The interactive effect of pH variation and cadmium stress on wheat (Triticum aestivum L.) growth, physiological and biochemical parameters

PLoS One. 2021 Jul 12;16(7):e0253798. doi: 10.1371/journal.pone.0253798. eCollection 2021.

Abstract

Anthropogenic activities such as mining, manufacturing, and application of fertilizers release substantial quantities of cadmium (Cd) into the environment. In the natural environment, varying pH may play an important role in the absorption and accumulation of Cd in plants, which can cause toxicity and increase the risk to humans. We conducted a hydroponic experiment to examine the impact of pH on cadmium (Cd) solubility and bioavailability in winter wheat (Triticum aestivum L.) under controlled environmental conditions. The results showed that Cd concentration was significantly reduced in wheat with an increase in pH from 5 to 7, while it was dramatically increased at pH ranging from 7 to 9. However, in both cases, a significant reduction in physiological traits was observed. The addition of Cd (20, 50, and 200 μmol L-1) at all pH levels caused a substantial decline in wheat growth, chlorophyll and carotenoids contents, nutrient availability, while elevated cell membrane damage was observed in terms of electrolytic leakage (EL), osmoprotectants, and antioxidants activity. In our findings, the negative effects of acidic pH (5) on wheat growth and development were more pronounced in the presence of Cd toxicities. For instance, Cd concentration with 20, 50, and 200 μmol L-1 at acidic pH (5) reduced shoot dry biomass by 45%, 53%, and 79%, total chlorophyll contents by 26%, 41%, 56% while increased CAT activity in shoot by 109%, 175%, and 221%, SOD activity in shoot by 122%, 135%, and 167%, POD activity in shoot by 137%, 250%, and 265%, MDA contents in shoot by 51%, 83%, and 150%, H2O2 contents in shoot by 175%, 219%, and 292%, EL in shoot by 108%, 165%, and 230%, proline contents in shoot by 235%, 280%, and 393%, respectively as compared to neutral pH without Cd toxicities. On the other hand, neutral pH with Cd toxicities alleviated the negative effects of Cd toxicity on wheat plants by limiting Cd uptake, reduced reactive oxygen species (ROS) formation, and increased nutrient availability. In conclusion, neutral pH minimized the adverse effects of Cd stress by minimizing its uptake and accumulation in wheat plants.

Publication types

  • Research Support, Non-U.S. Gov't
  • Retracted Publication

MeSH terms

  • Cadmium / metabolism
  • Cadmium / toxicity*
  • Hydrogen Peroxide
  • Hydrogen-Ion Concentration
  • Hydroponics / methods
  • Seedlings / drug effects
  • Seedlings / growth & development
  • Seedlings / metabolism
  • Soil / chemistry*
  • Soil Pollutants / metabolism
  • Soil Pollutants / toxicity*
  • Triticum / chemistry
  • Triticum / drug effects
  • Triticum / growth & development*
  • Triticum / metabolism

Substances

  • Soil
  • Soil Pollutants
  • Cadmium
  • Hydrogen Peroxide

Grants and funding

Prof. Qi Xuebin and Dr. Zhenjie Du have received research grants from the Agricultural Science and Technology Innovation Program (Grant no. CAAS-ASTIP-FIRE-03), Chinese Academy of Agricultural Sciences, and by the National Natural Science Foundation of China (Grant no. 51679241, 51709265, and 51779260), and the National Key Research and Development Program of China (2016YFD0800703).