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A new DGGE protocol targeting 2,4-diacetylphloroglucinol biosynthetic gene phlD from phylogenetically contrasted biocontrol pseudomonads for assessment of disease-suppressive soils

机译:一种新的DGGE方案,以系统发育对比生物防治假单胞菌的2,4-二乙酰基间苯三酚生物合成基因phlD为目标,用于评估疾病抑制性土壤

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摘要

In the rhizosphere, biocontrol pseudomonads producing 2,4-diacetylphloroglucinol (Phl) can protect plants from soil-borne pathogens. DGGE of phlD has been proposed to monitor these bacteria, but two distinct protocols were needed for analysis of both the ‘Pseudomonas fluorescens' species complex and the strains from rrs restriction group ARDRA-1. Here, a single DGGE protocol performed on 668-bp GC-clamp-containing phlD amplicons was effective with both types of pseudomonads, and 36 reference biocontrol strains from the ‘P. fluorescens' complex or group ARDRA-1 gave a total of 11 distinct DGGE bands. phlD amplicons with at least two to seven nucleotidic differences could be discriminated, and the discrimination level was similar to that of phlD restriction analysis with four enzymes. Multiple phlD-DGGE bands were obtained when studying rhizosphere soil containing indigenous phlD+ pseudomonads, and phlD diversity was higher when DGGE was implemented after incubation of tobacco rhizosphere extracts in semi-selective medium (MPN approach) in comparison with approaches based on direct analysis of rhizosphere DNA extracts or assessment of phlD+colonies. phlD-DGGE profiles differed for a soil suppressive and a soil conducive to black root rot of tobacco, and each soil yielded new phlD sequences. In conclusion, this DGGE protocol was useful for monitoring indigenous rhizosphere consortia of phlD+ pseudomonads
机译:在根际中,产生2,4-二乙酰基间苯三酚(Phl)的生物防治假单胞菌可以保护植物免受土壤传播的病原体的侵害。已提出用phlD的DGGE监测这些细菌,但是需要两个截然不同的方案来分析“荧光假单胞菌”物种复合物和rrs限制组ARDRA-1的菌株。在这里,对包含668 bp GC夹的phlD扩增子执行的单个DGGE协议对两种类型的假单胞菌和来自'P的36种参考生物防治菌株均有效。萤光素的复合物或ARDRA-1组共有11个不同的DGGE带。可以区分具有至少两个至七个核苷酸差异的phlD扩增子,其鉴别水平与使用四种酶的phlD限制性酶切分析相似。与基于直接分析的方法相比,在半选择培养基(MPN方法)中培养烟草根际提取物(MPN方法)后,当研究含有根源的本地phlD +假单胞菌的根际土壤时,会获得多个phlD-DGGE谱带。 DNA提取物或phlD +克隆的评估。对于土壤抑菌剂和有利于烟草黑根腐烂的土壤,phlD-DGGE谱图有所不同,每种土壤均产生新的phlD序列。总之,此DGGE协议可用于监测phlD +假单胞菌的原生根际财团。

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