The relevance of the β-proteobacterial Burkholderiales order in the degradation of a vast array of aromatic compounds, including several priority pollutants, has been largely assumed. In this review, the presence and organization of genes encoding oxygenases involved in aromatics biodegradation in 80 Burkholderiales genomes is analysed. This genomic analysis underscores the impressive catabolic potential of this bacterial lineage, comprising nearly all of the central ring-cleavage pathways reported so far in bacteria and most of the peripheral pathways involved in channelling of a broad diversity of aromatic compounds. The more widespread pathways in Burkholderiales include protocatechuate ortho ring-cleavage, catechol ortho ring-cleavage, ...
The genome of B. phytofirmans OLGA172 has been sequenced by Next Generation sequencing methods. Over...
AbstractSphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RH...
An extensive taxonomic analysis of the bacterial strain Burkholderia sp. DBT1, previously isolated f...
Aromatic compounds pose a major threat to the environment, being mutagenic, carcinogenic, and recalc...
Nitrate-reducing bacteria of the recently recognized Azoarcus/Thauera group within the Betaproteobac...
Sphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RHO) genes...
AbstractSphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RH...
Recent research on microbial degradation of aromatic and other refractory compounds in anoxic waters...
Members of genus Sphingopyxis are frequently found in diverse eco-environments worldwide and have be...
We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates fro...
We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates fro...
Identification and characterization of novel genes belonging to microbial aromatic biodegradation pa...
Identification and characterization of novel genes belonging to microbial aromatic biodegradation pa...
Burkholderia xenovorans LB400 (LB400), a well studied, effective polychlorinated biphenyl-degrader, ...
Burkholderia xenovorans LB400 (LB400), a well studied, effective polychlorinated biphenyl-degrader, ...
The genome of B. phytofirmans OLGA172 has been sequenced by Next Generation sequencing methods. Over...
AbstractSphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RH...
An extensive taxonomic analysis of the bacterial strain Burkholderia sp. DBT1, previously isolated f...
Aromatic compounds pose a major threat to the environment, being mutagenic, carcinogenic, and recalc...
Nitrate-reducing bacteria of the recently recognized Azoarcus/Thauera group within the Betaproteobac...
Sphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RHO) genes...
AbstractSphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RH...
Recent research on microbial degradation of aromatic and other refractory compounds in anoxic waters...
Members of genus Sphingopyxis are frequently found in diverse eco-environments worldwide and have be...
We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates fro...
We performed a taxonomic and comparative genomics analysis of 67 novel Paraburkholderia isolates fro...
Identification and characterization of novel genes belonging to microbial aromatic biodegradation pa...
Identification and characterization of novel genes belonging to microbial aromatic biodegradation pa...
Burkholderia xenovorans LB400 (LB400), a well studied, effective polychlorinated biphenyl-degrader, ...
Burkholderia xenovorans LB400 (LB400), a well studied, effective polychlorinated biphenyl-degrader, ...
The genome of B. phytofirmans OLGA172 has been sequenced by Next Generation sequencing methods. Over...
AbstractSphingobium sp. PNB, like other sphingomonads, has multiple ring-hydroxylating oxygenase (RH...
An extensive taxonomic analysis of the bacterial strain Burkholderia sp. DBT1, previously isolated f...