4.5 Article

Foliar Potassium Sulfate Application Improved Photosynthetic Characteristics, Water Relations and Seedling Growth of Drought-Stressed Maize

Journal

ATMOSPHERE
Volume 12, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/atmos12060663

Keywords

chlorophyll contents; drought stress; photosynthetic activity; proline contents; relative water content

Funding

  1. Taif University, Taif, Saudi Arabia [TURSP-2020/139]

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Changing climates and frequent spells of drought have increased the risk of crop failure, with exogenous application of potassium (K) potentially ameliorating the adverse effects of drought in maize. The study found that foliar application of K2SO4 at 2% concentration outperformed other doses in improving growth attributes and chlorophyll content in maize under severe drought conditions, indicating its effectiveness in ameliorating drought effects.
Changing climates and frequent spells of drought have increased the risk of crop failure, especially in arid and semi-arid regions, thus multiplying the vulnerability of food-insecure populations. The exogenous application of potassium (K) can potentially ameliorate the adverse effects of drought in maize by maintaining cell osmotic potential and turgidity, provided its optimum doses are applied. The present experiment comprised two maize cultivars, viz. Islamabad Gold (drought tolerant) and Azam (drought susceptible), grown under well-watered (80% water-holding capacity (WHC)), mild drought (60% WHC) and severe drought (40% WHC) conditions. Different doses of K, viz. 0%, 1% and 2%, were also tested to screen out the most superior concentration. Drought stress markedly reduced root and shoot lengths (25% and 16%, respectively) along with their dry weights (20% and 10%, respectively). Moreover, a substantial reduction in leaf relative water content (RWC) (24%), stomatal conductance, transpiration and photosynthesis rates, chlorophyll pigments a, b and total chlorophyll contents (31%) were recorded, compared with well-watered conditions. However, foliar application of K2SO4 at 2% concentration outperformed other doses by improving growth attributes, RWC (10%), total chlorophyll (9%) and proline (12%) under severe drought conditions. Our findings confirmed the effectiveness of foliage-applied K2SO4 in ameliorating drought effects in rainfed maize; however, more doses and sources of K could be tested for developing it as a potent source to cope with water stress.

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