Effect of Nano-primed Green-Synthesized Potassium Nanoparticles (GSKNPs) at Different Temperatures on Seed Quality Parameters in Chickpea

K. Rohitha *

Department of Seed Science and Technology, College of Agriculture (CoA), Professor Jayashankar Telangana Agricultural University (PJTAU), Hyderabad-500030, India.

Y. Bharathi

Department of Genetics and Plant Breeding, Agricultural Research Station (ARS), Tandur- 501141, Telangana, India.

P. Jagan Mohan Roa

Department of Genetics and Plant Breeding, College of Agriculture (CoA), Professor Jayashankar Telangana Agricultural University (PJTAU), Hyderabad-500030, India.

Shilpa Chakra Ch

Centre for Nano Science &Technology (CNST), College of Engineering, Science and Technology, JNTUH University, Telangana, Hyderabad-500085, India.

P. Sujatha

Division of Plant Science and Plant Protection, College of Agriculture, PJTAU, Jagityal, India.

Pushpavalli SNCVL

Molecular Biology & Biotechnology Institute of Biotechnology, PJTAU, Hyderabad, India.

*Author to whom correspondence should be addressed.


Abstract

High-temperature stress can impair chickpea (Cicer arietinum L.) germination and early seedling establishment. This study evaluated nano-seed priming with green-synthesised potassium nanoparticles (GSKNPs), prepared using onion dry scale extract, for improving seed quality parameters of chickpea cv. JG-11 under 25°C and 35°C conditions. Seeds were primed with 10 mg/l (P1), 20 mg/l (P2), or 30 mg/l (P3) GSKNPs, while untreated seeds served as the control (P4). Germination rate, electrical conductivity, imbibition rate, field emergence, and seedling survival rate were assessed, and the experiment was analysed using a factorial completely randomised design. Germination rate did not differ significantly among nano-priming treatments, although temperature had a significant effect. Electrical conductivity also showed no significant treatment effect, but the temperature effect was significant; P3 recorded the lowest overall mean EC value (128.12 µS cm⁻¹ g⁻¹) compared with the control mean of 131.62 µS cm⁻¹ g⁻¹. P1 produced the highest mean imbibition rate (57.52%), P2 recorded the highest mean field emergence (86.87%), and P3 recorded the highest mean seedling survival rate (74.87%). Seedling survival declined at 35°C across all treatments, with the control showing the greatest reduction. Overall, the findings indicate that GSKNP nano-priming influenced several seed-quality and establishment traits under the tested temperature conditions, with responses varying according to nanoparticle concentration.


How to Cite

Rohitha, K., Y. Bharathi, P. Jagan Mohan Roa, Shilpa Chakra Ch, P. Sujatha, and Pushpavalli SNCVL. 2026. “Effect of Nano-Primed Green-Synthesized Potassium Nanoparticles (GSKNPs) at Different Temperatures on Seed Quality Parameters in Chickpea”. Journal of Advances in Biology & Biotechnology 29 (10):1-9. https://doi.org/10.9734/jabb/2026/v29i104398.

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