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February 8, 2026Journal of soil science and plant nutrition2 citationsOpen Access

Green Compost Effectiveness in Improving Quality of an Agricultural Soil Co-contaminated by Antibiotics and Copper

CCChiara De CarolisACAnna Barra CaraccioloLCLisa Ciadamidaro

Key Points

  • This work aims to evaluate the effectiveness of green compost in enhancing degraded agricultural soil quality co-contaminated by antibiotics and copper.
  • Investigated soil quality through physico-chemical parameters and microbial activity assessments.
  • Grew Lactuca sativa L. in soil microcosms with/without green compost.
  • Assessed microbial biodiversity via NGS and measured antibiotic resistance genes using qPCR.
  • Green compost significantly improved soil quality and fertility, indicated by higher plant growth metrics.
  • Despite antibiotic presence, the plant-microbiome system partially mitigated growth inhibition.
  • Soil microbial community showed shifts in population dynamics with compost and lettuce treatments.
  • Lower antibiotic resistance gene levels were observed with green compost compared to untreated contaminated soils.

Abstract

Abstract This work aimed at investigating the effectiveness of a vegetal waste compost (green compost) in improving the quality of a degraded agricultural soil with a low organic carbon content, low microbial activity and co-contaminated by copper and an antibiotic (AB) mixture (sulfamethoxazole, ciprofloxacin and chlortetracycline). The soil was planted with Lactuca sativa L. and its growth was evaluated in presence/absence of the green compost in soil microcosms. Physico-chemical (e.g. pH, temperature, organic carbon and contaminants) parameters, microbial abundance (DAPI counts) and enzymatic activities (dehydrogenase, phosphatase and β-glucosidase) were integrated in a soil quality index (SQI). Moreover, microbial biodiversity (NGS) and possible presence of antibiotic resistance genes (qPCR) were investigated in the soil microbial community. The SQI results showed the effectiveness of the green compost in increasing soil quality and fertility. In fact, the lettuce growth (total biomass, leaf area, leaf number and root elongation) was significantly improved. Although antibiotics were inhibiting growth, the soil plant-microbiome system was partially able to counteract the negative effects of these contaminants. Moreover, the soil microbial community showed shifts in some populations under treatments with compost and lettuce. Antibiotic resistance genes (ARGs) were promoted in AB and copper presence with the highest values in the bulk soil. Interestingly, the green compost promoted not only the highest plant biomass, but also the lowest ARG values. The green compost proved to be a good solution for recycling waste, increasing the organic carbon, microbial activity and fertility of the degraded soil and limiting the spread of ARGs (unlike agro-zootechnical organic amendments, e.g. manure). Graphical Abstract

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Cite This Study

Carolis et al. (2026) studied this question.

synapsesocial.com/papers/6988277b0fc35cd7a88463d0https://doi.org/10.1007/s42729-026-03008-y
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