To develop the microbial resources of the Yellow River, seven water samples were collected along the Lanzhou region of the river from upstream to downstream for testing. Analysis of various physicochemical indexes was conducted, and key parameters influencing the water quality were selected through principal component analysis, after which the decisive factors impacting water quality were determined by correlation and regression analysis. The results indicated that (1) DO, NH3-N, NO2 center dot-N, TN, TC, As, Cr6+ and Pb were the main physico-chemical factors influencing water quality in the Lanzhou region, with NH3-N having the greatest effect. (2) Ammonia-oxidizing microorganisms [ammonia-oxidizing archaea (AOA), ammonia-oxidizing bacteri...
Ammonia oxidation plays a pivotal role in the cycling and removal of nitrogen in aquatic ecosystems....
Ammonia was observed as a potential significant factor to manipulate the abundance and activity of a...
Both ammonia-oxidizing archaea (AOA) and bacteria (AOB) can be involved in biotransformation of ammo...
Ammonia oxidation by ammonia-oxidising archaea (AOA) and bacteria (AOB) is the first and rate-limiti...
The community structure of ammonia-oxidizing microorganisms is sensitive to various environmental fa...
BACKGROUND: Aerobic ammonia oxidation plays a key role in the nitrogen cycle, and the diversity of t...
To elucidate the importance and mechanisms of particle-attached microorganisms on ammonia oxidation,...
Ammonia oxidation plays a significant role in the nitrogen cycle in marine sediments. Ammonia-oxidiz...
Under the increasing pressure of human activities, Hangzhou Bay has become one of the most seriously...
Ammonia-oxidizing bacteria (AOB) attached to aquatic particles are important participants in ammonia...
Ammonia oxidation is an important process for global nitrogen cycling. Both ammonia-oxidizing bacter...
Both ammonia-oxidizing archaea (AOA) and bacteria (AOB) can be key players in ammonia biotransformat...
Up to date, numerous studies have shown that the community structure of aerobic ammonia oxidizers in...
Ammonia-oxidizingarchaea (AOA) and ammonia-oxidizing bacteria (AOB) play an important role innitroge...
The newly recognized ammonia-oxidizing archaea (AOA) makes re-evaluation of the contribution to ammo...
Ammonia oxidation plays a pivotal role in the cycling and removal of nitrogen in aquatic ecosystems....
Ammonia was observed as a potential significant factor to manipulate the abundance and activity of a...
Both ammonia-oxidizing archaea (AOA) and bacteria (AOB) can be involved in biotransformation of ammo...
Ammonia oxidation by ammonia-oxidising archaea (AOA) and bacteria (AOB) is the first and rate-limiti...
The community structure of ammonia-oxidizing microorganisms is sensitive to various environmental fa...
BACKGROUND: Aerobic ammonia oxidation plays a key role in the nitrogen cycle, and the diversity of t...
To elucidate the importance and mechanisms of particle-attached microorganisms on ammonia oxidation,...
Ammonia oxidation plays a significant role in the nitrogen cycle in marine sediments. Ammonia-oxidiz...
Under the increasing pressure of human activities, Hangzhou Bay has become one of the most seriously...
Ammonia-oxidizing bacteria (AOB) attached to aquatic particles are important participants in ammonia...
Ammonia oxidation is an important process for global nitrogen cycling. Both ammonia-oxidizing bacter...
Both ammonia-oxidizing archaea (AOA) and bacteria (AOB) can be key players in ammonia biotransformat...
Up to date, numerous studies have shown that the community structure of aerobic ammonia oxidizers in...
Ammonia-oxidizingarchaea (AOA) and ammonia-oxidizing bacteria (AOB) play an important role innitroge...
The newly recognized ammonia-oxidizing archaea (AOA) makes re-evaluation of the contribution to ammo...
Ammonia oxidation plays a pivotal role in the cycling and removal of nitrogen in aquatic ecosystems....
Ammonia was observed as a potential significant factor to manipulate the abundance and activity of a...
Both ammonia-oxidizing archaea (AOA) and bacteria (AOB) can be involved in biotransformation of ammo...