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首页> 外文期刊>Applied Soil Ecology >Integrating chemical, biological and soil fauna variables during beech leaf litter decay: A partial least squares approach for a comprehensive view of the decomposition process
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Integrating chemical, biological and soil fauna variables during beech leaf litter decay: A partial least squares approach for a comprehensive view of the decomposition process

机译:山毛榉叶片腐烂期间整合化学,生物和土壤动物区变量:局部最小二乘方法,了解分解过程的全面视图

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摘要

Litter decomposition is an ecosystem process that is regulated by a multitude of factors and by their complex interactions. Current decomposition paradigms do not always offer a coherent view of the process because it can be hardly understood without a thorough analysis of interacting factors. Thus, there is a need to further understand the mechanics of litter decay with a comprehensive approach, especially in temperate forest ecosystems where decomposition plays a crucial role in regulating them as source or sink of CO2. Therefore, the aim of this work was to identify the interactions between chemical, biological and soil fauna variables in order to discern driving variables and the changes in their interactions during long-time (1300?days) beech leaf litter decomposition. In order to investigate patterns of variation and co-variation within and between datasets, we used Two-block Partial Least Squares, helping us to interpret the decomposition process with a systemic approach. Our key findings showed that the decomposition process of beech litter in two Mediterranean forests was driven by litter quality at the beginning and in the later stages of decomposition, while edaphic and climatic factors were implied in the central steps, with a dramatic change of scenario around 2.5?years. Simultaneous and interacting changes in chemical variables, extracellular enzyme activities, and soil fauna were shown, with a significant role of lignocellulosic components and enzymes involved in their degradation, Mn residual weight, and abundance of Collembola.
机译:乱扔垃圾分解是一种生态系统过程,其由多种因素和复杂的相互作用进行调节。目前的分解范式并不总是提供对过程的连贯视图,因为在没有对相互作用因素的彻底分析的情况下也可以很难理解。因此,需要通过综合方法进一步了解垃圾衰减的机制,特别是在温带森林生态系统中,其中分解在将它们调节为CO2的源或水槽时作出至关重要的作用。因此,这项工作的目的是识别化学,生物和土壤动物区变量之间的相互作用,以便在长时间(1300?天)山毛榉叶垃圾分解中辨别出驾驶变量和其交互的变化。为了调查数据集内部和之间的变化和协同变化模式,我们使用了两个块部分最小二乘法,帮助我们用系统方法来解释分解过程。我们的主要研究结果表明,两名地中海森林中Beech垃圾的分解过程是由垃圾质量在分解的后期和后期的阶段驱动的,而副本和气候因素被暗示在中央步骤中,剧烈改变了场景的戏剧性变化2.5?年。显示出化学变量,细胞外酶活性和土壤动物的同时和相互作用的变化,具有显着作用的木质纤维素组分和参与其降解,Mn残留重量和丰富的密封栓的酶。

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