Laboratory of Conservation and Dynamic of Volcanic Soils, Department of Chemical Sciences and Natural Resources, Universidad de La Frontera, Temuco, Chile.
Center of Plant, Soil Interaction and Natural Resources Biotechnology. Scientific and Technological Bioresource Nucleus (BIOREN), Universidad de La Frontera, Temuco, Chile.
Sci Rep. 2020 Jul 9;10(1):11289. doi: 10.1038/s41598-020-67953-z.
In temperate rainforest soils of southern Chile (38 °S), there are high rates of soil organic carbon (SOC) mineralization under oxygen (O) limitation. We study the combined effects of Fenton reactions and the activity of two enzymes manganese peroxidase (MnP) and lignin peroxidase (LiP), which was hypothesised potentiate SOC mineralization under anoxic conditions leading to carbon dioxide (CO) release. Both mechanisms produce free radicals when competing for SOC oxidation in the absence of microorganisms. We quantify the CO release by induced Fenton reactions in combination with MnP and LiP under aerobic and anaerobic conditions (20 °C, 36 h) in temperate rainforest soils. CO levels released by Fenton reactions and enzyme activity were eight times higher than those released by Fenton reaction and peroxidase enzymes in individual treatment. Approximately 31% of the CO released under aerobic soil incubation was found to be abiotic (sterilized), while 69% was biotic (non-sterilized soils), and respective values of 17% and 83% were recorded under anaerobic conditions. The relative fluorescence intensity clearly shows ·OH radicals production from Fenton reactions. In conclusion, levels of MnP and LiP coupled with Fenton reactions strongly increase SOC mineralization under long periods of O limitation in temperate rainforest soils.
在智利南部(38°S)的温带雨林土壤中,在氧气(O)限制下,土壤有机碳(SOC)的矿化速率很高。我们研究了芬顿反应(Fenton reactions)和两种酶锰过氧化物酶(MnP)和木质素过氧化物酶(LiP)活性的综合影响,这两种酶被假设在缺氧条件下会增强 SOC 的矿化作用,导致二氧化碳(CO)释放。这两种机制在没有微生物的情况下争夺 SOC 氧化时都会产生自由基。我们在有氧和无氧条件下(20°C,36 小时)量化了芬顿反应与 MnP 和 LiP 结合在温带雨林土壤中产生的 CO 释放。芬顿反应和酶活性产生的 CO 水平比单独处理时芬顿反应和过氧化物酶产生的 CO 水平高 8 倍。有氧土壤培养释放的 CO 中约有 31%是无生命的(灭菌),而 69%是有生命的(非灭菌土壤),在无氧条件下分别记录到 17%和 83%。相对荧光强度清楚地表明了芬顿反应产生的·OH 自由基。总之,在温带雨林土壤中长时间的 O 限制下,MnP 和 LiP 与芬顿反应相结合,会强烈增加 SOC 的矿化作用。