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Distribution of metabolic activity and phosphate starvation response of lux-tagged Pseudomonas fluorescens reporter bacteria in the barley rhizosphere.

机译:大麦根际内带有lux标记的荧光假单胞菌报道基因细菌的代谢活性和磷酸饥饿反应的分布。

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摘要

The purpose of this study was to determine the metabolic activity of Pseudomonas fluorescens DF57 in the barley rhizosphere and to assess whether sufficient phosphate was available to the bacterium. Hence, two DF57 reporter strains carrying chromosomal luxAB gene fusions were introduced into the rhizosphere. Strain DF57-40E7 expressed luxAB constitutively, making bioluminescence dependent upon the metabolic activity of the cells under defined assay conditions. The DF57-P2 reporter strain responded to phosphate limitation, and the luxAB gene fusion was controlled by a promoter containing regulatory sequences characteristic of members of the phosphate (Pho) regulon. DF57 generally had higher metabolic activity in a gnotobiotic rhizosphere than in the corresponding bulk soil. Within the rhizosphere the distribution of metabolic activity along the root differed between the rhizosphere soil and the rhizoplane, suggesting that growth conditions may differ between these two habitats. The DF57-P2 reporter strain encountered phosphate limitation in a gnotobiotic rhizosphere but not in a natural rhizosphere. This difference in phosphate availability seemed to be due to the indigenous microbial population, as DF57-P2 did not report phosphate limitation when established in the rhizosphere of plants in sterilized soil amended with indigenous microorganisms.
机译:这项研究的目的是确定荧光假单胞菌DF57在大麦根际中的代谢活性,并评估该细菌是否有足够的磷酸盐。因此,将携带染色体luxAB基因融合体的两个DF57报告菌株引入到根际。菌株DF57-40E7组成型表达luxAB,使生物发光取决于在定义的测定条件下细胞的代谢活性。 DF57-P2报告基因菌株响应磷酸盐限制,而luxAB基因融合受启动子控制,该启动子包含磷酸盐(Pho)调节子成员特征性的调控序列。 DF57在生根植物的根际中通常比相应的块状土壤具有更高的代谢活性。在根际内,根际的代谢活性在根际土壤和根际平面之间的分布不同,这表明这两个生境之间的生长条件可能不同。 DF57-P2报告基因菌株在生真菌的根际中遇到了磷酸盐限制,但在天然根际中没有遇到磷酸盐限制。磷酸盐可利用性的这种差异似乎是由于土著微生物种群造成的,因为当在植物根际中用土著微生物改良的无菌土壤中建立DF57-P2时,DF57-P2没有报告磷酸盐限制。

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