RRC ID 6288
著者 Panikashvili D, Shi JX, Schreiber L, Aharoni A.
タイトル The Arabidopsis DCR encoding a soluble BAHD acyltransferase is required for cutin polyester formation and seed hydration properties.
ジャーナル Plant Physiol
Abstract The cuticle covering every plant aerial organ is largely made of cutin that consists of fatty acids, glycerol, and aromatic monomers. Despite the huge importance of the cuticle to plant development and fitness, our knowledge regarding the assembly of the cutin polymer and its integration in the complete cuticle structure is limited. Cutin composition implies the action of acyltransferase-type enzymes that mediate polymer construction through ester bond formation. Here, we show that a member of the BAHD family of acyltransferases (DEFECTIVE IN CUTICULAR RIDGES [DCR]) is required for incorporation of the most abundant monomer into the polymeric structure of the Arabidopsis (Arabidopsis thaliana) flower cutin. DCR-deficient plants display phenotypes that are typically associated with a defective cuticle, including altered epidermal cell differentiation and postgenital organ fusion. Moreover, levels of the major cutin monomer in flowers, 9(10),16-dihydroxy-hexadecanoic acid, decreased to an almost undetectable amount in the mutants. Interestingly, dcr mutants exhibit changes in the decoration of petal conical cells and mucilage extrusion in the seed coat, both phenotypes formerly not associated with cutin polymer assembly. Excessive root branching displayed by dcr mutants and the DCR expression pattern in roots pointed to the function of DCR belowground, in shaping root architecture by influencing lateral root emergence and growth. In addition, the dcr mutants were more susceptible to salinity, osmotic, and water deprivation stress conditions. Finally, the analysis of DCR protein localization suggested that cutin polymerization, possibly the oligomerization step, is partially carried out in the cytoplasmic space. Therefore, this study extends our knowledge regarding the functionality of the cuticular layer and the formation of its major constituent the polymer cutin.
巻・号 151(4)
ページ 1773-89
公開日 2009-12-1
DOI 10.1104/pp.109.143388
PII pp.109.143388
PMID 19828672
PMC PMC2785978
MeSH Acyltransferases / metabolism* Adhesives / metabolism Arabidopsis / cytology Arabidopsis / enzymology* Arabidopsis / ultrastructure Arabidopsis Proteins / metabolism* Cell Differentiation Cytosol / enzymology Dehydration Droughts Fatty Acids / metabolism Flowers / cytology Flowers / enzymology Flowers / ultrastructure Germination Membrane Lipids / biosynthesis* Mutation / genetics Organ Specificity Osmosis Phenotype Plant Epidermis / cytology Plant Epidermis / enzymology Plant Epidermis / ultrastructure Plant Roots / cytology Plant Roots / enzymology Plant Stems / cytology Plant Stems / enzymology Plant Stems / ultrastructure Polyesters / metabolism* Protein Transport Salinity Seeds / cytology Seeds / enzymology Seeds / metabolism* Seeds / ultrastructure Solubility Surface Properties Water / metabolism*
IF 6.902
引用数 101
WOS 分野 PLANT SCIENCES
リソース情報
シロイヌナズナ / 植物培養細胞・遺伝子 pst13552