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首页> 外文期刊>FEMS Microbiology Ecology >Effects of transgenic glufosinate-tolerant oilseed rape (Brassica napus) and the associated herbicide application on eubacterial and Pseudomonas communities in the rhizosphere
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Effects of transgenic glufosinate-tolerant oilseed rape (Brassica napus) and the associated herbicide application on eubacterial and Pseudomonas communities in the rhizosphere

机译:转基因草铵膦耐油菜(甘蓝型油菜)及其相关除草剂的应用对根际真细菌和假单胞菌群落的影响

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A containment experiment was carried out in order to evaluate possible shifts in eubacterial and Pseudomonas rhizosphere community structures due to the release of genetically modified Basta-tolerant oilseed rape and the associated herbicide application. Treatments included cultivation of the transgenic plant as well as of the wild-type cultivar in combination with mechanical removal of weeds and the application of the herbicides Basta (active ingredient: glufosinate) and Butisan S (active ingredient: metazachlor). Rhizosphere soil was sampled from early and late flowering plants as well as from senescent plants. A culture-independent approach was chosen to characterize microbial communities based on denaturing gradient gel electrophoresis of 16S rRNA gene fragments amplified from rhizosphere DNA using eubacterial and Pseudomonas-specific PCR primers. Dominant pseudomonads in the rhizosphere were analyzed by sequence analysis. Whole community and Pseudomonas electrophoresis fingerprints revealed slightly altered microbial communities in the rhizosphere of transgenic plants; however, effects were minor as compared to the plant developmental stage-dependent shifts. Both herbicides caused transient changes in the eubacterial and Pseudomonas population structure, whereas differences due to the genetic modification were still detected at the senescent growth stage. The observed differences between transgenic and wild-type lines were most likely due to unintentionally modified plant characteristics such as altered root exudation. (C) 2002 Federation of European Microbiological Societies. Published by Elsevier Science B.V. All rights reserved. [References: 54]
机译:为了评估由于释放了转基因的耐Basta的油菜和相关除草剂的使用,真细菌和假单胞菌根际群落结构的可能变化,进行了遏制实验。处理方法包括转基因植物和野生型栽培种的耕种,并结合杂草的机械去除以及除草剂Basta(有效成分:草铵膦)和Butisan S(有效成分:间草胺)的施用。从早,晚开花植物以及衰老植物中取样根际土壤。选择了一种不依赖培养物的方法来表征微生物群落,方法是使用真细菌和假单胞菌特异性PCR引物,对从根际DNA扩增的16S rRNA基因片段进行变性梯度凝胶电泳,以鉴定微生物群落。通过序列分析分析了根际中的主要假单胞菌。整个群落和假单胞菌电泳指纹图谱显示,转基因植物根际的微生物群落稍有改变;然而,与植物发育阶段依赖性转变相比,其影响较小。两种除草剂均引起了真细菌和假单胞菌种群结构的瞬时变化,而在衰老生长阶段仍检测到由于遗传修饰引起的差异。观察到的转基因和野生型品系之间的差异最有可能是由于植物特征的无意修饰,例如根系分泌物的改变。 (C)2002年欧洲微生物学会联合会。由Elsevier Science B.V.保留所有权利。 [参考:54]

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