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Antioxidant enzymatic protection during tobacco leaf ageing is affected by cytokinin depletion
Authors:Zuzana Mýtinová  Václav Motyka  Daniel Haisel  Zuzana Lubovská  Alena Trávní?ková  Petre Dobrev  Josef Holík  Na?a Wilhelmová
Institution:1.Faculty of Science,Charles University,Praha 2,Czech Republic;2.Academy of Sciences of the Czech Republic, v.v.i.,Institute of Experimental Botany,Praha 6,Czech Republic;3.Academy of Sciences of the Czech Republic,Institute of Experimental Botany,Praha 6,Czech Republic;4.Academy of Sciences of the Czech Republic,Institute of Experimental Botany,Praha 4,Czech Republic
Abstract:Plant ageing and senescence are associated with increased levels of reactive oxygen species. Level of cytokinins, the apparent inhibitors of plant senescence, is controlled by their irreversible degradation catalysed by cytokinin oxidase/dehydrogenase (CKX). We investigated the CKX activity, cytokinin concentration, and activities of antioxidative enzymes in tobacco (Nicotiana tabacum L. cv. Samsun NN) overexpressing the Arabidopsis gene for AtCKX2, targeted for extracellular secretion pathway. The control and AtCKX2 plants differed substantially in their phenotypes. When the lowest leaves in controls became yellow all leaves in AtCKX2 tobacco still remained green. Activities of antioxidant enzymes decreased with leaf age in both tobacco plants except for ascorbate peroxidase (APX) in the old leaves and glutathione reductase (GR) in young leaves. Enhancement of GR activity at all leaf stages, an increase of superoxide dismutase and a decline of catalase in young leaves, as well as an increase of APX in the oldest leaves were observed in AtCKX2 plant compared to control. Similar changes were detected after determination of isoenzymes on zymograms. It is evident that AtCKX2 plants had postponed onset of senescence despite the significantly lowered level of cytokinins. Enhanced antioxidant protection, especially in the oldest leaves, could subsidise this phenomenon.
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