Physiology and molecular biology of petal senescence
Open Access
- 1 February 2008
- journal article
- review article
- Published by Oxford University Press (OUP) in Journal of Experimental Botany
- Vol. 59 (3), 453-480
- https://doi.org/10.1093/jxb/erm356
Abstract
Petal senescence is reviewed, with the main emphasis on gene expression in relation to physiological functions. Autophagy seems to be the major mechanism for large-scale degradation of macromolecules, but it is still unclear if it contributes to cell death. Depending on the species, petal senescence is controlled by ethylene or is independent of this hormone. EIN3-like (EIL) transcription factors are crucial in ethylene-regulated senescence. The presence of adequate sugar levels in the cell delays senescence and prevents an increase in the levels of EIL mRNA and the subsequent up-regulation of numerous senescence-associated genes. A range of other transcription factors and regulators are differentially expressed in ethylene-sensitive and ethylene-insensitive petal senescence. Ethylene-independent senescence is often delayed by cytokinins, but it is still unknown whether these are natural regulators. A role for caspase-like enzymes or metacaspases has as yet not been established in petal senescence, and a role for proteins released by organelles such as the mitochondrion has not been shown. The synthesis of sugars, amino acids, and fatty acids, and the degradation of nucleic acids, proteins, lipids, fatty acids, and cell wall components are discussed. It is claimed that there is not enough experimental support for the widely held view that a gradual increase in cell leakiness, resulting from gradual plasma membrane degradation, is an important event in petal senescence. Rather, rupture of the vacuolar membrane and subsequent rapid, complete degradation of the plasma membrane seems to occur. This review recommends that more detailed analysis be carried out at the level of cells and organelles rather than at that of whole petals.Keywords
This publication has 188 references indexed in Scilit:
- Relationship between petal abscission and programmed cell death in Prunus yedoensis and Delphinium belladonnaPlanta, 2007
- Nuclear fragmentation and DNA degradation during programmed cell death in petals of morning glory (Ipomoea nil)Planta, 2006
- Identification of genes associated with perianth senescence in Daffodil (Narcissus pseudonarcissus L. ‘Dutch Master’)Plant Science, 2002
- Categories of Petal Senescence and Abscission: A Re-evaluationAnnals of Botany, 2001
- Activities of nucleases in senescing daylily petalsPlant Physiology and Biochemistry, 2000
- Characterization of proteolytic activity during senescence in dayliliesPhysiologia Plantarum, 1998
- Programmed cell death of daylily petals: Activities of wall-based enzymes and effects of heat shockPlant Physiology and Biochemistry, 1998
- Oxidative events during programmed cell death of daylily (Hemerocallis hybrid) petalsPlant Science, 1998
- Up-regulation of a cysteine protease accompanies the ethylene-insensitive senescence of daylily (Hemerocallis) flowersPlant Molecular Biology, 1995
- Influence of ethylene on enzyme activities and mobilization of materials in pollinatedArachnis orchid flowersJournal of Plant Growth Regulation, 1989