2022
DOI: 10.3389/fpls.2021.808141
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Aerially Applied Zinc Oxide Nanoparticle Affects Reproductive Components and Seed Quality in Fully Grown Bean Plants (Phaseolus vulgaris L.)

Abstract: The development of reproductive components in plant species is susceptible to environmental stresses. The extensive application of zinc oxide nanoparticles (nZnO) in various agro-industrial processes has jeopardized the performance and functionality of plants. To understand the response of the developmental (gametogenesis and sporogenesis) processes to nanoparticles (NPs) exposure, the aerial application of nZnO and their ionic counterpart of ZnSO4 at four different levels were examined on bean plants (Phaseol… Show more

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Cited by 17 publications
(8 citation statements)
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“…Almost all measured vegetative traits (including fresh and dry weight) were higher or the same as control plants at 25 mg L À1 concentration, mainly in ZnSO 4 treatment. As previously reported for some plant species (Mukherjee et al, 2014;Rajput et al, 2021;Wan et al, 2019) in general and bean plants in particular (Salehi et al, 2021;Salehi et al, 2022), slow and retarded growth performance at levels of ZnONPs dosages ranging from 20 to 2000 mg L À1 has been observed in a concentrationdependent manner. Following available reports, the results confirmed the ZnONPs phytotoxicity at 50 mg L À1 and higher dosages, as fresh and dry weights of both shoots and roots dramatically decreased at the highest concentration.…”
Section: Discussionsupporting
confidence: 74%
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“…Almost all measured vegetative traits (including fresh and dry weight) were higher or the same as control plants at 25 mg L À1 concentration, mainly in ZnSO 4 treatment. As previously reported for some plant species (Mukherjee et al, 2014;Rajput et al, 2021;Wan et al, 2019) in general and bean plants in particular (Salehi et al, 2021;Salehi et al, 2022), slow and retarded growth performance at levels of ZnONPs dosages ranging from 20 to 2000 mg L À1 has been observed in a concentrationdependent manner. Following available reports, the results confirmed the ZnONPs phytotoxicity at 50 mg L À1 and higher dosages, as fresh and dry weights of both shoots and roots dramatically decreased at the highest concentration.…”
Section: Discussionsupporting
confidence: 74%
“…The ionic counterparts (ZnSO 4 ) affected similar classes of metabolites but, in some cases, with the opposite trend of regulation. The differential regulation of metabolites by these two materials (i.e., ZnONPs and ZnSO 4 ) proves their distinct mode of action (Salehi et al, 2021, 2022).…”
Section: Discussionmentioning
confidence: 99%
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“…Furthermore, ZnO‐NPs and single‐walled carbon nanohorns increased salinity stress tolerance of Sophora alopecuroides seedlings by readjusting carbon/nitrogen metabolic pathways, glycolysis and the citric acid cycle to produce energy for plant growth (Wan et al, 2020). Various abiotic stresses affect reproductive development, a vital level in the life phase of flowering plants (Salehi, Rad, et al, 2021). Literature has demonstrated the susceptibility of key generative processes, such as phase transition, flowering induction, sporogenesis and gametogenesis, to environmental fluctuations, which can result in male sterility and seed abortion (Du, Zhao, Chen, Yao, Xie, 2020; Salehi, Chehregani, et al, 2021; Salehi, Rad, et al, 2021).…”
Section: Nps Improve Plant Health At Diverse Developmental Stages Und...mentioning
confidence: 99%
“…The expected effects have been reported to be increased germination, healthier seedlings and higher biomass in terms of growth indices ( Szőllősi et al., 2020 ; Wu and Li, 2021 ). The NPs-induced alteration is highly influenced by many factors, such as the nature of NPs themselves, dosages, plant species and the application procedure ( Khan et al., 2019 ; Salehi et al., 2021a ; Salehi et al., 2021b ). In this regard, studies are trying to provide evidence on how NPs work, but getting the whole overview is extremely complicated.…”
Section: Introductionmentioning
confidence: 99%