Two Festuca Species- F. arundinacea and F. glaucescens -Differ in the Molecular Response to Drought, While Their Physiological Response Is Similar

Impact of photosynthetic and antioxidant capacities on drought tolerance of two closely related forage grasses, and , was deciphered. Within each species, two genotypes distinct in drought tolerance were subjected to a short-term drought, followed by a subsequent re-watering. The studies were focuse...

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Veröffentlicht in:International journal of molecular sciences 2020-04, Vol.21 (9), p.3174
Hauptverfasser: Lechowicz, Katarzyna, Pawłowicz, Izabela, Perlikowski, Dawid, Arasimowicz-Jelonek, Magdalena, Majka, Joanna, Augustyniak, Adam, Rapacz, Marcin, Kosmala, Arkadiusz
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Sprache:eng
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Zusammenfassung:Impact of photosynthetic and antioxidant capacities on drought tolerance of two closely related forage grasses, and , was deciphered. Within each species, two genotypes distinct in drought tolerance were subjected to a short-term drought, followed by a subsequent re-watering. The studies were focused on: ( ) analysis of plant physiological performance, including: water uptake, abscisic acid (ABA) content, membrane integrity, gas exchange, and relative water content in leaf tissue; ( ) analysis of plant photosynthetic capacity (chlorophyll fluorescence; gene expression, protein accumulation, and activity of selected enzymes of the Calvin cycle); and ( ) analysis of plant antioxidant capacity (reactive oxygen species (ROS) generation; gene expression, protein accumulation and activity of selected enzymes). Though, and revealed different strategies in water uptake, and partially also in ABA signaling, their physiological reactions to drought and further re-watering, were similar. On the other hand, performance of the Calvin cycle and antioxidant system differed between the analyzed species under drought and re-watering periods. A stable efficiency of the Calvin cycle in was crucial to maintain a balanced network of ROS/redox signaling, and consequently drought tolerance. The antioxidant capacity influenced mostly tolerance to stress in .
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms21093174