首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Role of Rhodobacter sp. Strain PS9 a Purple Non-Sulfur Photosynthetic Bacterium Isolated from an Anaerobic Swine Waste Lagoon in Odor Remediation
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Role of Rhodobacter sp. Strain PS9 a Purple Non-Sulfur Photosynthetic Bacterium Isolated from an Anaerobic Swine Waste Lagoon in Odor Remediation

机译:红杆菌的作用。 PS9一种从厌氧猪粪池中分离出来的紫色非硫光合细菌用于除臭处理

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摘要

Temporal pigmentation changes resulting from the development of a purple color in anaerobic swine waste lagoons were investigated during a 4-year period. The major purple photosynthetic bacterium responsible for these color changes and the corresponding reductions in odor was isolated from nine photosynthetic lagoons. By using morphological, physiological, and phylogenetic characterization methods we identified the predominant photosynthetic bacterium as a new strain of Rhodobacter, designated Rhodobacter sp. strain PS9. Rhodobacter sp. strain PS9 is capable of photoorganotrophic growth on a variety of organic compounds, including all of the characteristic volatile organic compounds (VOC) responsible for the odor associated with swine production facilities (J. A. Zahn, A. A. DiSpirito, Y. S. Do, B. E. Brooks, E. E. Copper, and J. L. Hatfield, J. Environ. Qual. >30:624-634, 2001). The seasonal variations in airborne VOC emitted from waste lagoons showed that there was a 80 to 93% decrease in the concentration of VOC during a photosynthetic bloom. During the height of a bloom, the Rhodobacter sp. strain PS9 population accounted for 10% of the total community and up to 27% of the eubacterial community based on 16S ribosomal DNA signals. Additional observations based on seasonal variations in meteorological, biological, and chemical parameters suggested that the photosynthetic blooms of Rhodobacter sp. strain PS9 were correlated with lagoon water temperature and with the concentrations of sulfate and phosphate. In addition, the photosynthetic blooms of Rhodobacter sp. strain PS9 were inversely correlated with the concentrations of protein and fluoride.
机译:在4年的时间里,研究了厌氧猪粪池中紫色产生的时间色素沉着变化。从九个光合泻湖中分离出负责这些颜色变化和相应气味减少的主要紫色光合细菌。通过使用形态学,生理学和系统发生学表征方法,我们确定了主要的光合细菌为新的红细菌菌株,命名为红细菌sp。 PS9株。红细菌PS9菌株能够在多种有机化合物上进行光有机营养生长,包括负责与猪生产设施相关的气味的所有特征性挥发性有机化合物(VOC)(JA Zahn,AA DiSpirito,YS Do,BE Brooks,EE Copper,和JL Hatfield,J. Environ。Qual。> 30: 624-634,2001)。废物泻湖排放的机载挥发性有机化合物的季节变化表明,在光合开花期间,挥发性有机化合物的浓度降低了80%至93%。在开花高峰期间,红细菌根据16S核糖体DNA信号,PS9菌株占总种群的10%,占真细菌群落的27%。根据气象,生物学和化学参数的季节性变化进行的其他观察表明,红杆菌属的光合开花。 PS9菌株与泻湖水温以及硫酸盐和磷酸盐的浓度相关。此外,Rhodobacter sp。的光合开花。 PS9菌株与蛋白质和氟化物的浓度呈负相关。

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