Ethylene Insensitivity Conferred by theGreen-ripeandNever-ripe 2Ripening Mutants of Tomato
Open Access
- 1 May 2005
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 138 (1) , 267-275
- https://doi.org/10.1104/pp.104.057745
Abstract
The ripening of a fleshy fruit represents the summation of an array of biochemical processes that are regulated by interactions between developmental programs and environmental inputs. Analysis of tomato (Solanum lycopersicum) mutants and inhibitor studies indicate that ethylene is necessary for full development of the ripening program of climacteric fruit such as tomato, yet ethylene alone is not sufficient. This suggests that an interaction between ethylene and nonethylene (or developmental) pathways mediates ripening. In this study, we have examined the physiological basis for ripening inhibition of the dominant Green-ripe (Gr) and Never-ripe 2 (Nr-2) mutants of tomato. Our data suggest that this inhibition is due to ethylene insensitivity in mutant fruit. Further investigation of ethylene responses in Gr and Nr-2 plants also revealed weak ethylene insensitivity during floral senescence and abscission and, during inhibition of root elongation, a phenotype associated with the triple response. However, ethylene-induced inhibition of hypocotyl elongation and petiole epinasty are normal in Gr and Nr-2, suggesting that these loci regulate a subset of ethylene responses. We have mapped both dominant mutations to a 2-cM overlapping region of the long arm of chromosome 1 of tomato, a region not previously linked to any known ethylene signaling loci. The phenotypic similarity and overlapping map location of these mutations suggest Gr and Nr-2 may be allelic and may possibly encode a novel component of the ethylene response pathway.Keywords
This publication has 45 references indexed in Scilit:
- Convergence of Signaling Pathways in the Control of Differential Cell Growth in ArabidopsisDevelopmental Cell, 2004
- Five components of the ethylene-response pathway identified in a screen for weak ethylene-insensitive mutants in ArabidopsisProceedings of the National Academy of Sciences, 2003
- Molecular and Genetic Characterization of a Non-Climacteric Phenotype in Melon Reveals Two Loci Conferring Altered Ethylene Response in FruitPlant Physiology, 2002
- Regulation of Ethylene Biosynthesis in Response to Pollination in Tomato FlowersPlant Physiology, 2000
- Ethylene‐regulated gene expression in tomato fruit: characterization of novel ethylene‐responsive and ripening‐related genes isolated by differential displayThe Plant Journal, 1999
- HOOKLESS1, an Ethylene Response Gene, Is Required for Differential Cell Elongation in the Arabidopsis HypocotylCell, 1996
- Microprep protocol for extraction of DNA from tomato and other herbaceous plantsPlant Molecular Biology Reporter, 1995
- The never ripe mutation blocks ethylene perception in tomato.Plant Cell, 1994
- Regulation of Gene Expression by Ethylene in Wild-Type and rin Tomato (Lycopersicon esculentum) FruitPlant Physiology, 1988
- Ethylene stimulates the accumulation of ripening‐related mRNAs in tomatoesPlant, Cell & Environment, 1987