Published June 1990 | Version v1
Journal article

Mineralization of 14C-ring-labeled synthetic lignin correlates with the production of lignin peroxidase, not of manganese peroxidase or laccase

  • 1. Department of Agriculture, Madison, WI (USA)

Description

Recently, Mn(II) has been shown to induce manganese peroxidases (MnPs) and repress lignin peroxidases (LiPs) in defined liquid cultures of several white rot organisms. The present work shows that laccase is also regulated by Mn(II). We therefore used Mn(II) to regulate production of LiP, MnP, and laccase activities while determining the effects of Mn(II) on mineralization of ring-labeled synthetic lignin. At a low Mn(II) level, Phanerochaete chrysosporium and Phlebia brevispora produced relatively high titers of LiPs but only low titers of MnPs. At a high Mn(II) level, MnP titers increased 12- to 20-fold, but LiPs were not detected in crude broths. P. brevispora formed much less LiP then P. chrysosporium, but it also produced laccase activity that increased more than sevenfold at the high Mn(II) level. The rates of synthetic lignin mineralization by these organisms were similar and were almost seven times higher at low than at high Mn(II). Increased synthetic lignin mineralization therefore correlated with increased LiP, not with increased MnP or laccase activities

Additional details

Additional titles

Augmented title (English)
Phanerochaete chrysosporium; Phlebia brevispora

Publishing Information

Journal Title
Applied and Environmental Microbiology
Journal Volume
56
Journal Issue
6
Series
Appl. Environ. Microbiol.
Journal Page Range
1806-1812
ISSN
0099-2240
CODEN
AEMID