首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Mineralization of 14C-Ring-Labeled Synthetic Lignin Correlates with the Production of Lignin Peroxidase not of Manganese Peroxidase or Laccase
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Mineralization of 14C-Ring-Labeled Synthetic Lignin Correlates with the Production of Lignin Peroxidase not of Manganese Peroxidase or Laccase

机译:14C环标记的合成木质素的矿化与木质素过氧化物酶(而不是锰过氧化物酶或漆酶)的产生相关

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摘要

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 than 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.
机译:最近,在几种白腐病菌的特定液体培养物中,Mn(II)已显示出诱导锰过氧化物酶(MnPs)和抑制木质素过氧化物酶(LiPs)的作用。目前的工作表明漆酶也受Mn(II)调节。因此,我们使用Mn(II)来调节LiP,MnP和漆酶活性的产生,同时确定Mn(II)对环标记合成木质素矿化的影响。在较低的Mn(II)水平下,Phanerochaete chrysosporium和Phlebia brevispora产生相对较高的LiPs滴度,但仅产生较低的MnPs滴度。在较高的Mn(II)水平下,MnP滴度增加了12至20倍,但在粗肉汤中未检测到LiPs。短孢子虫形成的LiP比金孢子菌少得多,但它也产生漆酶活性,在高Mn(II)水平下漆酶活性增加了七倍以上。这些生物合成的木质素矿化速率是相似的,在低锰(II)下几乎高出七倍。因此,合成木质素矿化的增加与LiP的增加有关,而不与MnP或漆酶活性的增加有关。

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