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首页> 外文期刊>Applied and Environmental Microbiology >Identification and Specific Detection of a Novel Pseudomonadaceae Cluster Associated with Soils from Winter Wheat Plots of a Long-Term Agricultural Field Experiment
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Identification and Specific Detection of a Novel Pseudomonadaceae Cluster Associated with Soils from Winter Wheat Plots of a Long-Term Agricultural Field Experiment

机译:长期农田试验中与冬小麦田地土壤相关的新型假单胞菌科集群的鉴定和特异性检测

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The genus Pseudomonas (sensu stricto) represents a group of microorganisms directly involved in functions conferring plant health. We performed a study in the DOK long-term agricultural field experiment on the basis of previously published Pseudomonas-selective PCR primers in order to investigate the community structure of the microbial groups defined by the target range of these primers. Three different agricultural management systems, i.e., conventional, biodynamic, and bio-organic, along with mineral and unfertilized controls were investigated, with each system planted with either winter wheat or a grass-clover ley. Amplified small-subunit rRNA gene fragments were analyzed using the genetic profiling techniques restriction fragment length polymorphism (RFLP) and denaturing gradient gel electrophoresis (DGGE), revealing distinct differences between soils planted with winter wheat and grass clover but only minor differences between the management systems. Phylogenetic analyses of 59 clone sequences retrieved from bio-organic and unfertilized systems identified sequences related to Pseudomonas fluorescens and a novel cluster termed Cellvibrio-related Pseudomonadaceae (CRP). The CRP clones were exclusively isolated from winter wheat soil samples and were responsible for the crop-specific differences observed in RFLP and DGGE profiles. New primers were designed for the amplification of CRP targets directly from soil DNA, yielding strong signals exclusively for winter wheat soils. We concluded that crop-associated CRP exist in agricultural soils and that genetic profiling followed by specific probe design represents a valuable approach for identification as well as sensitive and rapid monitoring of novel microbial groups in the environment.
机译:假单胞菌属(Pseudomonas)(严格的sensu)代表一组直接参与赋予植物健康的功能的微生物。我们在DOK长期农业田间试验的基础上,基于先前发表的假单胞菌选择性PCR引物进行了一项研究,以研究由这些引物的靶标范围所定义的微生物群的群落结构。研究了三种不同的农业管理系统,即传统的,生物动力的和生物有机的管理系统,以及矿物质和未施肥的控制系统,每种系统都种植了冬小麦或草三叶草。使用遗传谱分析技术限制性片段长度多态性(RFLP)和变性梯度凝胶电泳(DGGE)对扩增的小亚基rRNA基因片段进行了分析,揭示了冬小麦和草三叶草种植的土壤之间存在明显差异,但管理系统之间仅存在微小差异。从生物有机和未受精系统中检索到的59个克隆序列的系统进化分析确定了与荧光假单胞菌有关的序列,以及一个称为细胞弧菌相关假单胞菌科(CRP)的新型簇。 CRP克隆仅从冬小麦土壤样品中分离,并导致RFLP和DGGE图谱中观察到的特定作物差异。设计了新的引物,用于直接从土壤DNA扩增CRP靶标,专门针对冬小麦土壤产生强信号。我们得出的结论是,农业土壤中存在与作物相关的CRP,遗传分析和特定的探针设计代表了一种有价值的方法,可用于识别以及灵敏快速地监测环境中的新型微生物。

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