Comparison of Iron and Zinc Nanoparticles with Different Sizes and Bulk Forms on Seed Yield and Its Components in Flaxseed (Linum usitatissimum L.) under Late-Season Water Deficit

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 46

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شناسه ملی سند علمی:

JR_ATIC-5-1_002

تاریخ نمایه سازی: 13 آذر 1403

چکیده مقاله:

Flaxseed is an important crop that is used extensively for medicine, nutrition, and industry. Then, this research aims to investigate the effect of foliar spraying of bulk and nanoparticle forms of iron and zinc with different particle sizes on yield and its related traits of flaxseed under post-anthesis water deficit. To this end, a split-plot factorial experiment based on randomized complete blocks design in three replications was used at Razi University, Kermanshah, Iran, in two crop years (۲۰۱۹-۲۰۲۱). The experiment comprised two moisture regimes - optimal irrigation and post-anthesis water deficit, applied in the main plots. Different fertilizers (bulk and nanoparticles with varying particle sizes) and fertilizer concentrations (۰, ۳۰۰, and ۶۰۰ mg l-۱) were tested in the subplot. The results showed that under optimal moisture conditions, the highest grain and biomass yield was in the foliar treatments of iron nanoparticles ۲۰-۳۰ nm and ۶۰۰ mg l-۱ and zinc nanoparticles ۱۰-۳۰ nm and ۳۰۰ mg l-۱, with ۲۴۴۸ and ۸۴۳۲ kg ha-۱, respectively and the lowest amount was obtained in the control treatment with ۲۰۲۸ and ۷۵۹۹ kg ha-۱. Under post-anthesis water deficit environment, zinc nanoparticles ۱۰-۳۰ nm and ۳۰۰ mg l-۱ caused a ۳۵% increase in grain yield compared to the control treatment (۹۹۷ kg ha-۱). Also, the highest oil percentage and yield were obtained in iron nanoparticles ۲۰-۳۰ nm and ۶۰۰ mg l-۱ with ۳۵.۲۵% and ۸۶۶ kg ha-۱, respectively. In general, the efficiency of iron and zinc nanoparticle fertilizers with different particle sizes was significantly higher than that of iron and zinc bulk forms and control treatment (without fertilization). Nanoparticle fertilizers significantly reduced the adverse effects of late-season water deficit on grain, oil, and biomass yield.

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نویسندگان

Mohammad Naseh Hoseini

Department of Plant Production and Genetics, Razi University, Kermanshah, Iran

Mohsen Saeidi

Department of Plant Production and Genetics, Razi University, Kermanshah, Iran

Leila Zarei

Department of Plant Production and Genetics, Razi University, Kermanshah, Iran

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