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Already a short-term soils exposure to the field-rate glufosinate concentration significantly influences soil bacterial communities

机译:短期土壤已暴露于草铵膦浓度的田间速率下已显着影响土壤细菌群落

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The early impact of glufosinate derived herbicide Basta? 15 on bacterial communities of two different soils never exposed to this herbicide was investigated using cultivation approach and non-cultivation based denaturing gradient gel electrophoresis (DGGE) analysis of amplified 16S rRNA genes. Under the simulated laboratory conditions glufosinate treatment increased numbers of total cultivable heterotrophic bacteria in both tested soils. Surprisingly even the lowest glufosinate concentration (1 mmol) significantly affected bacterial community composition in both tested soils and original populations were replaced by new ones upon the 2 days glufosinate treatment. In nutrient rich Haniska soil the effect was dose dependent and glufosinate treatment decreased genetic diversity of bacterial population. In nutrient poor Ka?ava soil the highest glufosinate concentration (16?mmol) increased the diversity of bacterial population probably as a result of carbon source supplementation. Glufosinate treatment selected Gram-negative bacteria in both soils. Two species of Enterobacter genus were found to be dominant in glufosinate treated Haniska soil and Pseudomonas beteli and Brevundimonas diminuta were found to be dominant in glufosinate treated Ka?ava soil using non-cultivation based DGGE method. Our data indicated that under the simulated soil conditions the soil bacterial community was significantly affected even by a short-term exposure to glufosinate.
机译:草铵膦衍生的除草剂Basta ? 15对从未接触过该除草剂的两种不同土壤的细菌群落的早期影响,采用扩增和16S扩增的变性梯度凝胶电泳(DGGE)分析方法进行了研究。 rRNA基因。在模拟的实验室条件下,草铵膦处理增加了两种测试土壤中总可培养异养细菌的数量。出乎意料的是,即使是最低的草铵膦浓度(1 mmol)也显着影响了被测土壤中的细菌群落组成,并且经过2天的草铵膦处理后,原始种群被新的取代。在营养丰富的哈尼斯卡土壤中,其作用是剂量依赖性的,草铵膦处理降低了细菌种群的遗传多样性。在营养贫乏的卡塔瓦土壤中,最高草铵膦浓度(16?mmol)增加了细菌种群的多样性,这可能是补充碳源的结果。草铵膦处理在两种土壤中选择了革兰氏阴性细菌。草甘膦处理的哈尼斯卡土壤中发现有两种肠杆菌属占主导地位,采用基于非培养的DGGE方法发现了草假单胞菌和槟榔假单胞菌在经草铵膦处理过的Ka?ava土壤中占优势。我们的数据表明,在模拟的土壤条件下,即使短期接触草铵膦,土壤细菌群落也受到显着影响。

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