NaCl-induced Senescence in Leaves of Rice (Oryza sativaL.) Cultivars Differing in Salinity Resistance

Индукция старения листьев риса (Oryza sativa L.) под действием NaCl у сортов с различной устойчивостью к засолению
Stanley Lutts
1996-09-01

NaCl-induced senescencechlorophyll fluorescence (F0)malondialdehyde synthesismembrane permeabilityrice (Oryza sativa) cultivars
The influence of NaCl on senescence-related parameters (protein and chlorophyll concentrations, membrane permeability and chlorophyll fluorescence) was investigated in young and old leaves of five rice cultivars differing in salt resistance. NaCl hastened the naturally-occurring senescence of rice leaves which normally appears during leaf ontogeny: it decreased chlorophyll and protein concentrations and increased membrane permeability and malondialdehyde synthesis. Such an acceleration of deteriorative processes affected all leaves in salt-sensitive cultivars while it was more marked in oldest than in youngest leaves of salt-resistant genotypes. NaCl-induced senescence also involved specific modifications, such as an increase in basal non-variable chlorophyll fluorescence ( F0 ) recorded in all cultivars or a transient increase in soluble protein concentration recorded in salt-resistant genotypes only. Alteration of membrane permeability appeared as one of the first symptoms of senescence in rice leaves and allowed discrimination among cultivars after only 7 d of stress. In contrast, Fv / Fm ratio (variable fluorescence/maximal fluorescence) was the same for all cultivars during the first 18 d of stress and thus could not be used for identifying salt-resistant rice exposed to normal light conditions. Relationships between parameters involved in leaf senescence are discussed in relation to salinity resistance of rice cultivars.
1
Increased membrane permeability is an early senescence symptom that discriminates cultivar salt resistance after 7 days, while Fv/Fm remains unchanged across cultivars for the first 18 days and cannot identify resistance under normal light.
2
NaCl accelerates natural leaf senescence in rice, decreasing chlorophyll and protein concentrations and increasing membrane permeability and malondialdehyde synthesis.
3
NaCl induces specific changes across all cultivars, including an increase in basal non-variable chlorophyll fluorescence (F0).
4
Salt-resistant genotypes display a transient increase in soluble protein concentration not seen in salt-sensitive cultivars.
5
Salt-sensitive cultivars show accelerated deterioration in all leaves, whereas salt-resistant cultivars exhibit stronger effects in oldest than in youngest leaves.

Leaves (young and old) of rice (Oryza sativa L.) cultivars differing in salinity resistance exposed to NaCl

NaCl-induced senescence dynamics and associated physiological/biochemical parameters (chlorophyll and protein concentrations, membrane permeability, malondialdehyde synthesis, chlorophyll fluorescence metrics such as F0 and Fv/Fm) and their variation between salt-sensitive and salt-resistant cultivars and leaf ages

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1996-09-01
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Stanley Lutts
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