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PhCESA3 silencing inhibits elongation and stimulates radial expansion in petunia.

Abstract
Cellulose synthase catalytic subunits (CESAs) play important roles in plant growth, development and disease resistance. Previous studies have shown an essential role of Arabidopsis thaliana CESA3 in plant growth. However, little is known about the role of CESA3 in species other than A. thaliana. To gain a better understanding of CESA3, the petunia (Petunia hybrida) PhCESA3 gene was isolated, and the role of PhCESA3 in plant growth was analyzed in a wide range of plants. PhCESA3 mRNA was present at varying levels in tissues examined. VIGS-mediated PhCESA3 silencing resulted in dwarfing of plant height, which was consistent with the phenotype of the A. thaliana rsw1 mutant (a temperature-sensitive allele of AtCESA1), the A. thaliana cev1 mutant (the AtCESA3 mild mutant), and the antisense AtCESA3 line. However, PhCESA3 silencing led to swollen stems, pedicels, filaments, styles and epidermal hairs as well as thickened leaves and corollas, which were not observed in the A. thaliana cev1 mutant, the rsw1 mutant and the antisense AtCESA3 line. Further micrographs showed that PhCESA3 silencing reduced the length and increased the width of cells, suggesting that PhCESA3 silencing inhibits elongation and stimulates radial expansion in petunia.
AuthorsWeiyuan Yang, Yuanping Cai, Li Hu, Qian Wei, Guoju Chen, Mei Bai, Hong Wu, Juanxu Liu, Yixun Yu
JournalScientific reports (Sci Rep) Vol. 7 Pg. 41471 (02 02 2017) ISSN: 2045-2322 [Electronic] England
PMID28150693 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Chemical References
  • DNA, Complementary
  • Plant Proteins
  • RNA, Messenger
  • Cellulose
  • Glucosyltransferases
  • cellulose synthase
Topics
  • Cell Size
  • Cell Wall (metabolism)
  • Cellulose (metabolism)
  • DNA, Complementary (isolation & purification)
  • Fertility
  • Flowers (growth & development)
  • Gene Expression Regulation, Plant
  • Gene Silencing
  • Genes, Plant
  • Glucosyltransferases (genetics, metabolism)
  • Petunia (anatomy & histology, genetics, growth & development, ultrastructure)
  • Phenotype
  • Phylogeny
  • Plant Proteins (genetics, metabolism)
  • RNA, Messenger (genetics, metabolism)

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