Wood- and Manure-Derived Biochars Reduce Antibiotic Residues and Shift Antibiotic Resistance Genes and Microbial Communities in Manure Applied Forage–Soil Systems

壤土 肥料 土壤水分 农学 环境科学 微生物种群生物学 生物炭 营养物 营养循环 生物 化学 生态学 土壤科学 细菌 遗传学 有机化学 热解
作者
Gyucheol Choi,Jeff A. Brady,Olabiyi Obayomi,Emily Green,Caroly Leija,Kristin Sefcik,Daisy A. Gonzalez,Cosette B. Taggart,James P. Muir,Eunsung Kan
出处
期刊:Agronomy [Multidisciplinary Digital Publishing Institute]
卷期号:14 (9): 2100-2100 被引量:4
标识
DOI:10.3390/agronomy14092100
摘要

The increasing use of antibiotics in livestock poses environmental risks, leading to contamination of agricultural soils and propagation of microbial antibiotic-resistant genes (ARGs). This study examined the impacts of wood- and manure-derived biochar (BC) on antibiotic residues, ARGs, and microbial communities in sandy loam and clay loam soils amended with manure in Cynodon dactylon pastures. We hypothesized that BC amendments would influence the degradation of antibiotics and the structure of microbial communities based on their physicochemical properties and soil types. Our results demonstrated that wood BC reduced the concentrations of tetracycline and sulfonamides, particularly in sandy loam soil, due to its larger surface area and hydrophobic properties. In contrast, manure BC provided additional nutrients and supported atmospheric nitrogen-fixing microbial groups, especially in clay loam soil, while exhibiting variable efficiency in reducing antibiotic residues due to its lower surface area and higher ash content. These findings underscore the differential impacts of each BC type, emphasizing the need for tailored BC applications based on soil type to effectively mitigate antibiotic contamination and promote sustainable agricultural practices. In conclusion, wood BC was more effective in enhancing soil health by reducing antibiotic residues and improving microbial diversity, particularly in sandy loam soils, while manure BC was beneficial for nutrient cycling in clay loam soils.
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