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Seed Priming with Iron Oxide Nanoparticles Modulate Antioxidant Potential and Defense-Linked Hormones in Watermelon Seedlings

机译:用氧化铁纳米粒子进行种子灌注调节西瓜幼苗中的抗氧化潜力和防御荷尔蒙

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In the present study, onion extract was used for green synthesis of iron oxide nanoparticles (Fe-NPs). The X-ray diffraction, X-ray photoelectron spectroscopy, and high-resolution transmission electron microscopy characterizations demonstrated that the biosynthesized Fe-NPs were mainly composed of low-crystalline or amorphous Fe2O3 with diameter of 19-30 nm. The effect of seed priming with different concentrations of Fe-NPs (20, 40, 80, and 160 mg L-1) on seedling growth parameters, photosynthetic pigments, antioxidant potential, metabolites, and hormonal profiles of diploid and triploid watermelon (Citrullus lanatus (Thunb.) Matsum. and Nakai) varieties were studied on the third and eighth days of seedling development. Seed priming with Fe-NPs was safer compared to its bulk counterparts (FeCl3 and Fe2O3) and had no toxic impact on seed germination, seedling development, and chlorophyll biosynthesis at studied concentrations. Untargeted metabolomics studies showed that different Fe-NPs priming treatments distinctly altered the metabolome of diploid and triploid watermelon seedlings. Uniquely, we found that different Fe-NPs priming treatments significantly modulate the 12-oxo phytodienoic acid (OPDA) level in diploid and triploid watermelon seedlings. In conclusion, seed priming with nontoxic Fe-NPs can be applied sustainably to increase nonenzymatic antioxidant potential as well as to prime or induce jasmonates-linked defense responses in watermelon seedlings.
机译:在本研究中,洋葱提取物用于氧化铁纳米颗粒(Fe-NPS)的绿色合成。 X射线衍射,X射线光电子能谱和高分辨率透射电子显微镜表征证明,生物合成的Fe-NP主要由具有直径为19-30nm的低结晶或无定形Fe2O3组成。不同浓度的Fe-NPS(20,40,80和160mg L-1)对幼苗生长参数,光合色素,抗氧化潜力,代谢物和二倍体西瓜(Citrullus Lanatus (Thunb。)Matsum。和Nakai)在幼苗发展的第三天和第八天研究了品种。与其散装对应物(FECL3和Fe2O3)相比,使用Fe-NPS的种子喷射更安全,并且对研究浓度的种子萌发,幼苗发育和叶绿素生物合成没有毒性影响。未明确的代谢组研究表明,不同的Fe-NPS引发处理明显改变二倍体和三倍体西瓜幼苗的代谢物。唯一的发现,我们发现不同的Fe-NPS引发处理显着调节二倍体和三倍体西瓜幼苗中的12-氧代植物酸(OPDA)水平。总之,通过可持续地应用与无毒Fe-NPS的种子引发,以增加非酶抗氧化剂潜力以及素质或诱导西瓜幼苗中的jasmonals连接的防御反应。

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