Furthermore, nitrate contents in fertilized soils were significantly related to bacterial but not archaeal amoA gene copies, whereas in non-fertilized soils a significant relationship between soil nitrates and archaeal but not bacterial amoA copies was found. CONCLUSIONThe application of OM fertilizer to soil maintained sufficient productivity and in turn increased N use efficiency and noticeably reduced N losses. Furthermore, in this experiment, ammonia-oxidizing bacteria drove nitrification when an N source was added to the soil, whereas ammonia-oxidizing archaea were responsible for ammonia oxidation in non-fertilized soil. (c) 2015 Society of Chemical Industry
引用
收藏
页码:2440 / 2450
页数:11
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