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Emergent Properties of Microbial Activity in Heterogeneous Soil Microenvironments: Different Research Approaches Are Slowly Converging Yet Major Challenges Remain

机译:非均质土壤微环境中微生物活性的新兴特性:不同的研究方法正在缓慢融合但仍然存在重大挑战

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摘要

Over the last 60 years, soil microbiologists have accumulated a wealth of experimental data showing that the bulk, macroscopic parameters (e.g., granulometry, pH, soil organic matter, and biomass contents) commonly used to characterize soils provide insufficient information to describe quantitatively the activity of soil microorganisms and some of its outcomes, like the emission of greenhouse gasses. Clearly, new, more appropriate macroscopic parameters are needed, which reflect better the spatial heterogeneity of soils at the microscale (i.e., the pore scale) that is commensurate with the habitat of many microorganisms. For a long time, spectroscopic and microscopic tools were lacking to quantify processes at that scale, but major technological advances over the last 15 years have made suitable equipment available to researchers. In this context, the objective of the present article is to review progress achieved to date in the significant research program that has ensued. This program can be rationalized as a sequence of steps, namely the quantification and modeling of the physical-, (bio)chemical-, and microbiological properties of soils, the integration of these different perspectives into a unified theory, its upscaling to the macroscopic scale, and, eventually, the development of new approaches to measure macroscopic soil characteristics. At this stage, significant progress has been achieved on the physical front, and to a lesser extent on the (bio)chemical one as well, both in terms of experiments and modeling. With regard to the microbial aspects, although a lot of work has been devoted to the modeling of bacterial and fungal activity in soils at the pore scale, the appropriateness of model assumptions cannot be readily assessed because of the scarcity of relevant experimental data. For significant progress to be made, it is crucial to make sure that research on the microbial components of soil systems does not keep lagging behind the work on the physical and (bio)chemical characteristics. Concerning the subsequent steps in the program, very little integration of the various disciplinary perspectives has occurred so far, and, as a result, researchers have not yet been able to tackle the scaling up to the macroscopic level. Many challenges, some of them daunting, remain on the path ahead. Fortunately, a number of these challenges may be resolved by brand new measuring equipment that will become commercially available in the very near future.
机译:在过去的60年中,土壤微生物学家积累了丰富的实验数据,这些数据表明,通常用于表征土壤的大量宏观参数(例如粒度,pH,土壤有机质和生物质含量)提供的信息不足以定量地描述其活性。土壤微生物及其某些结果,例如温室气体的排放。显然,需要新的,更合适的宏观参数,这些参数可以更好地反映与许多微生物的栖息地相对应的微观尺度(即孔隙尺度)的土壤空间异质性。长期以来,光谱和显微镜工具一直缺乏以这种规模量化过程的方法,但过去15年的重大技术进步已为研究人员提供了合适的设备。在这种情况下,本文的目的是回顾迄今为止所进行的重要研究计划所取得的进展。该程序可以按照一系列步骤进行合理化处理,即对土壤的物理,(生物)化学和微生物特性进行量化和建模,将这些不同的观点整合为一个统一的理论,并将其扩展到宏观规模,并最终开发了测量宏观土壤特征的新方法。在这一阶段,无论是在实验还是建模方面,在物理方面都取得了重大进展,在(生物)化学方面也取得了较小的进展。关于微生物方面,尽管已经进行了大量工作来模拟土壤在孔尺度上的细菌和真菌活性,但是由于缺乏相关的实验数据,因此无法容易地评估模型假设的适当性。为了取得重大进展,至关重要的是要确保对土壤系统微生物成分的研究不落后于物理和(生物)化学特性方面的工作。关于该程序的后续步骤,到目前为止,很少有各种学科观点的整合,因此,研究人员尚未能够解决从宏观上扩展的问题。许多挑战,其中有些令人生畏,仍在前进的道路上。幸运的是,许多这些挑战可以通过全新的测量设备解决,这些测量设备将在不久的将来投入商业使用。

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