Pseudomonas stutzeri OX1 is able to degrade toluene and ortho-xylene via the direct oxygenation of the aromatic ring. The genetic studies carried out suggest that the genes coding for the monooxygenase involved in the early steps of this catabolic route have been acquired by gene transfer. P. stutzeri OX1 is also potentially able to utilize meta- and para-xylene as growth substrates. These two isomers are metabolized through a different pathway (TOL pathway). Both catabolic routes can be activated or inactivated by means of genomic rearrangements. The relevance of such recombination mechanisms in the evolution and the adaptability of P. stutzeri is discusse
Aerobic bacterial degradation of aromatic hydrocarbons is generally divided into two major routes, t...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...
Pseudomonas stutzeri OX1 meta pathway genes for toluene and o-xylene catabolism were analyzed, and l...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Aerobic bacterial degradation of aromatic hydrocarbons is generally divided into two major routes, t...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...
Pseudomonas stutzeri OX1 meta pathway genes for toluene and o-xylene catabolism were analyzed, and l...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
Pseudomonas sp. OX1 is able to metabolize toluene and o-xylene through the TOU catabolic pathway, wh...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Aerobic bacterial degradation of aromatic hydrocarbons is generally divided into two major routes, t...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...
Degradation of aromatic hydrocarbons by aerobic bacteria is generally divided into an upper pathway,...