Plants (Sep 2023)

Lead Toxicity-Mediated Growth and Metabolic Alterations at Early Seedling Stages of Maize (<i>Zea mays</i> L.)

  • Muhammad Talha,
  • Muhammad Yousaf Shani,
  • Muhammad Yasin Ashraf,
  • Francesco De Mastro,
  • Gennaro Brunetti,
  • Muhammad Kashif Riaz Khan,
  • Syed Wajih ul Hassan Shah Gillani,
  • Adeel Khan,
  • Shahid Abbas,
  • Claudio Cocozza

DOI
https://doi.org/10.3390/plants12183335
Journal volume & issue
Vol. 12, no. 18
p. 3335

Abstract

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To investigate the toxic effects of lead (Pb) on key metabolic activities essential for proper germination and seedling growth of maize seeds, experiments were carried out with different levels of Pb (0 to 120 mg of Pb L−1 as PbCl2) applied through growth medium to two maize hybrids H-3310S and H-6724. The research findings indicated that growth and metabolic activities were adversely affected by increased Pb contamination in growth medium; however, a slow increase in these parameters was recorded with increasing time from 0 to 120 h. Protease activity decreased with an increase in the level of Pb contamination but increased with time; consequently, a reduction in seed proteins and an increase in total free amino acids were observed with time. Similarly, α-amylase activity decreased with an increase in Pb concentration in growth medium while it increased with increasing time from 0 to 120 h; consequently, reducing and non-reducing sugars increased with time but decreased with exposure to lead. The roots of both maize hybrids had higher Pb contents than those of the shoot, which decreased the uptake of nitrogen, phosphorus, and potassium. All these nutrients are essential for optimal plant growth; therefore, the reduction in growth and biomass of maize seedlings could be due to Pb toxicity that altered metabolic processes, as sugar and amino acids are necessary for the synthesis of metabolic compounds, rapid cell division, and proper functioning of enzymes in the growing embryo, but all were dramatically reduced due to suppression of protease and α-amylase by toxicity of Pb. In general, hybrid H-3310S performed better in Pb-contaminated growth medium than H-6724.

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