Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Xylan Deconstruction by Environmental Bacterium Caulobacter crescentus

View through CrossRef
Bacterial species display unique and common molecular mechanisms for nutrient acquisition depending on their habitat. Molecular details of xylan utilization by plant pathogens and human commensal bacteria have been reported but no significant reports can be found for environmental bacteria. Caulobacter crescentus is a gram-negative, oligotrophic, environmental bacterium with unique adaptations for growth in low-nutrient conditions. C. crescentus’ genome codes for a repertoire of genes that can facilitate xylan utilization as a carbon source for growth. Polymeric xylan and xylan-derivative use by C. crescentus was investigated in this work. Growth, enzyme, metabolite, and gene expression analyses show possible membrane-bound enzymes for xylan deconstruction on the cell surface while enzymes for further deconstruction of xylan-derived oligosaccharides are concentrated in the periplasm. TonB-dependent transporter (TBDT) inhibition data suggest that TBDT may be involved in the transport of xylo-oligosaccharides across the outer membrane. Collectively, data suggest xylan binding onto the bacterial surface and deconstruction and the xylan fragment uptake across the outer membrane. A comprehensive model for xylan utilization by C. crescentus develops to show features of previously proposed gut and plant pathogenic bacterial models. This study further advances the molecular level understanding of xylan derived nutrient acquisition in environmental bacteria.
Title: Xylan Deconstruction by Environmental Bacterium Caulobacter crescentus
Description:
Bacterial species display unique and common molecular mechanisms for nutrient acquisition depending on their habitat.
Molecular details of xylan utilization by plant pathogens and human commensal bacteria have been reported but no significant reports can be found for environmental bacteria.
Caulobacter crescentus is a gram-negative, oligotrophic, environmental bacterium with unique adaptations for growth in low-nutrient conditions.
C.
crescentus’ genome codes for a repertoire of genes that can facilitate xylan utilization as a carbon source for growth.
Polymeric xylan and xylan-derivative use by C.
crescentus was investigated in this work.
Growth, enzyme, metabolite, and gene expression analyses show possible membrane-bound enzymes for xylan deconstruction on the cell surface while enzymes for further deconstruction of xylan-derived oligosaccharides are concentrated in the periplasm.
TonB-dependent transporter (TBDT) inhibition data suggest that TBDT may be involved in the transport of xylo-oligosaccharides across the outer membrane.
Collectively, data suggest xylan binding onto the bacterial surface and deconstruction and the xylan fragment uptake across the outer membrane.
A comprehensive model for xylan utilization by C.
crescentus develops to show features of previously proposed gut and plant pathogenic bacterial models.
This study further advances the molecular level understanding of xylan derived nutrient acquisition in environmental bacteria.

Related Results

Caulobacter soli sp. nov., isolated from soil sampled at Jiri Mountain, Republic of Korea
Caulobacter soli sp. nov., isolated from soil sampled at Jiri Mountain, Republic of Korea
A Gram-stain-negative, yellow-pigmented, aerobic, non-spore-forming, motile with a single polar flagellum and rod-shaped bacterium, Ji-3-8T, was isolated from a soil sample taken f...
Xylan-degrading ability of thermophilic Actinobacteria from soil in a geothermal area
Xylan-degrading ability of thermophilic Actinobacteria from soil in a geothermal area
Abstract. Rachmania MK, Ningsih F, Setyaningsih PP, Syafitri WA, Sari DCAF, Yabe S, Yokota A, Oetari A, Sjamsuridjal W. 2020. Xylan-degrading ability of thermophilic Actinobacteria...
Improvement of Paper Strength by Increasing the Xylan Content
Improvement of Paper Strength by Increasing the Xylan Content
Extracted xylan from beech dissolving pulp and eucalyptus kraft pulp was precipitated on unrefined, bleached, once-dried softwood kraft pulp and sulfite pulp. The temperature, pH, ...
ACTIVITY OF PLASMID REPLICONS IN CAULOBACTER CRESCENTUS: RP4 AND ColE1
ACTIVITY OF PLASMID REPLICONS IN CAULOBACTER CRESCENTUS: RP4 AND ColE1
ABSTRACT The RP4 replicon was detected as covalently-closed circular DNA in Caulobacter crescentus strains into which it had been transferred from Escherichia coli. ...
Chemical Modification of Xylan
Chemical Modification of Xylan
Our study is part of the general context of valuing by-products from the wood industry, which consists of the chemical modification of xylan by synthesis of branched copolymers suc...
Cell cycle regulation by non-coding RNAs in Caulobacter crescentus
Cell cycle regulation by non-coding RNAs in Caulobacter crescentus
Etude de la régulation du cycle cellulaire par les ARN non codants dans l'organisme modèle Caulobacter crescentus Caulobacter crescentus est un organisme modèle pou...

Back to Top