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Responses of Ammonia-Oxidizing Bacterial and Archaeal Populations to Organic Nitrogen Amendments in Low-Nutrient Groundwater

机译:低营养地下水中氨氧化细菌和古细菌种群对有机氮修正的响应

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To evaluate the potential for organic nitrogen addition to stimulate the in situ growth of ammonia oxidizers during a field scale bioremediation trial, samples collected from the Eastern Snake River Plain Aquifer in Idaho before, during, and after the addition of molasses and urea were subjected to PCR analysis of ammonia monooxygenase subunit A (amoA) genes. Ammonia-oxidizing bacteria (AOB) and archaea (AOA) were present in all of the samples tested, with AOA amoA genes outnumbering AOB amoA genes in all of the samples. Following urea addition, nitrate levels rose and bacterial amoA copy numbers increased dramatically, suggesting that urea hydrolysis stimulated nitrification. Bacterial amoA diversity was limited to two Nitrosomonas phylotypes, whereas archaeal amoA analyses revealed 20 distinct operational taxonomic units, including several that were markedly different from all previously reported sequences. Results from this study demonstrate the likelihood of stimulating ammonia-oxidizing communities during field scale manipulation of groundwater conditions to promote urea hydrolysis.
机译:为了评估在田间规模的生物修复试验中添加有机氮刺激氨氧化剂原位生长的潜力,在糖蜜和尿素添加之前,期间和之后,从爱达荷州东部蛇河平原含水层收集的样品进行了处理。氨单加氧酶亚基A(amoA)基因的PCR分析。氨氧化细菌(AOB)和古生菌(AOA)存在于所有测试样品中,所有样品中AOA amoA基因数量均超过AOB amoA基因。加入尿素后,硝酸盐水平上升,细菌amoA拷贝数急剧增加,表明尿素水解刺激了硝化作用。细菌amoA的多样性仅限于两种亚硝基亚种(Nitrosomonas)系统型,而古细菌amoA分析揭示了20种不同的操作分类单位,包括与以前报道的所有序列明显不同的几种。这项研究的结果表明,在田间规模控制地下水条件以促进尿素水解的过程中,有可能刺激氨氧化社区。

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