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The emergent rhizosphere: imaging the development of the porous architecture at the root-soil interface

机译:出现的根际:对根-土界面处多孔结构的发展进行成像

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摘要

The rhizosphere is the zone of soil influenced by a plant root and is critical for plant health and nutrient acquisition. All below ground resources must pass through this dynamic zone prior to their capture by plant roots. However, researching the undisturbed rhizosphere has proved very challenging. Here we compare the temporal changes to the intact rhizosphere pore structure during the emergence of a developing root system in different soils. High resolution X-ray Computed Tomography (CT) was used to quantify the impact of root development on soil structural change, at scales relevant to individual micro-pores and aggregates (µm). A comparison of micro-scale structural evolution in homogenously packed soils highlighted the impacts of a penetrating root system in changing the surrounding porous architecture and morphology. Results indicate the structural zone of influence of a root can be more localised than previously reported (µm scale rather than mm scale). With time, growing roots significantly alter the soil physical environment in their immediate vicinity through reducing root-soil contact and crucially increasing porosity at the root-soil interface and not the converse as has often been postulated. This ‘rhizosphere pore structure’ and its impact on associated dynamics are discussed.
机译:根际是受植物根系影响的土壤区域,对于植物健康和养分获取至关重要。所有地下资源必须先通过此动态区,然后才能被植物根部捕获。然而,事实证明,研究未受干扰的根际非常困难。在这里,我们比较了在不同土壤中发育的根系出现期间,完整根际孔隙结构的时间变化。高分辨率X射线计算机断层扫描(CT)用于量化根系发育对土壤结构变化的影响,其尺度与单个微孔和聚集体(µm)有关。在均质堆积土壤中进行的微观尺度结构演化比较表明,渗透性根系对改变周围多孔结构和形态的影响。结果表明,根部影响的结构区域可能比以前报道的更为局部化(以微米为单位而不是毫米为单位)。随着时间的流逝,不断增长的根系通过减少根系与土壤之间的接触并显着增加根系与土壤之间的孔隙度而大大改变了其附近的土壤物理环境,而不是像通常那样相反。讨论了这种“根际孔隙结构”及其对相关动力学的影响。

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