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Nitrification and denitrification are two important processes in the nitrogen (N) cycle. Under heavy-metal pollution with water management of paddy soils, these two processes are not well understood. This study aimed to examine the effect of cadmium (Cd) on N transformation under flooding and non-flooding conditions. A paddy soil was incubated under two water regimes (flooding and non-flooding) and four Cd levels (0, 2, 5 and 10 mg kg). The availability of Cd was higher in the non-flooding than flooding conditions. Cadmium contamination significantly (p ≤ 0.05) decreased the copy number of archaeal and bacterial amoA genes, bacterial nirS, nirK and nosZ genes under both conditions with the decrease being greater under non-flooding. High level of Cd (10 mg kg) was more toxic in non-flooding than flooding conditions to the nitrifiers and denitrifiers, which in turn decreased N transformation through microbially-mediated processes. Its contamination decreased NO emission initially under both water regimes but the effect was greater under the non-flooding condition. However, the non-significant stimulatory effect of Cd on NO emission was observed during the late phase. The microbial community structure was changed with time and water regimes. Irrespective of water regime, the dominated fungal phyla were Ascomycota and Basidiomycota while the dominated bacteria phyla were Actinobacteria, Proteobacteria, Firmicutes and Acidobacteria. In summary, water regimes and Cd bioavailability changed soil N transformations via microbial mediated processes.
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http://dx.doi.org/10.1016/j.envint.2019.05.058 | DOI Listing |
BMC Plant Biol
September 2025
Department of Botany and Microbiology, Faculty of Science, Alexandria University, Alexandria, Egypt.
Background: Because of their ecological, aesthetic, and beneficial characteristics, native desert plants are highly significant. They can also be utilized in landscape architecture, particularly in environments with harsh conditions. The present study aims to evaluate the potential utilization of the wild desert plants Pancratium maritimum L.
View Article and Find Full Text PDFBiol Trace Elem Res
September 2025
Soil Science Department, Faculty of Agriculture, Shahed University, Tehran, 15614, Iran.
The effect of mixed potable and wastewater (WW) irrigation on leafy vegetables cultivated in southern Tehran, Iran, was investigated in 2022. Eight species-spinach (Spinacia oleracea), scallion (Allium fistulosum), radish (Raphanus sativus), cress (Lepidium sativum), basil (Ocimum basilicum), purslane (Portulaca oleracea), cilantro (Coriandrum sativum), and savory (Satureja hortensis)-were grown in calcareous loamy soil under greenhouse conditions using five irrigation regimes (0%, 25%, 50%, 75%, and 100% WW) applied every 2 days. Soil salinity, DTPA-extractable Co, Cu, Ni, and Zn, plant growth traits, and health risk indices-transfer factor (TF), bioaccumulation factor (BAF), average daily dietary intake (ADD), hazard quotient (HQ), and cancer risk (CR)-were determined for children and adults.
View Article and Find Full Text PDFPLoS One
September 2025
Department of Plant and Microbial Biology, North Carolina State University, Raleigh, North Carolina, United States of America.
Nitrogen (N) fixation with non-thermal plasmas has been proposed as a sustainable alternative to meet growing N fertilizer demands for agriculture. This technology generates Plasma Activated Water (PAW) with a range of chemical compositions, including different concentrations of nitrate (NO₃⁻) and hydrogen peroxide (H2O2), among other compounds. Potential use of PAW as an effective crop fertilizer necessitates a robust understanding of the underlying biology of the plant, which is not yet available.
View Article and Find Full Text PDFLangmuir
September 2025
SERB Sponsered Microfluidics Laboratory, Department of Mechanical Engineering, Jadavpur University, Kolkata, West Bengal 700032, India.
This study investigates the dynamic behavior of water droplets impacting a superhydrophobic surface (SHS) at low Weber numbers ( < 17). SHS is fabricated by a chemical coating process on magnesium AZ31 alloy. The surfaces exhibit a Cassie-Baxter wetting state, showing a contact angle of approximately 155°on the surfaces.
View Article and Find Full Text PDFFungal Biol
October 2025
Microbiology, Department of Biology, Utrecht University, Utrecht, the Netherlands. Electronic address:
Agaricus bisporus is grown commercially on compost topped with a peat-based casing layer. Water is translocated from compost and casing to enable formation of mushrooms. Here, water translocation from casing and different parts of the compost into mushrooms was studied and linked to their water potential and contributing factors thereof: i.
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