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Isolation of 2,4-Diacetylphloroglucinol from a Fluorescent Pseudomonad and Investigation of Physiological Parameters Influencing Its Production

机译:荧光假单胞菌中2,4-二乙酰基间苯三酚的分离及影响其生产的生理参数研究

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摘要

Pseudomonas sp. strain F113 was isolated from the rhizosphere of sugar beets and shown to inhibit a range of plant pathogenic fungi by producing an antibioticlike compound. An antibiotic-negative mutant strain, F113G22, was generated by transposon mutagenesis. This mutant has lost the ability to inhibit both bacterial and fungal microorganisms on high-iron medium. The antibioticlike compound was subsequently identified as 2,4-diacetylphloroglucinol (DAPG), and a high-pressure liquid chromatographic assay was developed for to detect it quantitatively in growth culture media and soil. The growth temperature had a direct bearing on DAPG production by strain F113, with maximum production at 12°C. The iron concentration, pH, and oxygen had no influence on DAPG production by strain F113 under the assay conditions used. However, a low ratio of culture volume to surface area available to the microbe in the growth container was critical for optimum DAPG production. Different types of carbon sources influenced DAPG production by strain F113 to various degrees. For example, sucrose, fructose, and mannitol promoted high yields of DAPG by strain F113, whereas glucose and sorbose resulted in very poor DAPG production.
机译:假单胞菌从甜菜的根际分离出菌株F113,并显示通过产生抗生素样化合物来抑制一系列植物病原真菌。通过转座子诱变产生了抗生素阴性突变株F113G22。该突变体已经失去了在高铁培养基上抑制细菌和真菌微生物的能力。随后将该类抗生素化合物鉴定为2,4-二乙酰基间苯三酚(DAPG),并开发了一种高压液相色谱分析法,用于在生长培养基和土壤中定量检测。生长温度直接影响菌株F113产生DAPG的产量,最高产量为12°C。在所用测定条件下,铁浓度,pH和氧对菌株F113产生DAPG的影响没有影响。但是,培养容器中微生物可利用的培养体积与表面积之比低对于优化DAPG的生产至关重要。不同类型的碳源通过F113菌株在不同程度上影响DAPG的生产。例如,蔗糖,果糖和甘露醇通过F113菌株促进了DAPG的高产量,而葡萄糖和山梨糖导致DAPG的产生非常差。

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