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Universitas Hasanuddin
Research output:Contribution to journalArticlepeer-review

Selenium nanoparticles and wheat straw biochar synergistically alleviate combined drought–heat stress in wheat (Triticum aestivum L.) by modulating antioxidant defense, photosynthetic efficiency, and ion homeostasis

Firdous H.

Plant Signaling and Behavior

Q1
Published: 2026

Abstract

) in a completely randomized design with three replications. Combined DS+HS severely impaired growth, photosynthetic function, and grain yield, while markedly elevating oxidative damage markers and disrupting ionic homeostasis. Notably, combined Se NPs + biochar application produced superior synergistic amelioration relative to either amendment alone, restoring net photosynthetic rate and grain yield to approximately 89%-90% and 88% of control values, respectively, alongside significant reductions in oxidative stress indicators. Gene expression analysis confirmed marked upregulation of key stress-responsive genes (TaSOD1, TaDREB2, TaHSP70, TaNHX1) and coordinated antioxidant enzyme activation. These findings establish that soil co-application of Se NPs and biochar is an effective, agronomically feasible strategy to sustain wheat productivity under the increasingly prevalent combined DS+HS conditions in Pakistan's irrigated cropping systems.

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BiocharSciences
PhotosynthesisSciences
AntioxidantSciences
Oxidative stressSciences
AgronomySciences
BiologySciences
Reactive oxygen speciesSciences
SeleniumSciences
AmendmentSciences
StrawSciences
Food scienceSciences
GlutathioneSciences
Photosynthetic efficiencySciences
ChemistrySciences
PoaceaeSciences
Crop yieldSciences
Genetically modified cropsSciences
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Biomass (ecology)Sciences
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Wheat grainSciences
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