Search results for "Hyphomicrobium"

showing 2 items of 2 documents

Methylophaga and Hyphomicrobium can be used as target genera in monitoring saline water methanol-utilizing denitrification.

2016

Abstract Which bacterial taxonomic groups can be used in monitoring saline water methanol-utilizing denitrification and whether nitrate is transformed into N2 in the process are unclear. Therefore, methylotrophic bacterial communities of two efficiently functioning (nitrate/nitrite reduction was 63–96 %) tropical and cool seawater reactors at a public aquarium were investigated with clone library analysis and 454 pyrosequencing of the 16S rRNA genes. Transformation of nitrate into N2 was confirmed using 15N labeling in incubation of carrier material from the tropical reactor. Combining the data with previous study results, Methylophaga and Hyphomicrobium were determined to be suitable targe…

0301 basic medicinedenitrifikaatioDenitrificationfood.ingredientLibrarysaline waterNitrogen030106 microbiologyBioengineeringApplied Microbiology and Biotechnologyreactor03 medical and health scienceschemistry.chemical_compoundMethylophagafoodBioreactorsNitrateRNA Ribosomal 16SWater QualityBotanySeawatermethylotrophyNitrite16S rRNAPhylogenyNitratesbiology218 Environmental engineeringMethanolMicrobiotabiology.organism_classificationSaline waterHyphomicrobium6. Clean waterMolecular Typing030104 developmental biologyHyphomicrobiumchemistryDenitrificationSeawaterOxidation-ReductionGammaproteobacteriaBiotechnologyJournal of industrial microbiologybiotechnology
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Methylophilaceae and Hyphomicrobium as target taxonomic groups in monitoring the function of methanol-fed denitrification biofilters in municipal was…

2017

Abstract Molecular monitoring of bacterial communities can explain and predict the stability of bioprocesses in varying physicochemical conditions. To study methanol-fed denitrification biofilters of municipal wastewater treatment plants, bacterial communities of two full-scale biofilters were compared through fingerprinting and sequencing of the 16S rRNA genes. Additionally, 16S rRNA gene fingerprinting was used for 10-week temporal monitoring of the bacterial community in one of the biofilters. Combining the data with previous study results, the family Methylophilaceae and genus Hyphomicrobium were determined as suitable target groups for monitoring. An increase in the relative abundance …

denitrifikaatio0301 basic medicineDenitrificationfood.ingredientWater flow030106 microbiologyBioengineeringbiofilterMethylophilaceaehyphomicrobiumWastewaterBiologyApplied Microbiology and Biotechnology12. Responsible consumptionMethylophilaceae03 medical and health sciencesfoodRNA Ribosomal 16S11. SustainabilityBioprocessPhylogenySewageEcology218 Environmental engineeringMethanolTemperatureWaterClassificationbiology.organism_classificationHyphomicrobium6. Clean watermetanoliHyphomicrobium030104 developmental biologyMicrobial population biologyWastewatermethylophilaceaeEnvironmental chemistryBiofilterDenitrificationFiltrationBiotechnology
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