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A Maize GT14 Family Glycosyltransferase Affects Cell Wall Composition and Carbohydrate Export from Source Leaves

  • Tyler McCubbin
  • , Rachel Mertz
  • , R. Baker
  • , Kristen Leach
  • , Brady Barron
  • , Saadia Bhimidine
  • , Sebastian Rueda
  • , Amit Basu
  • , Paul Chomet
  • , Ruth Wagner
  • , Karen Grote
  • , Jeanette Peevers
  • , Maureen McCann
  • , Nicholas Carpita
  • , Thomas Slewinski
  • , David Braun
  • University of Missouri
  • Brown University
  • Chomet Consulting
  • Bayer CropScience K.K.

Research output: Contribution to journalArticlepeer-review

Abstract

Sucrose translocation from photosynthetic leaves to distant parts of a plant, such as seeds and roots, is a critical aspect of plant growth and development and a major determinant of crop yield. To identify genes contributing to this process in maize (Zea mays), we isolated four allelic mutants, carbohydrate partitioning defective7, 48, 49 (cpd7, cpd48, cpd49) and a UniformMu insertion (mu1049954), all of which exhibited reduced growth and fertility and hyperaccumulation of starch and soluble sugars in mature leaves. Consistent with carbohydrate accumulation, cpd7 mutants exhibited reduced sucrose export from mature leaves. Cpd7 encodes a Golgi-resident glucuronosyltransferase belonging to the Glycosyltransferase14 (GT14) family, which is involved in decoration of type II arabinogalactan proteins. No previously described GT14 mutants exhibit reduced sucrose transport or carbohydrate partitioning defects. Additionally, we show that mature leaves of cpd7 mutants have reduced cellulose content and an altered cell wall composition. Further, cpd7 mutants exhibit ectopic phloem lignification likely as a compensatory mechanism for reduced cell wall integrity. Collectively, our data suggest that Cpd7 functions to facilitate cell wall development in the phloem, which is required for efficient sucrose export from mature maize leaves.
Original languageAmerican English
Number of pages45
JournalJournal of Experimental Botany
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-2800-98321

Keywords

  • arabinogalactan protein
  • carbohydrate partitioning
  • cell wall
  • Cpd7
  • glycosyltransferase
  • sucrose transport

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