Expression Analysis of a Ripening-Specific, Auxin-Repressed Endo-1,4-β-Glucanase Gene in Strawberry

Author:

Harpster Mark H.1,Brummell David A.1,Dunsmuir Pamela1

Affiliation:

1. DNA Plant Technology, 6701 San Pablo Avenue, Oakland, California 94608

Abstract

Abstract A cDNA (Cel1) encoding an endo-1,4-β-glucanase (EGase) was isolated from ripe fruit of strawberry (Fragaria × ananassa). The deduced protein of 496 amino acids contains a presumptive signal sequence, a common feature of cell wall-localized EGases, and one potential N-glycosylation site. Southern- blot analysis of genomic DNA from F. × ananassa, an octoploid species, and that from the diploid species Fragaria vesca indicated that the Cel1 gene is a member of a divergent multigene family. In fruit, Cel1 mRNA was first detected at the white stage of development, and at the onset of ripening, coincident with anthocyanin accumulation, Cel1mRNA abundance increased dramatically and remained high throughout ripening and subsequent fruit deterioration. In all other tissues examined, Cel1 expression was invariably absent. Antibodies raised to Cel1 protein detected a protein of 62 kD only in ripening fruit. Upon deachenation of young white fruit to remove the source of endogenous auxins, ripening, as visualized by anthocyanin accumulation, and Cel1 mRNA accumulation were both accelerated. Conversely, auxin treatment of white fruit repressed accumulation of both Cel1 mRNA and ripening. These results indicate that strawberry Cel1 is a ripening-specific and auxin-repressed EGase, which is regulated during ripening by a decline in auxin levels originating from the achenes.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference51 articles.

1. Cellulase activity and ethylene in ripening strawberry and apple fruits.;Abeles;Sci Hortic,1990

2. Quantification of free ABA and free and conjugated IAA in strawberry achene and receptacle tissue during fruit development.;Archbold;J Am Soc Hortic Sci,1984

3. Cell wall degrading enzymes and the softening of senescent strawberry fruit.;Barnes;J Food Sci,1976

4. Synthesis and processing of cellulase from ripening avocado fruit.;Bennett;Plant Physiol,1986

5. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding.;Bradford;Anal Biochem,1976

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