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Mechanistic Insights into Potassium-Conferred Drought Stress Tolerance in Cultivated and Tibetan Wild Barley: Differential Osmoregulation, Nutrient Retention, Secondary Metabolism and Antioxidative Defense Capacity. | LitMetric

AI Article Synopsis

  • - This study investigates how two wild Tibetan barley genotypes, XZ5 (drought tolerant) and XZ54 (drought sensitive), respond to drought stress caused by polyethylene glycol, focusing on potassium (K) nutrition.
  • - Results indicate that drought and low K levels negatively affect plant growth, but genotype XZ5 shows the best resilience, able to retain K more effectively and maintain better photosynthetic function.
  • - The findings suggest that Tibetan wild barley, particularly XZ5, could be important for developing new barley varieties that are both efficient in K utilization and more resistant to drought stress, potentially benefiting agricultural practices.

Article Abstract

Keeping the significance of potassium (K) nutrition in focus, this study explores the genotypic responses of two wild Tibetan barley genotypes (drought tolerant XZ5 and drought sensitive XZ54) and one drought tolerant barley . Tadmor, under the exposure of polyethylene glycol-induced drought stress. The results revealed that drought and K deprivation attenuated overall plant growth in all the tested genotypes; however, XZ5 was least affected due to its ability to retain K in its tissues which could be attributed to the smallest reductions of photosynthetic parameters, relative chlorophyll contents and the lowest Na/K ratios in all treatments. Our results also indicate that higher H/K-ATPase activity (enhancement of 1.6 and 1.3-fold for shoot; 1.4 and 2.5-fold for root), higher shoot K (2 and 2.3-fold) and Ca content (1.5 and 1.7-fold), better maintenance of turgor pressure by osmolyte accumulation and enhanced antioxidative performance to scavenge ROS, ultimately suppress lipid peroxidation (in shoots: 4% and 35%; in roots 4% and 20% less) and bestow higher tolerance to XZ5 against drought stress in comparison with Tadmor and XZ54, respectively. Conclusively, this study adds further evidence to support the concept that Tibetan wild barley genotypes that utilize K efficiently could serve as a valuable genetic resource for the provision of genes for improved K metabolism in addition to those for combating drought stress, thereby enabling the development of elite barley lines better tolerant of abiotic stresses.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658718PMC
http://dx.doi.org/10.3390/ijms222313100DOI Listing

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