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Non‐destructive optical detection of pigment changes during leaf senescence and fruit ripening

Physiologia Plantarum · 1999 · Vol. 106(1) · pp. 135–141
Mark N. MerzlyakAnatoly A. GitelsonО. Б. ЧивкуноваV. Yu. Rakitin

Abstract

Reflectance spectra in the visible and near infra‐red range of the spectrum, acquired for maple ( Acer platanoides L.), chestnut ( Aesculus hippocastanum L.), potato ( Solanum tuberosum L.), coleus ( Coleus blumei Benth.), leaves and lemon (Citrus limon L.) and apple ( Malus domestica Borkh.) fruits were studied. An increase of reflectance between 550 and 740 nm accompanied senescence‐induced degradation of chlorophyll (Chl), whereas in the range 400–500 nm it remained low, due to retention of carotenoids (Car). It was found that both leaf senescence and fruit ripening affect the difference between reflectance ( R ) near 670 and 500 nm ( R 678 − R 500 ), depending on pigment composition. The plant senescing reflectance index in the form ( R 678 − R 500 )/ R 750 was found to be sensitive to the Car/Chl ratio, and was used as a quantitative measure of leaf senescence and fruit ripening. The changes in the index were followed during leaf senescence, and natural and ethylene‐induced fruit ripening. This novel index can be used for estimating the onset, the stage, relative rates and kinetics of senescence/ripening processes.

Leaf Properties and Growth MeasurementHorticultural and Viticultural ResearchRemote Sensing in AgricultureRipeningColeusChlorophyllBotanyHorticultureBiologyCarotenoidMalusPigmentSenescence

Funding

  • Russian Foundation for Basic Research
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1,259
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References
Use of a green channel in remote sensing of global vegetation from EOS-MODIS
Remote Sensing of Environment · 1996 · 3,056 citations
Remote estimation of chlorophyll content in higher plant leaves
International Journal of Remote Sensing · 1997 · 917 citations
The molecular biology of leaf senescence
Journal of Experimental Botany · 1997 · 961 citations
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