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唑醚·戊唑醇对土壤微生物及酶的影响。

Effects of Tebuconazole Application on Soil Microbiota and Enzymes.

机构信息

Department of Soil Science and Microbiology, Faculty of Agriculture and Forestry, University of Warmia and Mazury in Olsztyn, Plac Łódzki 3, 10-727 Olsztyn, Poland.

出版信息

Molecules. 2022 Nov 3;27(21):7501. doi: 10.3390/molecules27217501.

Abstract

Identification of pesticide impact on the soil microbiome is of the utmost significance today. Diagnosing the response of bacteria to tebuconazole, used for plant protection, may help isolate the most active bacteria applicable in the bioaugmentation of soils contaminated with this preparation. Bearing in mind the above, a study was undertaken to test the effect of tebuconazole on the diversity of bacteria at all taxonomic levels and on the activity of soil enzymes. It was conducted by means of standard and metagenomic methods. Its results showed that tebuconazole applied in doses falling within the ranges of good agricultural practice did not significantly disturb the biological homeostasis of soil and did not diminish its fertility. Tebuconazole was found to stimulate the proliferation of organotrophic bacteria and fungi, and also the activities of soil enzymes responsible for phosphorus, sulfur, and carbon metabolism. It did not impair the activity of urease responsible for urea hydrolysis, or cause any significant changes in the structure of bacterial communities. All analyzed soil samples were mainly populated by bacteria from the phylum , , , , , , and . Bacteria from the genera , , and predominated in the soils contaminated with tebuconazole, whereas these from the genus were inactivated by this preparation.

摘要

今天,识别农药对土壤微生物组的影响至关重要。诊断细菌对用于植物保护的戊唑醇的反应,可以帮助分离出最活跃的细菌,适用于生物强化受这种制剂污染的土壤。基于此,开展了一项研究,以测试戊唑醇对所有分类水平的细菌多样性和土壤酶活性的影响。这项研究采用了标准和宏基因组学方法。研究结果表明,在良好农业实践范围内使用的戊唑醇剂量不会显著干扰土壤的生物平衡,也不会降低其肥力。戊唑醇被发现能刺激有机营养细菌和真菌的增殖,以及负责磷、硫和碳代谢的土壤酶的活性。它不会损害负责尿素水解的脲酶的活性,也不会导致细菌群落结构发生任何显著变化。所有分析的土壤样本主要由门、、、、、和的细菌组成。在受戊唑醇污染的土壤中,细菌主要来自属、、和,而这些细菌则被该制剂灭活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0d3/9656111/a792bf9b343a/molecules-27-07501-g001.jpg

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