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May 31, 2026Journal of Plant Nutrition and Soil Science0 citations

Oxytetracycline Contamination Alters the Effects of Phosphate Fertilization and Maize–Faba Bean Intercropping on Plant Growth and Uptake of Nitrogen and Phosphorus

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ZZZekun ZhangXFXinhui FanLZLe Zhao

Key Points

  • The aim is to determine how oxytetracycline influences plant growth and nutrient uptake in maize and faba bean intercropping with phosphate fertilizers.
  • Conducted a pot experiment with maize and faba bean under varying phosphate rates (50 and 200 mg kg −1) and oxytetracycline concentrations (10 mg kg −1).
  • Measured plant dry mass, nitrogen and phosphorus concentrations, soil nutrients, rhizosheath sugars, and alkaline phosphatase activity.
  • OTC enhanced intercropping's positive effect on maize shoot dry mass but reduced its benefits on root dry mass.
  • Adding OTC diminished the benefits of P200 on shoot nitrogen and phosphorus concentrations in monocultured maize, while increasing root phosphorus concentration in intercropped faba bean.

Abstract

ABSTRACT Background Veterinary antibiotics entering agricultural soil may inhibit crop growth and nutrient uptake. Aims This study explored whether oxytetracycline (OTC) would alter the effects of phosphate fertilization and intercropping on plant growth and nitrogen (N) and phosphorus (P) uptake. Methods A pot experiment was conducted to grow maize and faba bean with different P rates (50 and 200 mg kg −1 ) and with OTC (10 mg kg −1 ) or without OTC (0 mg kg −1 ) under either monoculture or intercropping. Plant dry mass, N and P concentrations, soil N and P concentrations, rhizosheath sugar and carboxylates, and soil alkaline phosphatase activity were determined and compared. Results The addition of OTC had different effects on the dry mass and N and P uptake of maize and faba bean. Specifically, adding OTC enhanced the promoting effect of intercropping on the shoot dry mass of maize but weakened the promoting effect of intercropping on the root dry mass of maize. Adding OTC weakened the promoting effect of P200 on shoot N and P concentrations of monocultured maize but enhanced the promoting effect of P200 on root P concentration of intercropped faba bean. Conclusions Adding OTC could enhance or weaken the promoting effects of P fertilization or intercropping on the growth and uptake of N and P in maize and faba bean.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd1b05783ba022b6fd1ffhttps://doi.org/10.1002/jpln.70082
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