The role of potassium on drought resistance of winter wheat cultivars under cold dryland conditions: Probed by chlorophyll a fluorescence

Роль калия в засухоустойчивости сортов озимой пшеницы в условиях холодного сухого земледелия: исследование методом флуоресценции хлорофилла a
Hazem M. Kalaji, Anshu Rastogi, Ramin Lotfi, Amin Abbasi, Iraj Eskandari, Vahid Sedghieh, Hadi Khorsandi, Sadeghian Nasrin, Saurabh Yadav
2022-04-14

chlorophyll a fluorescencenormalized difference vegetation index (NDVI)potassium fertilizationstomatal conductance (gs)winter wheat cultivars
Potassium (K) is an important cation that regulates plant metabolism. Therefore the effect of different concentrations of potassium (0, 75, 150 kg ha−1 K2SO4) on photosynthesis efficiency of three winter wheat cultivars (Baran, Homa, Hashtrud) was investigated during the growing seasons of 2017–18 and 2018–19 under cold dryland conditions in Maragheh, Iran. Accumulation of potassium ion (K+) was observed to be increased with an increase in the concentration of K2SO4. With an increase in K+ the Hashtrud cultivar was observed to have more relative water content (RWC), normalized differential vegetation index (NDVI), and stomatal conductance (gs) than other cultivars. This resulted in a higher grain yield for the Hashtrud cultivar. RWC (R2 = 0.97), NDVI (R2 = 0.96), and gs (R2 = 0.92) had a positive relationship with KUE (grain yield/unit of K fertilizer used), especially in dryer years. K deficiency induced hydrogen peroxide (H2O2) and malondialdehyde (MDA) concentration in plants. The application of K increased superoxide dismutases and reduced abscisic acid, to maintain the plants' stomatal conductance. Chlorophyll a fluorescence (ChlF) and the calculation of double normalized relative variable fluorescence reveal detailed information's about the response of wheat plants to K application under dryland conditions. The application of a high concentration of K (150 kg ha−1 K2SO4) on Hashtrud plants had a beneficial effect on the ChlF efficiency at different OJIP phases (KJ and JI). We found the efficiency of ChlF at the ΔWK-I phase with the values of FV/FO and PIABS improved with the application of 150 kg ha−1 K2SO4 and can be correlated with total yield improvement. These observations indicated that the application of a high concentration of K in stressed conditions for dryland areas could improve photosynthetic efficiency and wheat plant performance.
1
Application of high K in stressed dryland conditions can improve photosynthetic efficiency and overall wheat performance.
2
Hashtrud cultivar showed higher relative water content (RWC), NDVI, and stomatal conductance (gs) with increased K+, resulting in higher grain yield than Baran and Homa.
3
High K application (150 kg ha−1 K2SO4) improved chlorophyll a fluorescence (ChlF) efficiency at OJIP phases (KJ and JI), ΔWK-I phase, Fv/Fo, and PIABS, correlating with total yield improvement.
4
Increasing K2SO4 rates (0, 75, 150 kg ha−1) raised tissue K+ accumulation in winter wheat under cold dryland conditions.
5
Potassium deficiency increased hydrogen peroxide (H2O2) and malondialdehyde (MDA) concentrations, while K application raised superoxide dismutase activity and reduced abscisic acid to maintain stomatal conductance.
6
RWC (R2 = 0.97), NDVI (R2 = 0.96), and gs (R2 = 0.92) correlated positively with potassium use efficiency (KUE), particularly in drier years.

Winter wheat cultivars (Baran, Homa, Hashtrud) grown under cold dryland field conditions with varying potassium (K2SO4) fertilization

Effects of potassium concentration on photosynthetic efficiency, water relations, oxidative stress markers, antioxidant activity, stomatal conductance, chlorophyll a fluorescence (OJIP parameters, ΔWK-I, FV/FO, PIABS) and resulting grain yield/K-use efficiency under drought-stressed dryland conditions

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2022-04-14
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Hazem M. Kalaji
Anshu Rastogi
Ramin Lotfi
Amin Abbasi
Iraj Eskandari
Vahid Sedghieh
Hadi Khorsandi
Sadeghian Nasrin
Saurabh Yadav
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