Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Enrichment of DNRA bacteria in a continuous culture

View through CrossRef
Abstract Denitrification and dissimilatory nitrate reduction to ammonium (DNRA) are competing microbial nitrate-reduction processes. The occurrence of DNRA has been shown to be effected qualitatively by various parameters in the environment. A more quantitative understanding can be obtained using enrichment cultures in a laboratory reactor, yet no successful DNRA enrichment culture has been described. We showed that a stable DNRA-dominated enrichment culture can be obtained in a chemostat system. The enrichment was based on the hypothesis that nitrate limitation is the dominant factor in selecting for DNRA. First, a conventional denitrifying culture was enriched from activated sludge, with acetate and nitrate as substrates. Next, the acetate concentration in the medium was increased to obtain nitrate-limiting conditions. As a result, conversions shifted from denitrification to DNRA. In this selection of a DNRA culture, two important factors were the nitrate limitation and a relatively low dilution rate (0.026 h−1). The culture was a highly enriched population of Deltaproteobacteria most closely related to Geobacter lovleyi, based on 16S rRNA gene sequencing (97% similarity). We established a stable and reproducible cultivation method for the enrichment of DNRA bacteria in a continuously operated reactor system. This enrichment method allows to further investigate the DNRA process and address the factors for competition between DNRA and denitrification, or other N-conversion pathways.
Title: Enrichment of DNRA bacteria in a continuous culture
Description:
Abstract Denitrification and dissimilatory nitrate reduction to ammonium (DNRA) are competing microbial nitrate-reduction processes.
The occurrence of DNRA has been shown to be effected qualitatively by various parameters in the environment.
A more quantitative understanding can be obtained using enrichment cultures in a laboratory reactor, yet no successful DNRA enrichment culture has been described.
We showed that a stable DNRA-dominated enrichment culture can be obtained in a chemostat system.
The enrichment was based on the hypothesis that nitrate limitation is the dominant factor in selecting for DNRA.
First, a conventional denitrifying culture was enriched from activated sludge, with acetate and nitrate as substrates.
Next, the acetate concentration in the medium was increased to obtain nitrate-limiting conditions.
As a result, conversions shifted from denitrification to DNRA.
In this selection of a DNRA culture, two important factors were the nitrate limitation and a relatively low dilution rate (0.
026 h−1).
The culture was a highly enriched population of Deltaproteobacteria most closely related to Geobacter lovleyi, based on 16S rRNA gene sequencing (97% similarity).
We established a stable and reproducible cultivation method for the enrichment of DNRA bacteria in a continuously operated reactor system.
This enrichment method allows to further investigate the DNRA process and address the factors for competition between DNRA and denitrification, or other N-conversion pathways.

Related Results

Resource recovery through simultaneous denitrification and fermentation in engineered anaerobic systems
Resource recovery through simultaneous denitrification and fermentation in engineered anaerobic systems
[EMBARGOED UNTIL 08/01/2025] Anaerobic digestion (AD) is widely used to process organic waste and is a promising platform for producing bioenergy and biomaterials. However, the fin...
Vertical activity distribution of dissimilatory nitrate reduction in coastal marine sediments
Vertical activity distribution of dissimilatory nitrate reduction in coastal marine sediments
Abstract. The relative importance of two dissimilatory nitrate reduction pathways, denitrification (DEN) and dissimilatory nitrate reduction to ammonium (DNRA), was investigated in...
Nitrate fate in mixed surface water and groundwater: Role of mixing-dependent denitrification and DNRA in hyporheic zones
Nitrate fate in mixed surface water and groundwater: Role of mixing-dependent denitrification and DNRA in hyporheic zones
Hyporheic zones (HZs), where surface water (SW) and groundwater (GW) mix underneath and adjacent to streams, are known for their inherent ability to attenuate contaminants...
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
Effect of Gram-positive bacteria on antibiotic resistance in Gram-negative bacteria
Effect of Gram-positive bacteria on antibiotic resistance in Gram-negative bacteria
Antibiotics are one of the most common treatments for bacterial infections, but the emergence of antibiotic resistance is a major threat to the control of infectious diseases. Many...
Environmental enrichment
Environmental enrichment
This chapter focuses on environmental enrichment. It begins by discussing the evolution of enrichment as a concept. It explains that behavioural enrichment aims to successfully sti...
A preliminary study of the effects of enrichment tools on stereotypic behavior in captive Sun Bear (Helarctos malayanus)
A preliminary study of the effects of enrichment tools on stereotypic behavior in captive Sun Bear (Helarctos malayanus)
The stereotypic behaviors are common in captive bear. The objectives of study were to investigate 1) the effects of new enrichment tools on frequency of hand sucking/licking (HS) a...

Back to Top