Mechanism analysis and application of highly efficient nitrogen-removing strains: Nitrogen-removal
Liwen Liao1, Zilu Li1, Luqing Pan1
1Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, 266003, Qingdao, PR China.
Abstract:
Nitrogen (N) pollution has emerged as a critical environmental issue hindering the sustainable development of global aquatic ecosystems in the 21st century. Particularly, N accumulation in aquaculture water has become a major pollutant, severely restricting the green and healthy development of aquaculture. Here, two efficient and safe heterotrophic nitrification-aerobic denitrification (HN-AD) strains were isolated from shrimp aquaculture environments and identified as Yanghufangia pacifica HHVEN1 and Glutamicibacter nicotianae SDVEA2. Under single or mixed inorganic-N conditions, both strains achieved >82.29% removal of ammonia-N (NH4+-N) and nitrite-N (NO2--N), and maintained high performance across a wide range of temperature, pH, salinity, and C/N ratio. Notably, HHVEN1 completely removed NH4+-N within 18 h, whereas SDVEA2 showed particularly strong nitrate removal (99.43% within 36 h). Based on time-course profiles of N species, N-removal functional genes, enzyme activities, and inhibitor assays, HHVEN1 predominantly followed a canonical HN-AD route and showed evidence for an ammonia-to-nitrate shortcut and a potential direct ammonium-to-gaseous-N conversion. In contrast, SDVEA2 mainly converted ammonium via nitrate and nitrite to gaseous N and reduced nitrate to gaseous N, despite lacking detectable canonical amoA, hao, and nxr genes. Haldane kinetic models were fitted to describe the relationships between substrate concentration and growth/N removal, indicating adaptation to medium-low N levels. Using response surface methodology (RSM), a multi-factor coupling model linking salinity, N sources and inoculum size was established, and a calculation method for optimal inoculum in dynamic aquatic scenarios was proposed. This study provides scientific support for N pollution control in aquaculture and related aquatic environments.
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