真菌甲烷生产受氧气水平和温度控制

Methane Pub Date : 2024-04-19 DOI:10.3390/methane3020015
M. Schroll, K. Lenhart, Thomas Bender, Piet Hötten, Alexander Rudolph, Sven Sörensen, Frank Keppler
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摘要

溶菌真菌是全球碳循环中的关键角色,已被确定为甲烷(CH4)来源,但尚未纳入全球 CH4 预算。本研究首次探讨了氧气(O2)和温度对两种真菌--硫化莱蒂磷真菌(Laetiporus sulphureus)和钝顶真菌(Pleurotus sapidus)产生甲烷(CH4)的影响。为了探索这些参数与真菌 CH4 形成之间的关系,我们研究了在无菌条件下,真菌在松木、榉木和草地上生长时,在不同氧气水平(0 至 98%)和温度(17、27 和 40 °C)下的 CH4 形成情况。我们的研究结果表明,真菌甲烷的形成与氧气水平密切相关。当氧气含量超过 5%时,甲烷的形成量最高,而氧气完全消耗后,则没有观察到 CH4 的形成。重新引入氧气可立即恢复真菌的 CH4 生成。甲烷的形成与氧气消耗量(CH4_norm)的关系则显示出不同的模式。L. sulphureus 的 CH4_norm 率随 O2 水平的升高而升高,而 P. sapidus 则在 0% 和 5% 之间升高。温度对 CH4 和 CH4_norm 的产生率也有很大影响,27 °C时产生率最高,而 17 °C和 40 °C时则相对较低。这些发现证明了氧气水平和温度对真菌 CH4 排放的重要性,这对完善 CH4 来源预测至关重要。
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Fungal Methane Production Controlled by Oxygen Levels and Temperature
Saprotrophic fungi, key players in global carbon cycling, have been identified as methane (CH4) sources not yet accounted for in the global CH4 budget. This study, for the first time, explores the influence of oxygen (O2) and temperature on CH4 production by two fungi, Laetiporus sulphureus and Pleurotus sapidus. To explore the relationship between these parameters and fungal CH4 formation, we examined CH4 formation under varying O2 levels (0 to 98%) and temperatures (17, 27, and 40 °C) during fungal growth on pine wood, beech wood, and grass under sterile conditions. Our findings show that fungal CH4 formation strongly depends on O2 levels. Methane formation was highest when O2 levels exceeded 5%, whilst no CH4 formation was observed after complete O2 consumption. Reintroducing O2 immediately resumed fungal CH4 production. Methane formation normalized to O2 consumption (CH4_norm) showed a different pattern. L. sulphureus showed higher CH4_norm rates with higher O2 levels, whereas P. sapidus showed elevated rates between 0 and 5%. Temperature also significantly influenced CH4 and CH4_norm rates, with the highest production at 27 °C, and comparatively lower rates at 17 and 40 °C. These findings demonstrate the importance of O2 levels and temperature in fungal CH4 emissions, which are essential for refining CH4 source predictions.
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