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Scientific Reports

IF: 3.79
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Combined effect of gallic acid and zinc ferrite nanoparticles on wheat growth and yield under salinity stress.

Published:4 June 2024 DOI: 10.1038/s41598-024-63175-9 PMID: 38834735
Qingqin Shao,?Lantian Ren,?Musarrat Ramzan,?Muhammad Baqir Hussain,?Rahul Datta,?Hesham S Almoallim,?Mohammad Javed Ansari,?Abdullah Ehsan

Abstract

Salinity stress significantly impacts crops, disrupting their water balance and nutrient uptake, reducing growth, yield, and overall plant health. High salinity in soil can adversely affect plants by disrupting their water balance. Excessive salt levels can lead to dehydration, hinder nutrient absorption, and damage plant cells, ultimately impairing growth and reducing crop yields. Gallic acid (GA) and zinc ferrite (ZnFNP) can effectively overcome this problem. GA can promote root growth, boost photosynthesis, and help plants absorb nutrients efficiently. However, their combined application as an amendment against drought still needs scientific justification. Zinc ferrite nanoparticles possess many beneficial properties for soil remediation and medical applications. That's why the current study used a combination of GA and ZnFNP as amendments to wheat. There were 4 treatments, i.e., 0, 10?μM GA, 15?μM GA, and 20?μM GA, without and with 5?μM ZnFNP applied in 4 replications following a completely randomized design. Results exhibited that 20?μM GA?+?5?μM ZnFNP caused significant improvement in wheat shoot length (28.62%), shoot fresh weight (16.52%), shoot dry weight (11.38%), root length (3.64%), root fresh weight (14.72%), and root dry weight (9.71%) in contrast to the control. Significant enrichment in wheat chlorophyll a (19.76%), chlorophyll b (25.16%), total chlorophyll (21.35%), photosynthetic rate (12.72%), transpiration rate (10.09%), and stomatal conductance (15.25%) over the control validate the potential of 20?μM GA?+?5?μM ZnFNP. Furthermore, improvement in N, P, and K concentration in grain and shoot verified the effective functioning of 20?μM GA?+?5?μM ZnFNP compared to control. In conclusion, 20?μM GA?+?5?μM ZnFNP can potentially improve the growth, chlorophyll contents and gas exchange attributes of wheat cultivated in salinity stress. More investigations are suggested to declare 20?μM GA?+?5?μM ZnFNP as the best amendment for alleviating salinity stress in different cereal crops.

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Related products
Procduct Name CAS Molecular Formula Supplier Price
Gallic acid 149-91-7 C7H6O5 789 suppliers $5.00-$475.00
GRAMICIDIN A 11029-61-1 C99H140N20O17 79 suppliers $32.00-$1440.00
ZINC FERRITE Fe2O4Zn 1 suppliers Inquiry

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