Search results for " Paul Scherrer Institute"

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Microhydrological Niches in Soils: How Mucilage and EPS Alter the Biophysical Properties of the Rhizosphere and Other Biological Hotspots

2019

Plant roots and bacteria are capable of buffering erratic fluctuations of water content in their local soil environment by releasing a diverse, highly polymeric blend of substances (e.g. extracellular polymeric substances [EPS] and mucilage). Although this concept is well accepted, the physical mechanisms by which EPS and mucilage interact with the soil matrix and determine the soil water dynamics remain unclear. High-resolution X-ray computed tomography revealed that upon drying in porous media, mucilage (from maize [Zea mays L.] roots) and EPS (from intact biocrusts) form filaments and two-dimensional interconnected structures spanning across multiple pores. Unlike water, these mucilage a…

lcsh:GE1-350lcsh:GeologyEPS extracellular polymeric substances; PSI Paul Scherrer Institute; SRXTM synchrotronbased X-ray tomographic microscopy.lcsh:QE1-996.5630lcsh:Environmental sciencesVadose Zone Journal
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