Title : ( Synthesis and characterization of nanoliposome containing Fe2+ element: A superior nano-fertilizer for ferrous iron delivery to sweet basil )
Authors: helale sadat kaboli farshchi , Majid Azizi , Manouchehr Teymouri , Amin Reza Nikpoor , Mahmoud Reza Jaafari ,Access to full-text not allowed by authors
Abstract
Lime-induced Fe- deficient soil causes plant Fe-deficiency, which can be overcome with the foliar application of liposomal Fe fertilizers capable of delivering Fe efficiently to plant tissues. In the current investigation, foliar fertilization of an Fe-liposome (Fe-L) was used on a sweet basil (Ocimum basilicum L.), and their vegetative growth, the ferrous/total Fe content, and essential oil compounds were studied. In comparison, an FeSO4- EDTA and vehicle (citrate buffer) were used. The experiment was conducted in Completely Randomized Design with four treatments and three replications. The sweet basil plants were grown in pots with calcareous loamy soil (pH ~ 7.6, with an appropriate amount of N, K and P) in a greenhouse. Egg-derived phosphatidylcholine (EPC)/Fe-liposomes (200 nm in diameter and monodisperse size distribution) enhanced the fresh and dry weight, increased total leaf area, and improved chlorophyll, ferrous, and essential oil content of the plants compared to the FeSO4 fertilizer. Moreover, methyl chavicol was found to be the primary compound in the essential oil using a gad-chromatogram-mass spectroscopy GC-MS. Overall, the Fe-liposome is a superior fertilizer than FeSO4- EDTA in terms of Fe-delivery and plant recovery.
Keywords
, Plant Fe-deficiency, Plant-Fe delivery, Fe foliar fertilization, Fe-liposome, vegetative traits, essential oils@article{paperid:1084092,
author = {Kaboli Farshchi, Helale Sadat and Azizi, Majid and منوچهر تیموری and رضا نیکپور and محمود رضا جعفری},
title = {Synthesis and characterization of nanoliposome containing Fe2+ element: A superior nano-fertilizer for ferrous iron delivery to sweet basil},
journal = {Scientia Horticulturae},
year = {2021},
volume = {283},
month = {June},
issn = {0304-4238},
pages = {110110--110120},
numpages = {10},
keywords = {Plant Fe-deficiency; Plant-Fe delivery; Fe foliar fertilization; Fe-liposome; vegetative traits; essential oils},
}
%0 Journal Article
%T Synthesis and characterization of nanoliposome containing Fe2+ element: A superior nano-fertilizer for ferrous iron delivery to sweet basil
%A Kaboli Farshchi, Helale Sadat
%A Azizi, Majid
%A منوچهر تیموری
%A رضا نیکپور
%A محمود رضا جعفری
%J Scientia Horticulturae
%@ 0304-4238
%D 2021