AI Article Synopsis

  • Pectins are complex polysaccharides found in cell walls, making their biosynthesis and functionality challenging to study due to the lack of specific mutants.
  • Two allelic mutants, quasimodo1 (qua1-1 and qua1-2), exhibit stunted growth and reduced cell adhesion, with a significant decrease in galacturonic acid levels (a key component of pectin) compared to the wild type.
  • Both mutants have a T-DNA insertion in the QUAS1 gene, which encodes a glycosyltransferase, suggesting that this protein plays a crucial role in pectin synthesis and that similar genes in Arabidopsis might be important for pectin biosynthesis and cell adhesion.

Article Abstract

Pectins are a highly complex family of cell wall polysaccharides. As a result of a lack of specific mutants, it has been difficult to study the biosynthesis of pectins and their role in vivo. We have isolated two allelic mutants, named quasimodo1 (qua1-1 and qua1-2), that are dwarfed and show reduced cell adhesion. Mutant cell walls showed a 25% reduction in galacturonic acid levels compared with the wild type, indicating reduced pectin content, whereas neutral sugars remained unchanged. Immersion immunofluorescence with the JIM5 and JIM7 monoclonal antibodies that recognize homogalacturonan epitopes revealed less labeling of mutant roots compared with the wild type. Both mutants carry a T-DNA insertion in a gene (QUA1) that encodes a putative membrane-bound glycosyltransferase of family 8. We present evidence for the possible involvement of a glycosyltransferase of this family in the synthesis of pectic polysaccharides, suggesting that other members of this large multigene family in Arabidopsis also may be important for pectin biosynthesis. The mutant phenotype is consistent with a central role for pectins in cell adhesion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC151237PMC
http://dx.doi.org/10.1105/tpc.004259DOI Listing

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