Estimating heat tolerance of plants by ion leakage: a new method based on gradual heating

Heat tolerance of plants related to cell membrane thermostability is commonly estimated via the measurement of ion leakage from plant segments after defined heat treatment. To compare heat tolerance of various plants, it is crucial to select suitable heating conditions. This selection is time-consum...

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Veröffentlicht in:The New phytologist 2018-05, Vol.218 (3), p.1278-1287
Hauptverfasser: Petr Ilík, Martina Špundová, Michal Šicner, Helena Melkovičvá, Zuzana Kučerová, Pavel Krchňák, Tomáš Fürst, Kristýna Večeřová, Klára Panzarová, Zuzana Benediktyová, Martin Trtílek
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Sprache:eng
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Zusammenfassung:Heat tolerance of plants related to cell membrane thermostability is commonly estimated via the measurement of ion leakage from plant segments after defined heat treatment. To compare heat tolerance of various plants, it is crucial to select suitable heating conditions. This selection is time-consuming and optimizing the conditions for all investigated plants may even be impossible. Another problem of the method is its tendency to overestimate basal heat tolerance. Here we present an improved ion leakage method, which does not suffer from these drawbacks. It is based on gradual heating of plant segments in a water bath or algal suspensions from room temperature up to 70–75°C. The electrical conductivity of the bath/suspension, which is measured continuously during heating, abruptly increases at a certain temperature T COND (within 55–70°C). The T COND value can be taken as a measure of cell membrane thermostability, representing the heat tolerance of plants/organisms. Higher T COND corresponds to higher heat tolerance (basal or acquired) connected to higher thermostability of the cell membrane, as evidenced by the common ion leakage method. The new method also enables determination of the thermostability of photochemical reactions in photosynthetic samples via the simultaneous measurement of Chl fluorescence.
ISSN:0028-646X
1469-8137
DOI:10.1111/nph.15097