Related Experiment Video
Updated: Feb 4, 2026

Molecular Entanglement and Electrospinnability of Biopolymers
Published on: September 3, 2014
Examining the interplay between Streptococcus agalactiae, the biopolymer chitin and its derivative
Mediha Yildirim-Aksoy1, Benjamin H Beck1, Dunhua Zhang1
1Aquatic Animal Health Research Unit, United States Department of Agriculture, Agricultural Research Service, Auburn, Alabama.
Abstract:
Streptococcus agalactiae is a highly pathogenic bacterium of aquatic species and terrestrial animals worldwide, whereas chitin and its derivative chitosan are among the most abundant biopolymers found in nature, including the aquatic milieu. The present investigation focused on the capability of S. agalactiae to degrade and utilize these polymers. Growth of S. agalactiae in the presence of colloid chitin, chitosan, or N-acetyl-glucosamine (GlcNAc) was evaluated. Chitosanase production was measured daily over 7 days of growth period and degraded products were evaluated with thin later chorography. Chitin had no effect on the growth of S. agalactiae. Degraded chitin, however, stimulated the growth of S. agalactiae. S. agalactiae cells did not produce chitinase to degrade chitin; however, they readily utilize GlcNAc (product of degraded chitin) as sole source of carbon and nitrogen for growth. Chitosan at high concentrations had antibacterial activities against S. agalactiae, while in the presence of lower than the inhibitory level of chitosan in the medium, S. agalactiae secrets chitosanase to degrade chitosan, and utilizes it to a limited extent to benefit growth. The interaction of S. agalactiae with chitin hydrolytes and chitosan could play a role in the diverse habitat distribution and pathogenicity of S. agalactiae worldwide.
Related Concept Videos
Measurement: Derived Units
Higher Derivatives
Urologic Endoscopic Procedure: Cystoscopic Examination
Derivatives
The Derivative as a Function
Derivatives: Problem Solving

