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{"target":"http://pubannotation.org/docs/sourcedb/PMC/sourceid/7196351","sourcedb":"PMC","sourceid":"7196351","source_url":"https://www.ncbi.nlm.nih.gov/pmc/7196351","text":"Figure 1 Effect of nano-copper on seed germination, plant growth, grain mineral concentrations and yield of maize\nA. Images of maize seedlings after 7 days of germination, which were left untreated (1st panel) or treated with nCu at dose of 20 mg/kg dry weight (DW) (2nd panel) or 1000 mg/kg DW (3rd panel).\nB. Arithmetic means (n = 3) of the germination percentage of maize seeds after 7 days, which were left untreated (control, white bar) or treated with nCu at dose of 20 mg/kg DW (black bar) or 1000 mg/kg DW (grey bar). ** (P\u003c0.01) represents significant difference from control group, ANOVA.\nC. Images of maize plants after 90 days of planting, which were left untreated (1st panel) or treated with nCu at dose of 20 mg/kg DW (2nd panel) or 1000 mg/kg DW (3rd panel)\nD. Arithmetic means (n = 3) of maize grain yield, which were left untreated (control, white bar) or treated with nCu at dose of 20 mg/kg DW (black bar) or 1000 mg/kg DW (grey bar). *** (P\u003c0.001) represents significant difference from control group, ANOVA.\nE-G. Arithmetic means (n = 3) of Cu (E), Zn (F) and Ca (G) concentrations in maize grain, which were left untreated (control, white bar) or treated with nCu at dose of 20 mg/kg DW (black bar) or 1000 mg/kg DW (grey bar). * (P\u003c0.05), ** (P\u003c0.01) and *** (P\u003c0.001) represent significant differences from control group, ANOVA","divisions":[{"label":"label","span":{"begin":0,"end":8}},{"label":"caption","span":{"begin":10,"end":114}},{"label":"p","span":{"begin":10,"end":114}},{"label":"p","span":{"begin":115,"end":308}},{"label":"p","span":{"begin":309,"end":599}},{"label":"p","span":{"begin":600,"end":774}},{"label":"p","span":{"begin":775,"end":1030}}],"tracks":[]}