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dc.contributor.author Meier, S
dc.contributor.author Moore, F
dc.contributor.author Morales, A
dc.contributor.author González, ME
dc.contributor.author Seguel, A
dc.contributor.author Meriño-Gergichevich, C
dc.contributor.author Rubilar, O
dc.contributor.author Cumming, J
dc.contributor.author Aponte, H
dc.contributor.author Alarcón, D
dc.contributor.author Mejías, J
dc.date.accessioned 2024-01-17T15:55:52Z
dc.date.available 2024-01-17T15:55:52Z
dc.date.issued 2020
dc.identifier.uri https://repositorio.uoh.cl/handle/611/886
dc.description.abstract This study was carried out to evaluate the effects of foliar sprays containing boron (B) nano-fertilizer (NF) on the growth and physiology of lettuce (Lactuca sativa) and zucchini (Cucurbita pepo). Plants were grown under greenhouse conditions for 60 days on a modified Hoagland solution with the presence and absence of boron ( + B or -B). A synthesized B-NF foliar spray and a commercial B foliar fertilizer (Bortrac (TM) 150, BT) was applied at a concentration of 30 mg B L-1 at 10-d intervals throughout the experiment. The B-NF treatment increased the growth of lettuce 2.7- and 1.9-fold for shoots and roots, respectively, with an average production of lettuce biomass by similar to 58%. Similarly, the NF increased the growth of zucchini by 18 and 66% compared with Control-B (the absence of B), and 13 and 36% compared with BT, both for shoots and roots, respectively. Nevertheless, NF + B mostly decreased lettuce growth with symptoms of B toxicity in leaves. In lettuce, addition of B did not affect concentrations of phenols; however, in zucchini, Control-B induced a higher production of phenolic compounds possibly related to B deficiency. The B addition in lettuce reduced the DPPH activity by 32 and 21% in NF and BT, respectively, compared to Control-B. These responses were similar in zucchini; however, the effect of B was product of its presence in mineral solution rather than due the foliar product applied. This suggests that a NF-based delivery system for B may be highly effective at boosting plant productivity on B-limited soils.
dc.description.sponsorship PAI-Conicyt
dc.relation.uri http://dx.doi.org/10.1016/j.plaphy.2020.04.025
dc.subject Nano-fertilizer synthesis
dc.subject Boron
dc.subject Hydroponic culture
dc.subject Antioxidant activities
dc.subject Plant nutrition
dc.title Synthesis of calcium borate nanoparticles and its use as a potential foliar fertilizer in lettuce (Lactuca sativa) and zucchini (Cucurbita pepo)
dc.type Artículo
uoh.revista PLANT PHYSIOLOGY AND BIOCHEMISTRY
dc.identifier.doi 10.1016/j.plaphy.2020.04.025
dc.citation.volume 151
dc.identifier.orcid Mejias, Jaime H/0000-0002-5510-1955
dc.identifier.orcid Aponte, Humberto/0000-0003-2218-4712
dc.identifier.orcid Seguel, Alex/0000-0002-1415-0339
dc.identifier.orcid Meier, Sebastian/0000-0003-3491-5367
uoh.indizacion Web of Science


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