Cloning and characterization of GLOSSY1, a maize gene involved in cuticle membrane and wax production

被引:94
作者
Sturaro, M
Hartings, H
Schmelzer, E
Velasco, R
Salamini, F
Motto, M [1 ]
机构
[1] Ist Sperimentale Cerealicoltura, Sez Bergamo, I-24126 Bergamo, Italy
[2] Max Planck Inst Zuchtungsforsch, D-50829 Cologne, Germany
关键词
D O I
10.1104/pp.104.058164
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The cuticle covering the aerial organs of land plants plays a protective role against several biotic and abiotic stresses and, in addition, participates in a variety of plant-insect interactions. Here, we describe the molecular cloning and characterization of the maize (Zea mays) GLOSSY1 (GL1) gene, a component of the pathway leading to cuticular wax biosynthesis in seedling leaves. The genomic and cDNA sequences we isolated differ significantly in length and in most of the coding region from those previously identified. The predicted GL1 protein includes three histidine-rich domains, the landmark of a family of membrane-bound desaturases/hydroxylases, including fatty acid-modifying enzymes. GL1 expression is not restricted to the juvenile developmental stage of the maize plant, pointing to a broader function of the gene product than anticipated on the basis of the mutant phenotype. Indeed, in addition to affecting cuticular wax biosynthesis, g/1 mutations have a pleiotropic effect on epidermis development, altering trichome size and impairing cutin structure. Of the many wax biosynthetic genes identified so far, only a few from Arabidopsis (Arabidopsis thaliana) were found to be essential for normal cutin formation. Among these is WAX2, which shares 62% identity with GL1 at the protein level. In wax2-defective plants, cutin alterations induce postgenital organ fusion. This trait is not displayed by g/1 mutants, suggesting a different role of the maize and Arabidopsis cuticle in plant development.
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页码:478 / 489
页数:12
相关论文
共 39 条
[1]   Molecular characterization of the CER1 gene of arabidopsis involved in epicuticular wax biosynthesis and pollen fertility [J].
Aarts, MGM ;
Keijzer, CJ ;
Stiekema, WJ ;
Pereira, A .
PLANT CELL, 1995, 7 (12) :2115-2127
[2]   CRINKLY4: A TNFR-like receptor kinase involved in maize epidermal differentiation [J].
Becraft, PW ;
Stinard, PS ;
McCarty, DR .
SCIENCE, 1996, 273 (5280) :1406-1409
[3]   CLONING OF THE ZEA-MAYS CONTROLLING ELEMENT-AC FROM THE WX-M7 ALLELE [J].
BEHRENS, U ;
FEDOROFF, N ;
LAIRD, A ;
MULLERNEUMANN, M ;
STARLINGER, P ;
YODER, J .
MOLECULAR AND GENERAL GENETICS, 1984, 194 (1-2) :346-347
[4]  
BIANCHI A, 1985, MAYDICA, V30, P179
[5]  
BIANCHI G, 1977, MAYDICA, V22, P9
[6]   Cloning and characterization of the WAX2 gene of Arabidopsis involved in cuticle membrane and wax production [J].
Chen, XB ;
Goodwin, SM ;
Boroff, VL ;
Liu, XL ;
Jenks, MA .
PLANT CELL, 2003, 15 (05) :1170-1185
[7]  
EVANS MMS, 1994, DEVELOPMENT, V120, P1971
[8]   The glossy1 locus of maize and an epidermis-specific cDNA from Kleinia odora define a class of receptor-like proteins required for the normal accumulation of cuticular waxes [J].
Hansen, JD ;
Pyee, J ;
Xia, Y ;
Wen, TJ ;
Robertson, DS ;
Kolattukudy, PE ;
Nikolau, BJ ;
Schnable, PS .
PLANT PHYSIOLOGY, 1997, 113 (04) :1091-1100
[9]   LEAF EPICUTICULAR WAXES OF THE ECERIFERUM MUTANTS IN ARABIDOPSIS [J].
JENKS, MA ;
TUTTLE, HA ;
EIGENBRODE, SD ;
FELDMANN, KA .
PLANT PHYSIOLOGY, 1995, 108 (01) :369-377
[10]   CHEMICALLY-INDUCED CUTICLE MUTATION AFFECTING EPIDERMAL CONDUCTANCE TO WATER-VAPOR AND DISEASE SUSCEPTIBILITY IN SORGHUM-BICOLOR (L) MOENCH [J].
JENKS, MA ;
JOLY, RJ ;
PETERS, PJ ;
RICH, PJ ;
AXTELL, JD ;
ASHWORTH, EN .
PLANT PHYSIOLOGY, 1994, 105 (04) :1239-1245