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J Microbiol Biotechnol ; 21(2): 192-6, 2011 Feb.
Article in English | MEDLINE | ID: mdl-21364303

ABSTRACT

Microbial induction of rusty-root was proved in this study. The enzymes hydrolyzing plant structural materials, including pectinase, pectolyase, ligninase, and cellulase, caused the rusty-root in ginseng. Pectinase and pectolyase produced the highest rusty-color formation. Ferrous ion (Fe+++) caused the synergistic effect on rusty-root formation in ginseng when it was used with pectinase. The effect of ferric ion (Fe++) on rusty-root formation was slow, compared with Fe+++, probably due to gradual oxidation to Fe+++. Other metal ions including the ferric ion (Fe++) did not affect rusty-root formation. The endophytic bacteria Agrobacterium tumefaciens, Lysobacter gummosus, Pseudomonas veronii, Pseudomonas marginalis, Rhodococcus erythropolis, and Rhodococcus globerulus, and the rotten-root forming phytophathogenic fungus Cylindrocarpon destructans, caused rusty-root. The polyphenol formation (rusty color) was not significantly different between microorganisms. The rotten-root-forming C. destructans produced large quantities of external cellulase activity (about 2.3 U[micronM/min/mg protein]), which indicated the pathogenecity of the fungus, whereas the bacteria produced 0.1-0.7 U. The fungal external pectinase activities (0.05 U) and rusty-root formation activity were similar to those of the bacteria. In this report, we proved that microbial hydrolyzing enzymes caused rusty-root (Hue value 15 degrees) of ginseng, and ferrous ion worsened the symptom.


Subject(s)
Bacteria/enzymology , Hypocreales/enzymology , Panax/microbiology , Plant Diseases/microbiology , Bacteria/classification , Bacteria/metabolism , Bacteria/pathogenicity , Cellulose/metabolism , Enzyme Activators/metabolism , Ferrous Compounds/metabolism , Flavonoids/metabolism , Hydrolysis , Hypocreales/classification , Hypocreales/metabolism , Hypocreales/pathogenicity , Ions/metabolism , Phenols/metabolism , Plant Roots/microbiology , Polyphenols
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