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pmid: 26776474
Root-triggered processes (growth, uptake and release of solutes) vary in space and time, and interact with heterogeneous soil microenvironments that provide habitats for (micro)biota on various scales. Despite tremendous progress in method development in the past decades, finding a suitable experimental set-up to investigate processes occurring at the dynamic conjunction of biosphere, hydrosphere, and pedosphere in the close vicinity of active plant roots still represents a major challenge. We discuss recent methodological developments in rhizosphere research with a focus on imaging techniques. We further review established concepts that have been updated with novel techniques, highlighting the need for combinatorial approaches to disentangle rhizosphere processes on relevant scales.
Plant-soil interface, Imaging techniques, plant–soil interface, Root exudates, root exudates, Isotope tracing, 106023 Molekularbiologie, 401902 Soil science, Sequencing, isotope tracing, plant-microbe interaction, in situ visualization, 106022 Mikrobiologie, In situ visualization, Bacteria, Botany, sequencing, 106023 Molecular biology, Plants, 401902 Bodenkunde, imaging techniques, Isotope Labeling, Rhizosphere, 106022 Microbiology
Plant-soil interface, Imaging techniques, plant–soil interface, Root exudates, root exudates, Isotope tracing, 106023 Molekularbiologie, 401902 Soil science, Sequencing, isotope tracing, plant-microbe interaction, in situ visualization, 106022 Mikrobiologie, In situ visualization, Bacteria, Botany, sequencing, 106023 Molecular biology, Plants, 401902 Bodenkunde, imaging techniques, Isotope Labeling, Rhizosphere, 106022 Microbiology
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