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TZUNTIL:20211031T010000Z
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DTSTART:20181028T030000
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DESCRIPTION:&nbsp\;\nIndividual plants vary in their ability to respond to 
 environmental changes. The plastic response of a plant enhances its abilit
 y to avoid environmental constraints\, and hence supports growth and repro
 duction\, and evolutionary and agricultural success. Due to the opaque nat
 ure of soil\, a direct observation of belowground processes is not possibl
 e. Major progress in the analysis of belowground processes on individual p
 lants has been made by the application of non-invasive imaging methods inc
 luding Magnetic Resonance Imaging (MRI) and Positron Emission Tomography (
 PET).MRI allows for repetitive measurements of roots growing in soil and f
 acilitates quantification of root system architecture traits. PET\, on the
  other hand\, opens a door to analyze dynamic physiological processes in p
 lants such as long-distance carbon transport in an also repeatable manner.
  Combining MRI with PET enables monitoring of carbon tracer allocation alo
 ng the transport paths (e.g. roots visualized by MRI) into active sink str
 uctures such as nodules. We will highlight our approaches for gathering qu
 antitative data from both image-based technologies. In particular the comb
 ination of MRI and PET has high potential for gaining deeper insights into
  dynamics of root growth and\, for example\, interactions with microbes fo
 r revealing novel traits demanded in breeding programs for future crops.\n
 &nbsp\;\ninvited by Johanna Pausch\, Agroecology
DTSTART;TZID=Europe/Berlin:20191017T120000
DTEND;TZID=Europe/Berlin:20191017T133000
SUMMARY:Dr. Robert Koller\, IBG-2 (Plant Sciences)\, Forschungszentrum Jüli
 ch (Homepage): The dark side of plants: Monitoring spatio-temporal dynamic
 s of roots by non-invasive technologies
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