Understanding plant–microbe interactions is crucial for improving plants’ productivity and protection. Constraint-based metabolic modeling is one of the possible ways to investigate the bacterial adaptation to different ecological niches and may give insights into the metabolic versatility of plant pathogenic bacteria. We reconstructed a raw metabolic model of the emerging plant pathogenic bacterium Pectobacterium parmentieri SCC3193 with the use of KBase. The model was curated by using inParanoind and phenotypic data generated with the use of the OmniLog system. Metabolic modeling was performed through COBRApy Toolbox v. 0.10.1. The curated metabolic model of P. parmentieri SCC3193 is highly reliable, as in silico obtained resu...
The filamentous fungus Neurospora crassa played a central role in the development of twentieth-centu...
Acetobacter pasteurianus 386B is a candidate functional starter culture for the cocoa bean fermentat...
Liebal UW, Ullmann L, Lieven C, et al. Ustilago maydis Metabolic Characterization and Growth Quantif...
Phytopathogens are responsible of at least 30% of agricultural crop loss. Understanding fundamental ...
AbstractWe reconstructed the first genome-scale metabolic network of the plant pathogen Pectobacteri...
Bacterial pathogens adapt their metabolism to the plant environment to successfully colonize their h...
BACKGROUND: Pelobacter species are commonly found in a number of subsurface environments, and are u...
Genome-scale metabolic models are valuable tools for the design of novel strains of industrial micro...
Contains fulltext : 36088teusink.pdf (Publisher’s version ) (Open Access)A genome-...
Metabolic capacity can vary substantially within a bacterial species, leading to ecological niche se...
Plant pathogenic pseudomonads such as Pseudomonas syringae colonize plant surfaces and tissues and h...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Metabolism is the set of biochemical reactions of an organism that enables it to assimilate nutrient...
Metabolism is the set of biochemical reactions of an organism that enables it to assimilate nutrient...
<div><p>The filamentous fungus <i>Neurospora crassa</i> played a central role in the development of ...
The filamentous fungus Neurospora crassa played a central role in the development of twentieth-centu...
Acetobacter pasteurianus 386B is a candidate functional starter culture for the cocoa bean fermentat...
Liebal UW, Ullmann L, Lieven C, et al. Ustilago maydis Metabolic Characterization and Growth Quantif...
Phytopathogens are responsible of at least 30% of agricultural crop loss. Understanding fundamental ...
AbstractWe reconstructed the first genome-scale metabolic network of the plant pathogen Pectobacteri...
Bacterial pathogens adapt their metabolism to the plant environment to successfully colonize their h...
BACKGROUND: Pelobacter species are commonly found in a number of subsurface environments, and are u...
Genome-scale metabolic models are valuable tools for the design of novel strains of industrial micro...
Contains fulltext : 36088teusink.pdf (Publisher’s version ) (Open Access)A genome-...
Metabolic capacity can vary substantially within a bacterial species, leading to ecological niche se...
Plant pathogenic pseudomonads such as Pseudomonas syringae colonize plant surfaces and tissues and h...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Metabolism is the set of biochemical reactions of an organism that enables it to assimilate nutrient...
Metabolism is the set of biochemical reactions of an organism that enables it to assimilate nutrient...
<div><p>The filamentous fungus <i>Neurospora crassa</i> played a central role in the development of ...
The filamentous fungus Neurospora crassa played a central role in the development of twentieth-centu...
Acetobacter pasteurianus 386B is a candidate functional starter culture for the cocoa bean fermentat...
Liebal UW, Ullmann L, Lieven C, et al. Ustilago maydis Metabolic Characterization and Growth Quantif...