咪唑啉酮类除草剂对向日葵生长过程中土壤微生物的影响

Q3 Agricultural and Biological Sciences
Helia Pub Date : 2021-05-03 DOI:10.1515/helia-2021-0005
N. Kostyuchenko, V. Lyakh, A. Soroka
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引用次数: 1

摘要

摘要研究了不同浓度的除草剂Euro Lightning Plus对向日葵根区微生物群状态的影响。在向日葵生长季节结束时,采用1.2和2.5l/ha剂量的除草剂处理后的植物根际和间植土壤进行分析。使用未施用除草剂的根际土壤作为对照。除草剂是在2-4片真叶的阶段施用的。对照植物根际细菌总数为1282万CFU/g土壤,而在2.5 l/ha的除草剂处理后,根际和下层土壤中的细菌总数减少了1.4–1.5倍。随着除草剂剂量的增加,细菌微生物的基本生态和营养类群的数量普遍呈下降趋势。反映微生物群落功能活性的微生物系数表明,在除草剂Euro Lightning Plus的影响下,微生物群落的生物活性发生了变化,从而导致所研究土壤的农业生态状态恶化。研究还发现,除草剂的施用导致向日葵根区微聚体复合物的重排,与对照相比,这导致分枝杆菌群物种多样性减少了两倍,并形成了特定的分枝杆菌属物种组成。与除草剂处理的土壤相比,对照植物根际微生物区系真菌的属和种多样性更大。注意到青霉属的物种多样性从对照中的6种减少到实验向日葵根际的1–2种,并且没有Acremonium、Verticillium、Trichoderma和Paecilomyces属的稀有腐生真菌物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The state of soil microbiotes during sunflower growing with an herbicide of imidazolinone group
Abstract The effects of various concentrations of herbicide Euro-Lightning Plus on the state of microbiota in the root zone of sunflower have been studied. Soil of plant rhizosphere and interrow soil after treatment with the herbicide at the doses of 1.2 and 2.5 l/ha were taken for the analysis at the end of sunflower growing season. Rhizosphere soil without herbicide application was used as a control. The herbicide was applied at the stage of 2–4 true leaves. The total number of bacteria in the rhizosphere of control plants was 12.82 million CFU/g of soil while in the rhizosphere and in the interrow soil after herbicide treatment with a dose of 2.5 l/ha it decreased by 1.4–1.5 times. A general trend of decline in number of the basic ecological and trophic groups of bacterial microorganisms with the increase in a dose of herbicide was established. Microbiological coefficients that reflect the functional activity of the microflora indicate changes in its biological activity under the influence of the herbicide Euro-Lightning Plus, which leads to deterioration in the agroecological state of the studied soils. It was also found that herbicide application resulted in a rearrangement of micromycete complexes in the root zone of sunflower which led to a two-fold reduction, compared to the control, of mycobiota species diversity and the formation of a specific species composition of mycocenoses. A greater genus and species diversity of fungi of the microflora in the rhizosphere of control plants, in comparison with the herbicide-treated soil, was revealed. A reduction in species diversity of the genus Penicillium from six species in the control to 1–2 species in the rhizosphere of experimental sunflower plants as well as the absence of rare saprophytic fungi species from the genera Acremonium, Verticillium, Trichoderma and Paecilomyces were noted.
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来源期刊
Helia
Helia Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.00
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