Virus-Induced Silencing of a Plant Cellulose Synthase Gene
- 1 May 2000
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 12 (5) , 691-705
- https://doi.org/10.1105/tpc.12.5.691
Abstract
Specific cDNA fragments corresponding to putative cellulose synthase genes (CesA) were inserted into potato virus X vectors for functional analysis in Nicotiana benthamiana by using virus-induced gene silencing. Plants infected with one group of cDNAs had much shorter internode lengths, small leaves, and a “dwarf” phenotype. Consistent with a loss of cell wall cellulose, abnormally large and in many cases spherical cells ballooned from the undersurfaces of leaves, particularly in regions adjacent to vascular tissues. Linkage analyses of wall polysaccharides prepared from infected leaves revealed a 25% decrease in cellulose content. Transcript levels for at least one member of the CesA cellulose synthase gene family were lower in infected plants. The decrease in cellulose content in cell walls was offset by an increase in homogalacturonan, in which the degree of esterification of carboxyl groups decreased from ∼50 to ∼33%. The results suggest that feedback loops interconnect the cellular machinery controlling cellulose and pectin biosynthesis. On the basis of the phenotypic features of the infected plants, changes in wall composition, and the reduced abundance of CesA mRNA, we concluded that the cDNA fragments silenced one or more cellulose synthase genes.Keywords
This publication has 44 references indexed in Scilit:
- Fast forward genetics based on virus-induced gene silencingCurrent Opinion in Plant Biology, 1999
- Gene silencing from plant DNA carried by a GeminivirusThe Plant Journal, 1998
- Structural features of cell walls from tomato cells adapted to grow on the herbicide 2,6‐dichlorobenzonitrileJournal of Microscopy, 1994
- The plant Golgi apparatus: a factory for complex polysaccharides and glycoproteinsTrends in Biochemical Sciences, 1993
- Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growthThe Plant Journal, 1993
- Cell Wall Structure in Cells Adapted to Growth on the Cellulose-Synthesis Inhibitor 2,6-DichlorobenzonitrilePlant Physiology, 1992
- Potato virus X as a vector for gene expression in plantsThe Plant Journal, 1992
- New Ways to Look at the Architecture of Plant Cell WallsPlant Physiology, 1989
- Xyloglucans in the Primary Cell WallAnnual Review of Plant Biology, 1989
- Conformations and interactions of pectinsJournal of Molecular Biology, 1982