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Plant Secondary Metabolitesa??Missing Pieces in the Soil Organic Matter Puzzle of Boreal Forests

机译:植物次生代谢产物?北方森林土壤有机质拼图中的遗留物

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摘要

Processes underlying soil organic matter (SOM) transformations are meeting growing interest as SOM contains more carbon (C) than global vegetation and the atmosphere combined. Therefore, SOM is a crucial element of the C cycle, especially in ecosystems rich in organic matter, such as boreal forests. However, climate change may shift the fate of this SOM from C sink into C source, accelerating global warming. These processes require a better understanding of the involved mechanisms driving both the C cycle and the interlinked nitrogen (N) cycle. SOM transformations are balanced by a network of interactions between biological, chemical and physical factors. In this review, we discuss the findings of the most recent studies to the current state of knowledge about the main drivers in SOM transformations. We focus on plant-derived secondary metabolites, as their biochemical traits, especially interactions with soil microbial communities, organic N compounds and enzymes make them potential regulators of SOM decomposition. However, these regulatory abilities of plant-derived compounds are not fully explored.
机译:随着土壤有机质(SOM)的碳含量(C)高于全球植被和大气的总和,土壤有机质(SOM)转化的潜在过程正受到越来越多的关注。因此,SOM是碳循环的关键要素,特别是在富含有机质的生态系统(如北方森林)中。但是,气候变化可能会将这种SOM的命运从碳汇转移到碳源,从而加速全球变暖。这些过程需要更好地了解驱动C循环和互连氮(N)循环的相关机制。 SOM转换通过生物学,化学和物理因素之间的相互作用网络来平衡。在本文中,我们讨论了有关SOM转换中主要驱动因素的最新知识的最新研究结果。我们关注植物衍生的次生代谢产物,因为它们的生化特性,尤其是与土壤微生物群落,有机氮化合物和酶的相互作用使其成为SOM分解的潜在调节剂。但是,尚未充分探讨植物来源化合物的这些调节能力。

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