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Five ways to stay green

Journal of Experimental Botany · 2000 · Vol. 51(suppl_1) · pp. 329–337
Howard ThomasCatherine Howarth

Abstract

The relationship between carbon income and expenditure over the life of a leaf is described and related to the productivity benefits of altering the timing of senescence initiation. In genetic variants with delayed leaf senescence ('stay-greens') deconstruction of the photosynthetic apparatus during leaf senescence is partially or completely prevented. Although the staygreen phenotype is superficially similar in all species and genotypes, the genetic and physiological routes to the trait are diverse. In one type of stay-green, chlorophyll catabolism is disabled. Legumes and monocots with pigment breakdown lesions are discussed. Sorghum is presented as an example of another kind of stay-green in which perennial tendencies have been bred into a monocarpic annual crop species. Transgenic approaches are briefly discussed (enhanced endogenous cytokinins, reduced ethylene production or perception). An alternative route towards making a stay-green phenotype is through quantitative trait mapping and marker-assisted selection. Loci for greenness in pearl millet have been identified, some of which are associated with drought responses or flowering time. Finally the question of the limits on stay-green as a productivity-enhancing character is addressed.

Plant Stress Responses and ToleranceLeaf Properties and Growth MeasurementPlant responses to elevated CO2BiologySenescenceChlorophyllPerennial plantTraitPhenotypePhotosynthesisProductivityBotanyGene

MeSH terms

CarbonChlorophyllPhotosynthesisPlant LeavesPlant Physiological PhenomenaPlants, Genetically Modified

Funding

  • Biotechnology and Biological Sciences Research Council
Citations
778
FWCI
28.34
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References
37
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100%
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References
The molecular biology of leaf senescence
Journal of Experimental Botany · 1997 · 961 citations
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