首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Growth in Coculture Stimulates Metabolism of the Phenylurea Herbicide Isoproturon by Sphingomonas sp. Strain SRS2
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Growth in Coculture Stimulates Metabolism of the Phenylurea Herbicide Isoproturon by Sphingomonas sp. Strain SRS2

机译:共培养中的生长刺激鞘氨醇单胞菌属(Sphingomonas sp。)的苯脲除草剂异丙隆的代谢。应变SRS2

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摘要

Metabolism of the phenylurea herbicide isoproturon by Sphingomonas sp. strain SRS2 was significantly enhanced when the strain was grown in coculture with a soil bacterium (designated strain SRS1). Both members of this consortium were isolated from a highly enriched isoproturon-degrading culture derived from an agricultural soil previously treated regularly with the herbicide. Based on analysis of the 16S rRNA gene, strain SRS1 was assigned to the β-subdivision of the proteobacteria and probably represents a new genus. Strain SRS1 was unable to degrade either isoproturon or its known metabolites 3-(4-isopropylphenyl)-1-methylurea, 3-(4-isopropylphenyl)-urea, or 4-isopropyl-aniline. Pure culture studies indicate that Sphingomonas sp. SRS2 is auxotrophic and requires components supplied by association with other soil bacteria. A specific mixture of amino acids appeared to meet these requirements, and it was shown that methionine was essential for Sphingomonas sp. SRS2. This suggests that strain SRS1 supplies amino acids to Sphingomonas sp. SRS2, thereby leading to rapid metabolism of 14C-labeled isoproturon to 14CO2 and corresponding growth of strain SRS2. Proliferation of strain SRS1 suggests that isoproturon metabolism by Sphingomonas sp. SRS2 provides unknown metabolites or cell debris that supports growth of strain SRS1. The role of strain SRS1 in the consortium was not ubiquitous among soil bacteria; however, the indigenous soil microflora and some strains from culture collections also stimulate isoproturon metabolism by Sphingomonas sp. strain SRS2 to a similar extent.
机译:鞘氨醇单胞菌(Sphingomonas sp。)代谢苯脲除草剂异丙隆。当菌株与土壤细菌共培养时(指定菌株SRS1),菌株SRS2显着增强。该财团的两个成员均从高度富集的异proturon降解培养物中分离出来,该培养物源自事先用除草剂定期处理过的农业土壤。根据对16S rRNA基因的分析,将SRS1菌株分配到了变形杆菌的β细分中,可能代表了一个新属。菌株SRS1不能降解异丙隆或其已知的代谢物3-(4-异丙基苯基)-1-甲基脲,3-(4-异丙基苯基)-脲或4-异丙基苯胺。纯培养研究表明鞘氨醇单胞菌属。 SRS2是营养缺陷型的,需要与其他土壤细菌结合提供的成分。一种特定的氨基酸混合物似乎可以满足这些要求,并且表明蛋氨酸对鞘氨醇单胞菌属菌种是必不可少的。 SRS2。这表明菌株SRS1向鞘氨醇单胞菌sp提供氨基酸。 SRS2,从而导致 14 C标记的异丙肾上腺素迅速代谢为 14 CO2并相应地生长SRS2菌株。菌株SRS1的增殖表明鞘氨醇单胞菌sp。 SRS2提供了未知的代谢物或细胞碎片,可支持菌株SRS1的生长。在土壤细菌中,菌株SRS1在协会中的作用并不普遍。然而,本地土壤微生物区系和一些来自培养物收集的菌株也刺激鞘氨醇单胞菌(Sphingomonas sp。)的异丙隆代谢。菌株SRS2达到相似程度。

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