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Boreal tree species affect soil organic matter composition and saprotrophic mineralization rates

机译:北部树种影响土壤有机质组合物和嗜血毛癖矿化率

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摘要

Aims To investigate how different tree species affect the composition of SOM and its mineralization in boreal forest ecosystems. Methods We used pyrolysis GC-MS for molecular-level characterization of the SOM formed under five common boreal tree species at a replicated field experiment similar to 50years after plantation. We incubated soil samples at 4, 9, 14 and 19 degrees C and measured inherent CO2 production and substrate-induced respiration. We then evaluated if the saprotrophic microbial activity and its temperature sensitivity was controlled by the SOM composition. Results The molecular composition of the SOM emerged as key factor influencing SOM properties in plots with different tree species. Most of the variance in the SOM content was explained by the organo-chemical composition of the SOM. More importantly, the fraction of the microbial community able to utilize the native SOM was largely controlled by the SOM organo-chemical composition. Temperature sensitivity of CO2 production (Q(10)) was not explained by SOM composition. However, the microbial access to different SOM pools varied with temperature. Conclusions These results bridge the gap between the paradigms of short-term litter and long-term SOM decomposition showing that, on an intermediate timescale (similar to 50 years), boreal tree species affect SOM molecular composition and saprotrophic mineralization rates.
机译:旨在探讨如何影响罗马林生态系统中SOM及其矿化的不同树种。方法采用热解GC-MS进行热解GC-MS进行分子水平表征SOM,在常见的野生树种下形成的SOM,其在植物中类似于50年的50年。我们在4,9,14和19℃下孵育土壤样品,并测量固有的CO 2产生和基材诱导的呼吸。然后,如果SOM组合物控制嗜热微生物活性及其温度敏感性,则评估。结果SOM的分子组合物出现为影响含有不同树种图谱的SOM属性的关键因素。 SOM的有机化学成分解释了SOM含量的大多数方差。更重要的是,能够利用天然SOM的微生物群落的分数大大受到SOM有机化学组合物的控制。 SOM组合物未解释CO 2生产的温度敏感性(Q(10))。然而,对不同SOM池的微生物进入随温度而变化。结论这些结果弥合了短期凋落物和长期SOM分解之间的差距,表明,在中间时间阶段(类似于50年),北方树种物种会影响SOM分子组合物和嗜血癖矿化率。

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