Abstract
The increased production of ethylene during carnation petal senescence regulates the transcription of the GST1 gene encoding a subunit of glutathione-S-transferase. We have investigated the molecular basis for this ethylene-responsive transcription by examining the cis elements and trans-acting factors involved in the expression of the GST1 gene. Transient expression assays following delivery of GST1 5' flanking DNA fused to a beta-glucuronidase receptor gene were used to functionally define sequences responsible for ethylene-responsive expression. Deletion analysis of the 5' flanking sequences of GST1 identified a single positive regulatory element of 197 bp between -667 and -470 necessary for ethylene-responsive expression. The sequences within this ethylene-responsive region were further localized to 126 bp between -596 and -470. The ethylene-responsive element (ERE) within this region conferred ethylene-regulated expression upon a minimal cauliflower mosaic virus-35S TATA-box promoter in an orientation-independent manner. Gel electrophoresis mobility-shift assays and DNase I footprinting were used to identify proteins that bind to sequences within the ERE. Nuclear proteins from carnation petals were shown to specifically interact with the 126-bp ERE and the presence and binding of these proteins were independent of ethylene or petal senescence. DNase I footprinting defined DNA sequences between -510 and -488 within the ERE specifically protected by bound protein. An 8-bp sequence (ATTTCAAA) within the protected region shares significant homology with promoter sequences required for ethylene responsiveness from the tomato fruit-ripening E4 gene.
MeSH Terms
Base Sequence
DNA Primers/chemistry
DNA-Binding Proteins/physiology
Enhancer Elements, Genetic
Ethylenes/metabolism
Gene Expression Regulation
Genes, Plant
Glutathione Transferase/genetics
Molecular Sequence Data
Nuclear Proteins/physiology
Plant Proteins/genetics
Plants/genetics
Promoter Regions, Genetic
RNA, Messenger/genetics
Chemicals
DNA Primers
DNA-Binding Proteins
Ethylenes
Nuclear Proteins
Plant Proteins
RNA, Messenger
ethylene
Glutathione Transferase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Itzhaki H
Department of Horticulture, Purdue University, West Lafayette, IN 47907-1165.
Maxson J M
Woodson W R
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