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TZUNTIL:20241027T010000Z
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DTSTART:20221030T030000
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RDATE:20231029T030000
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DTSTAMP:20260829T232551Z
DESCRIPTION:The functional role and genetic control of many root anatomical
  and architectural traits are poorly understood. My group&rsquo\;s researc
 h focuses on characterizing root anatomical and architectural traits for e
 nhanced stress tolerance and identifying genetic mechanisms controlling th
 e expression of root traits. For example\, we have identified genes contro
 lling root growth angle and root cortical aerenchyma formation using forwa
 rd and reverse genetics and have demonstrated the functional utility of th
 ese traits for nutrient and water capture. In this presentation\, I will d
 iscuss several examples of root phenotypes\, their function\, and genetic 
 control including multiseriate cortical sclerenchyma\, root cortical aeren
 chyma\, and root plasticity. We integrate phenomic\, genomic\, and in sili
 co technologies to characterize root traits and genes associated with thei
 r expression that enhance plant productivity and abiotic stress tolerance.
  The identification of genes and functional phenotypes of root traits will
  facilitate efforts for the development of novel nutrient and water effici
 ent crop varieties.\n*** invited by Dr. Mutez Ahmed\, Soil Physics
DTSTART;TZID=Europe/Berlin:20221110T000000
DTEND;TZID=Europe/Berlin:20221110T235959
SUMMARY:Dr. Hannah Schneider\, Centre for Crop Systems Analysis\, Wageninge
 n University (Homepage): Root Phenotypes for Crop Improvement
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