Heterotrophic nitrification by Alcaligenes faecalis links organic and inorganic nitrogen metabolism

Author:

Qin Ya-Ling123,Liang Zong-Lin123,Ai Guo-Min12,Liu Wei-Feng12,Tao Yong123,Jiang Cheng-Ying123,Liu Shuang-Jiang123,Li De-Feng123

Affiliation:

1. State Key Laboratory of Microbial Resources , Institute of Microbiology, , Beijing, 100101, P. R. China

2. Chinese Academy of Sciences , Institute of Microbiology, , Beijing, 100101, P. R. China

3. School of Life Sciences, University of Chinese Academy of Sciences , Beijing 100049, P. R. China

Abstract

Abstract Heterotrophic nitrification remains a mystery for decades. It has been commonly hypothesized that heterotrophic nitrifiers oxidize ammonia to hydroxylamine and then to nitrite in a way similar to autotrophic AOA and AOB. Recently, heterotrophic nitrifiers from Alcaligenes were found to oxidize ammonia to hydroxylamine and then to N2 (“dirammox”, direct ammonia oxidation) by the gene cluster dnfABC with a yet-to-be-reported mechanism. The role of a potential glutamine amidotransferase DnfC clues the heterotrophic ammonia oxidation might involving in glutamine. Here, we found Alcaligenes faecalis JQ135 could oxidize amino acids besides ammonia. We discovered that glutamine is an intermediate of the dirammox pathway and the glutamine synthetase gene is essential for both A. faecalis JQ135 and the E. coli cells harboring dnfABC gene cluster to oxidize amino acids and ammonia. Our study expands understanding of heterotrophic nitrifiers and challenges the classical paradigm of heterotrophic nitrification.

Publisher

Oxford University Press (OUP)

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