Acquisition of Freezing Tolerance of Resurrection Species from Gesneriaceae, a Comparative Study

Resurrection plants have the unique ability to restore normal physiological activity after desiccation to an air-dry state. In addition to their desiccation tolerance, some of them, such as and , are also freezing-tolerant species, as they survive subzero temperatures during winter. Here, we compare...

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Veröffentlicht in:Plants (Basel) 2023-05, Vol.12 (9), p.1893
Hauptverfasser: Mihailova, Gergana, Gashi, Bekim, Krastev, Nikola, Georgieva, Katya
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Sprache:eng
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Zusammenfassung:Resurrection plants have the unique ability to restore normal physiological activity after desiccation to an air-dry state. In addition to their desiccation tolerance, some of them, such as and , are also freezing-tolerant species, as they survive subzero temperatures during winter. Here, we compared the response of the photosynthetic apparatus of two other Gesneriaceae species, and , together with , to cold and freezing temperatures. The role of some protective proteins in freezing tolerance was also investigated. The water content of leaves was not affected during cold acclimation but exposure of plants to -10 °C induced dehydration of plants. Freezing stress strongly reduced the quantum yield of PSII photochemistry (Y(II)) and stomatal conductance ( ) on the abaxial leaf side. In addition, the decreased ratio of F /F suggested photoinhibition or sustained quenching. Freezing-induced desiccation resulted in the inhibition of PSII activity, which was accompanied by increased thermal energy dissipation. In addition, an increase of dehydrins and ELIPs was detected, but the protein pattern differed between species. During recovery, the protein abundance decreased and plants completely recovered their photosynthetic activity. Thus, our results showed that and survive freezing stress due to some resurrection-linked traits and confirmed their freezing tolerance.
ISSN:2223-7747
2223-7747
DOI:10.3390/plants12091893