尼日利亚阿达马瓦州约拉尼磺隆处理土壤的理化性质和微生物种群

J. Dagze, I. B. Chimbekujwo, H. Nahunnaro, Z. Bawa, T. Tizhe, S. Vandi
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摘要

在现代农业系统中使用除草剂确实有助于提高作物产量,从而满足不断增长的人口对粮食不断增长的需求。但这些除草剂对土壤成分的作用方式和作用效果各不相同;它们的持续使用影响了土壤微生物群落和其他土壤成分,其中大部分是非目标的。因此,本研究的重点是评估尼日利亚阿达马瓦州约拉处理过的尼科磺隆土壤的理化性质和微生物种群。该研究于2021年和2022年在约拉莫迪博阿达玛大学植物科学系研究农场进行。分别于处理后0、2、4、6周(WAT)在0 ~ 12 cm深度采集不同浓度硝磺隆处理土壤的样品。使用标准的实验室程序确定所收集土壤样品的物理化学性质和细菌和真菌种群。结果表明,50、100、150和200 g/ha浓度的硝磺隆处理土壤的理化性质(含水量百分比、有机碳、物质和总氮除外)具有相当的数值,包括:pH值、电导率、钙、镁、钾离子、总交换酸度、总交换碱、有效阳离子交换容量、碱饱和度百分比。然而,在施用时间的基础上,尼科磺隆对理化性质有显著影响,与其他取样时间相比,6 WAT对理化性质的影响最大。在细菌(除真菌)种群上,硝磺隆对细菌和真菌种群均最低的处理土壤也有显著影响。因此,本研究认为,硝磺隆施用时间对约拉地区土壤理化性质有显著影响。硝磺隆对土壤细菌和真菌种群也有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Physicochemical Properties and Microbial Populations of Nicosulfuron Treated Soil in Yola, Adamawa State, Nigeria
The use of herbicides in the modern system of farming has really help in boosting crop production, this way meeting up with the ever increasing demand for food by the always increasing human population. However, these herbicides have different mode of actions and effect on soil components; and their continued usage has affected the soil microbial communities and other soil components most of which are the non-target. This study, therefore, was focused on evaluating the physicochemical properties and microbial population of nicosulfuron treated soils of Yola, Adamawa State, Nigeria. The study was carried out in both 2021 and 2022 in the Research Farm of the Department of Plant Science, Modibbo Adama University, Yola. The samples of the soil treated with the different concentrations of nicosulfuron were obtained at 0, 2, 4 and 6 Weeks after Treatment (WAT) at the depth between 0-12 cm. The physicochemical properties and the bacterial and fungal populations of the collected soil samples were determined using standard laboratory procedures. The results revealed that the soils treated with the 50, 100, 150 and 200 g/ha concentrations of nicosulfuron had a comparable values for physicochemical (except percentage moisture content, organic carbon and matter and total nitrogen) properties that include: pH, electrical conductivity, Calcium, magnesium and potassium ions, total exchangeable acidity, total exchangeable base, effective cation exchange capacity, percentage base saturation. On the basis of duration of application, however, the nicosulfuron had significant effect on the physicochemical properties with 6 WAT having the highest values for the physicochemical properties compared to other sampling durations. On the bacterial (except the fungal) population, the nicosulfuron also had a significant effect with the treated soils having the lowest populations of both bacteria and fungi. The study therefore, concluded that the duration of application of nicosulfuron have significant effect on physicochemical properties of soil in Yola. On the bacterial and fungal populations of the soil, nicosulfuron also had significant effect.
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