[HTML][HTML] The interaction between plants and bacteria in the remediation of petroleum hydrocarbons: an environmental perspective

P Gkorezis, M Daghio, A Franzetti… - Frontiers in …, 2016 - frontiersin.org
Widespread pollution of terrestrial ecosystems with petroleum hydrocarbons (PHCs) has
generated a need for remediation and, given that many PHCs are biodegradable, bio-and …

Enzymes and genes involved in aerobic alkane degradation

W Wang, Z Shao - Frontiers in microbiology, 2013 - frontiersin.org
Alkanes are major constituents of crude oil. They are also present at low concentrations in
diverse non-contaminated because many living organisms produce them as chemo …

Adipic acid production from lignin

DR Vardon, MA Franden, CW Johnson… - Energy & …, 2015 - pubs.rsc.org
Lignin is an alkyl-aromatic polymer present in plant cell walls for defense, structure, and
water transport. Despite exhibiting a high-energy content, lignin is typically slated for …

Lignin conversion to β-ketoadipic acid by Pseudomonas putida via metabolic engineering and bioprocess development

AZ Werner, WT Cordell, CW Lahive, BC Klein… - Science …, 2023 - science.org
Bioconversion of a heterogeneous mixture of lignin-related aromatic compounds (LRCs) to a
single product via microbial biocatalysts is a promising approach to valorize lignin. Here …

[HTML][HTML] Guiding stars to the field of dreams: Metabolically engineered pathways and microbial platforms for a sustainable lignin-based industry

F Weiland, M Kohlstedt, C Wittmann - Metabolic engineering, 2022 - Elsevier
Lignin is an important structural component of terrestrial plants and is readily generated
during biomass fractionation in lignocellulose processing facilities. Due to lacking …

Engineered Pseudomonas putida simultaneously catabolizes five major components of corn stover lignocellulose: Glucose, xylose, arabinose, p-coumaric acid, and …

JR Elmore, GN Dexter, D Salvachúa, M O'Brien… - Metabolic …, 2020 - Elsevier
Valorization of all major lignocellulose components, including lignin, cellulose, and
hemicellulose is critical for an economically viable bioeconomy. In most biochemical …

Aerobic degradation of aromatic compounds

E Díaz, JI Jiménez, J Nogales - Current opinion in biotechnology, 2013 - Elsevier
Our view on the bacterial responses to the aerobic degradation of aromatic compounds has
been enriched considerably by the current omic methodologies and systems biology …

Eliminating a global regulator of carbon catabolite repression enhances the conversion of aromatic lignin monomers to muconate in Pseudomonas putida KT2440

CW Johnson, PE Abraham, JG Linger, P Khanna… - Metabolic engineering …, 2017 - Elsevier
Carbon catabolite repression refers to the preference of microbes to metabolize certain
growth substrates over others in response to a variety of regulatory mechanisms. Such …

Lignin valorization: production of high value-added compounds by engineered microorganisms

E Rosini, F Molinari, D Miani, L Pollegioni - Catalysts, 2023 - mdpi.com
Lignin is the second most abundant polymer in nature, which is also widely generated
during biomass fractionation in lignocellulose biorefineries. At present, most of technical …

Direct biosynthesis of adipic acid from lignin-derived aromatics using engineered Pseudomonas putida KT2440

W Niu, H Willett, J Mueller, X He, L Kramer, B Ma… - Metabolic …, 2020 - Elsevier
Lignin is one largely untapped natural resource that can be exploited as a raw material for
the bioproduction of value-added chemicals. Meanwhile, the current petroleum-based …