Correlating denitrifying catabolic genes with N2O and N2 emissions from swine slurry composting

被引:61
|
作者
Angnes, G. [1 ]
Nicoloso, R. S. [2 ]
da Silva, M. L. B. [2 ]
de Oliveira, P. A. V. [2 ]
Higarashi, M. M. [2 ]
Mezzari, M. P. [1 ]
Miller, P. R. M. [1 ]
机构
[1] Univ Fed Santa Catarina, BR-88034001 Florianopolis, SC, Brazil
[2] Embrapa Swine & Poultry, BR-89700000 Concordia, SC, Brazil
关键词
Functional genes; Greenhouse gases; Denitrification; Nitrification; qPCR; NITROUS-OXIDE EMISSIONS; CH4; EMISSIONS; NIRS; BACTERIA; DIVERSITY; COMMUNITY; ABUNDANCE; QUANTIFICATION; MECHANISMS; ESTUARINE;
D O I
10.1016/j.biortech.2013.04.112
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
This work evaluated N dynamics that occurs over time within swine slurry composting piles. Real-time quantitative PCR (qPCR) analyzes were conducted to estimate concentrations of bacteria community harboring specific catabolic nitrifying-ammonium monooxygenase (amoA), and denitrifying nitrate- (narG), nitrite- (nirS and nirG), nitric oxide- (norB) and nitrous oxide reductases (nosZ) genes. NH3-N, N2O-N, N-2-N emissions represented 15.4 +/- 1.9%, 5.4 +/- 0.9%, and 79.1 +/- 2.0% of the total nitrogen losses, respectively. Among the genes tested, temporal distribution of narG, nirS, and nosZ concentration correlated significantly (p < 0.05) with the estimated N-2 emissions. Denitrifying catabolic gene ratio (cnorB + qnorB)/nosZ >= 100 was indicative of N2O emission potential from the compost pile. Considering our current empirical limitations to accurately measure N-2 emissions from swine slurry composting at field scale the use of these catabolic genes could represent a promising monitoring tool to aid minimize our uncertainties on biological N mass balances in these systems. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:368 / 375
页数:8
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